Sunday, September 1, 2013

OPEN ACCESS CRPS Research: Using a tibial fracture/cast immobilization model of CRPS

We love the Open Access movement, do we not?  As I don't plan to completely dedicate this blog to the United States of America's continual fraud upon the world (in this instance, referencing our leadership in treating genocide as a non-time-sensitive bother, our promotion of human rights for humans who make the list, and the big American Blink before all the eerie-looking dead gassed people in Syria), I thought I'd try and catch up on any Open Access work in CRPS research that may have occured during my last few months of essential blindness.  Here's the first -- from Molecular Pain, a publication of the University of Cincinnati College of Medicine.  Lay researchers, and impoverished actual ones, salute you for making your research available!

thank you, 


Molecular Pain


(and the University of Cincinnati 
College of Medicine!)





Acute and chronic phases of complex regional pain syndrome in mice are accompanied by distinct transcriptional changes in the spinal cord

Joseph J Gallagher12Maral Tajerian12Tianzhi Guo3Xiaoyou Shi12Wenwu Li123,Ming Zheng2Gary Peltz2Wade S Kingery3 and J David Clark12*
1Anesthesiology Service, Veterans Affairs Palo Alto Health Care System, 3801 Miranda Ave., Palo Alto, CA, 94304, USA
2Department of Anesthesiology, Stanford University School of Medicine, Stanford, CA, USA
3Physical Medicine and Rehabilitation Service, Veterans Affairs Palo Alto Health Care System, Palo Alto, CA, USA
For all author emails, please log on.
Molecular Pain 2013, 9:40 doi:10.1186/1744-8069-9-40

The electronic version of this article is the complete one and can be found online at:http://www.molecularpain.com/content/9/1/40

Received:8 May 2013
Accepted:6 August 2013
Published:8 August 2013
© 2013 Gallagher et al.; licensee BioMed Central Ltd. 
This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Abstract

Background

CRPS is a painful, debilitating, and often-chronic condition characterized by various sensory, motor, and vascular disturbances. Despite many years of study, current treatments are limited by our understanding of the underlying mechanisms. Little is known on the molecular level concerning changes in gene expression supporting the nociceptive sensitization commonly observed in CRPS limbs, or how those changes might evolve over time.

Results

We used a well-characterized mouse tibial fracture/cast immobilization model of CRPS to study molecular, vascular and nociceptive changes. We observed that the acute (3 weeks after fracture) and chronic (7 weeks after fracture) phases of CRPS-like changes in our model were accompanied by unique alterations in spinal gene expression corresponding to distinct canonical pathways. For the acute phase, top regulated pathways were: chemokine signaling, glycogen degradation, and cAMP-mediated signaling; while for the chronic phase, the associated pathways were: coagulation system, granzyme A signaling, and aryl hydrocarbon receptor signaling. We then focused on the role of CcL2, a chemokine that we showed to be upregulated at the mRNA and protein levels in spinal cord tissue in our model. We confirmed its association with the nociceptive sensitization displayed in this model by demonstrating that the spinal but not peripheral administration of a CCR2 antagonist (RS504393) in CRPS animals could decrease mechanical allodynia. The spinal administration of CcL2 itself resulted in mechanical allodynia in control mice.

Conclusions

Our data provide a global look at the transcriptional changes in the spinal cord that accompany the acute and chronic phases of CRPS as modeled in mice. Furthermore, it follows up on one of the top-regulated genes coding for CcL2 and validates its role in regulating nociception in the fracture/cast model of CRPS.
Keywords: 
Complex regional pain syndrome; CcL2; Chemokine; Chronic pain; Spinal cord; Microarray analysis; Transcriptome; Pathway analysis

Background

Complex regional pain syndrome (CRPS) is a painful, debilitating, and often-chronic condition with an estimated incidence rate of 26.2 per 100,000 person years [1]. While acute CRPS sometimes improves with early and aggressive physical therapy, CRPS present for a period of one year or more seldom spontaneously resolves. The syndrome encompasses a disparate collection of signs and symptoms involving the sensory, motor and autonomic nervous systems, cognitive deficits, bone demineralization, skin growth changes and vascular dysfunction [2]. Current therapies for CRPS including physical, interventional, pharmacological, rehabilitative and alternative are limited in their effectiveness, and none are routinely curative of the chronic condition [3,4]. The acute phase of the condition is often characterized by edema and warmth, and is thought to be supported by neurogenic inflammation [5-7]. Alterations in CNS structure and function may be more important to the sustained pain and neurocognitive features of the chronic phase of the CRPS [8].
The molecular analysis of peripheral mechanisms supporting CRPS has been extensive. Human studies have focused on dysfunctional signaling through autonomic and peptidergic neurons [9-11]. Other work has shown abnormal levels of cytokines in the skin of CRPS limbs [12]. More recently changes in the adaptive system of immunity have been demonstrated [13]. To better understand these changes, a tibial fracture/cast immobilization model of CRPS has been developed in rodents displaying nociceptive sensitization, bone demineralization, edema and warmth [14,15]. This model also recapitulates the human observations of abnormal peripheral neural signaling and cytokine generation, particularly in the first several days after removal of cast immobilization. The fracture/cast model has not to this point been utilized for the purpose of understanding the more chronic features of CRPS, though nociceptive changes are persistent for months in these animals.
The development of pain involves a complicated sequence of events ranging from changes in neuronal properties [16] to alterations in gene transcription and protein levels [17,18]. While many successes have been achieved through the selection of individual molecules for study as they participate in pain, a complementary approach has been to study changes in the expression levels of large numbers of genes in hypothesis-free fashion using expression arrays and similar molecular tools. A recent meta-analysis of pain related gene expression studies on spinal cord and dorsal root ganglion tissue revealed both similarities and differences across a range of pain models[19]. These authors discovered that two genes, Reg3b (regenerating islet-derived 3 beta; pancreatitis-associated protein) and CcL2 (chemokine [C-C motif] ligand 2), were up-regulated in almost every dataset, included in their analysis, suggesting possible core roles in supporting persistent pain.
To this point no array-based studies have been provided using a model of CRPS, a condition which has features separate from most acute, inflammatory and neuropathic etiologies of pain [10]. Furthermore, the striking transition of CRPS from an acute to a more chronic state suggests that analyses need to be conducted at more than one timepoint. Very few array-based analyses have commented on changes in gene expression over time. We hypothesized that array-based spinal cord gene expression studies using the fracture-cast model of CRPS would reveal timepoint-dependent genes and pathways relatively unique to the CRPS model, that a set of core genes might be shared with other models of persistent pain, and that at least one significantly changed gene could be shown to be functionally related to nociceptive sensitization in this model.

Results

CRPS mice exhibit transient increases in temperature and edema in addition to long-lasting nociceptive sensitization in the injured limb

Ipsilateral and contralateral measurements of hindpaw temperature and edema, two commonly observed symptoms in CRPS patients, were performed at 3, 5 and 7 weeks post-fracture. Both temperature and edema demonstrated similar profiles, exhibiting transients increases identified at the 3-week, but not the 5- or 7-week timepoints. An increased temperature in the contralateral hindpaw, as compared to baseline, was observed at the 3-week timepoint only (Figure 1A,B). Mechanical hypersensitivity, assessed using Von Frey filaments, identified a significant and persistent reduction – up to 7 weeks post-fracture - in the injured hindpaw compared to measurements of the contralateral hindpaw or control mice. Inspection of the mechanical hypersensitivity of the contralateral hindpaw suggested a modest decrease that did not reach significance at the 3 and 5 weeks (Figure 1C). Reduced weight bearing was present in the injured hindpaw and persisted at both timepoints assessed, extending from 3 to 7 weeks after fracture (Figure 1D).
thumbnailFigure 1. Physiological and behavioral changes in CRPS mice.CRPS mice display increased temperature (A) and edema (B) on the affected hindpaw at 3 weeks post-fracture. In addition, they show signs of mechanical allodynia (C) and decreased weight bearing (D) for up to 7 weeks after fracture.

Microarray expression analysis from ipsilateral spinal cord identifies distinct profiles at 3 and 7 weeks post-fracture

We identified the genes significantly regulated at the 3- and 7-week timepoint, with respect to the control group (absolute fold change > 1.5, adjusted p-value < 0.05). 199 genes were identified as significantly regulated at the 3-week timepoint with 98 of these genes also identified as significantly regulated at the 7-week timepoint. 62 genes were unique to the 7-week timepoint. Half of the 122 genes with increased expression at the 3 week timepoint maintained increased expression at the 7-week timepoint (61 genes), while 38 of the 97 genes with decreased expression at the 3-week timepoint maintained decreased expression at the 7-week timepoint with the remaining genes showing no differential expression at the 7-week timepoint. No genes were identified as reversing their expression from over expressed to under expressed or vice versa between timepoints.154 genes are significantly regulated at the 7-week timepoint with 103 genes increased and 51 genes decreased (Additional file 1: Table S1; Additional file 2: Table S2).
Additional file 1: Table S1. Microarray results in ipsilateral spinal cord 3 weeks post fracture.
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Additional file 2: Table S2. Microarray results in ipsilateral spinal cord 7 weeks post fracture.
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CRPS results in altered transcriptional programs in the spinal cord

Ingenuity Pathway Analysis (IPA) identified specific networks that were dysregulated in the spinal cord 3 and 7 weeks following fracture. Canonical pathways with a cutoff p-value < 0.05 were considered statistically significant. Canonical pathways, indicating wide changes in currently known pathways, were shown to differ between the two timepoints. At 3 weeks, the main regulated pathways were chemokine signaling, glycogen degradation II, cAMP-mediated signaling, glycogen degradation III, role of IL-17A in arthritis, agranulocyte adhesion and diapedesis, IL-22 signaling, agrin interactions at neuromuscular junction, IL-17A signaling in gastric cells, and role of JAK family kinases in IL-6-type cytokine signaling. At the 7-week timepoint, the effected pathways were: coagulation system, granzyme A Signaling, aryl hydrocarbon receptor signaling, acute phase response signaling, granulocyte adhesion and diapedesis, agranulocyte adhesion and diapedesis, MSP-RON signaling pathway, thiosulfate disproportionation III (Rhodanese), GM-CSF signaling, and agrin interactions at neuromuscular junction (Figure 2). In addition to these canonical pathways, we identified the following top biological functions associated, to different degrees, with both timepoints: Cellular movement, cancer, cardiovascular system development and function, organismal development, nutritional disease, cell death and survival, nucleic acid metabolism, small molecule biochemistry, cell-to-cell signaling and interaction, molecular transport, hematological system development and function, immune cell trafficking, inflammatory response, tissue development, cellular function and maintenance, cell-mediated immune response, cellular development, lipid metabolism, cell morphology, hypersensitivity response (Additional file3: Table S3).
thumbnailFigure 2. Canonical pathway analysis. CRPS affects transcriptional programs unique to each of the acute and chronic timepoints. All pathways were scored and ranked according to Ingenuity Pathway Analysis using Fisher’s exact test. The dotted line indicates the threshold value of p<0 .05.="" p="">
Additional file 3: Table S3. Comparative analysis of functional pathways regulated 3 and 7 weeks post fracture. Shaded cells indicate the 3-week timepoint.
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Furthermore, qPCR measures of transcript expression allowed us to validate the upregulation of some of the genes (SPRRA1a, GAL, and PDYN) involved in a cell-to-cell signaling pathway (Figure 3A,B), a pathway with particular relevance to nociceptive signaling. Additional validation transcripts are shown in Additional file 4: Figure S1A,B. No changes were observed in the expression of astrocyte and macrophage markers, GFAP and Iba1, respectively (Additional file 4: Figure S1C).
thumbnailFigure 3. Transcriptional pathway analysis and validation of transcript mRNA expression. IPA identified interacting networks affecting cell signaling. Up-regulated transcripts are marked with red (A). SPRR1a, GAL, and PDYN transcripts were validated by quantitative PCR. The dotted line indicates control measures (B)
Additional file 4: Figure S1. Validation of transcript mRNA expression. qPCR validation of upregulated (A), downregulated (B), and unchanged (C) transcripts in the ipsilateral spinal cord 3 and 7 weeks after fracture. The dotted line indicates control measures. 
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Spinal CcL2 mRNA and protein levels are increased at 3 but not 7 weeks post-fracture

Both our array data and previous array studies have identified CcL2 as a possible common chronic pain gene. CcL2 mRNA levels were increased at the 3- but not 7-week timepoint (Figure 4A). Similarly, CcL2 protein levels were increased at the 3-week timepoint only (Figure 4B).
thumbnailFigure 4. Increase in spinal CcL2 mRNA and protein levels in CRPS mice. 3 weeks following fracture, CRPS mice show a significant increase in spinal CcL2 levels at the mRNA (A) and protein (B) levels, compared to both control (*) and the 7-week timepoint (#).

Intrathecal, but not intraplantar, administration of a CCR2 antagonist leads to transient reduction in mechanical hypersensitivity 3 and 7 weeks post-fracture

To assess the role of CcL2 signaling in pain behavior, we pharmacologically blocked a major CcL2 receptor (CCR2) at 3 and 7 weeks post-fracture using a CCR2 antagonist, RS504393.
Intrathecal administration of the CCR2 antagonist at the high dose (3 μg) led to statistically significant reductions in mechanical hypersensitivity 1, 3 and 6 hours after injection 3 weeks post-fracture; statistically significant reductions 7 weeks post-fracture were observed 1 and 3 hours after injection but did not reach significance at the 6 hour timepoint (Figure 5A,C). No differences in high dose response were observed at 24 hours after injection. The low dose response (0.3 μg) did not display any statistically significant reduction in mechanical hypersensitivity at 3 or 7 weeks post-fracture. Similarly, intraplantar administration of the CCR2 antagonist at two doses (1 and 10 μg) did not affect mechanical hypersensitivity at 3 or 7 weeks post-fracture (Figure 5B,D). An additional study testing the effects of a higher CCR2 antagonist dose (30 μg) failed to show anti-nociceptive efficacy (data not shown).
thumbnailFigure 5. Amelioration of mechanical allodynia in CRPS mice following intrathecal, but not intraplantar, administration of the CCR2 antagonist, RS504393. Intrathecal RS504393 (3 μg) resulted in increased mechanical thresholds in the affected paw compared to vehicle-treated (*) and control mice (#). This was true for both the 3- (A) and 7-week (C) timepoints. Intraplantar injections failed to show any efficacy (B,D).

Both intrathecal and intraplantar CcL2 induce transient mechanical hypersensitivity

A dose-dependent transient mechanical hypersensitivity was observed following intrathecal and intraplantar administration of CcL2 (Additional file 5: Figure S2A,B); measurements were taken 1, 3, 6 and 24 hours after injections. Statistical analysis identified a Dose × Time interaction in both administration routes (Intrathecal, (A): 2-way ANOVA; Dose × Time Interaction, F-value = 14.30; p < 0.0001. Intraplantar, (B): 2-way ANOVA; Dose × Time Interaction, F-value = 7.98; p < 0.0001).
Additional file 5: Figure S2. Induction of mechanical allodynia following the intrathecal and intraplantar administration of CcL2. Both intrathecal (A) and intraplantar (B) administration of CcL2 resulted in decreased mechanical thresholds compared to vehicle-treated mice.
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Intrathecal doses of 10 and 100 ng were capable of inducing mechanical hypersensitivity 1 and 3 hours after injection with the higher dose demonstrating hypersensitivity 6 hours after injection. The higher dose induced significantly greater hypersensitivity compared to the lower doses at the 1, 3 and 6-hour timepoint (Additional file 5: Figure S2A).
Intraplantar administration of CcL2 at increased doses (100 and 500 μg) demonstrated similar profiles with increased mechanical hypersensitivity at 1, 3 and 6-hour timepoints for both low and high doses. A dose-dependent effect was also noted with the higher dose inducing significantly greater hypersensitivity at the 3 and 6-hour timepoints (Additional file 5: Figure S2B).

Discussion

Our lack of effective treatments for CRPS may be the result, at least in part, of a lack of knowledge of the molecules and mechanisms supporting the disease. Using a hypothesis-free approach to gene discovery involving expression arrays constitutes a novel approach to understanding this condition. For our studies, we employed a previously characterized model of CRPS involving limb fracture and cast immobilization in rodents [20]. Our results showed that these animals develop behavioral signs of nociceptive sensitization in terms of weight bearing and mechanical allodynia in addition to physiological signs characteristic of clinical CRPS such as temperature changes and edema in the affected hindpaw. Furthermore, we demonstrated that the acute (3 weeks) and chronic (7 weeks) phases of CRPS in our model are accompanied by unique changes in spinal gene expression. A diverse array of biological pathways were suggested to be activated in the spinal cord tissue of fracture/cast mice, many of which currently have little appreciated relevance to pain or the manifestations of CRPS. On the other hand, one of the genes prominently up-regulated in the acute phase is CcL2, a gene found previously to be a possible common pain gene in many array studies [19]. This up-regulation was confirmed both at the mRNA and protein levels. Finally, the spinal administration of a CCR2 antagonist in CRPS animals decreased mechanical allodynia while both the spinal and peripheral administration of CcL2 itself resulted in mechanical allodynia in control mice. Our results point to a diverse, changing, and previously unappreciated complexity of genes possibly involved in the varied manifestations of CRPS. At the same time, our studies confirm that there may be at least one gene involved in CRPS that is shared with chronic neuropathic and inflammatory pain.

Acute vs. Chronic stages of CRPS

Chronic pain is a debilitating condition affecting many aspects of the patient’s life including reduced quality of life (>50%), negative impact on relationships (29%), job loss or reduced job responsibilities (>50%), increased rates of depression (30%), and twice the likelihood of suicide while awaiting treatment [21]. Many forms of chronic pain begin with an acute injury or syndrome. For CRPS patients, a relatively acute or “warm” syndrome characterized by pain, edema and warmth often gives way to a “cold” phase in which pain persists after the resolution of the vascular changes [10]. Unfortunately, it is difficult to predict the circumstances under which acute pain will transition into a chronic state. This is partly due to our limited understanding concerning the molecular mechanisms of pain, in general, and to a lack of a clear evolution point between the acute and chronic phases, in particular.
Apart from many cases observed in children [22], CRPS often becomes a chronic clinical problem. It is possible that segregating the acute effects from the chronic ones could enable us to target the acute changes in an effort to prevent the chronification of pain. We have delineated, for the first time, the spinal transcriptomic changes in acute (3 weeks characterized by allodynia, unweighting, warmth and ede ma) and chronic (7 weeks, characterized by allodynia and unweighting without vascular changes) stages of CRPS-like changes in mice. We identified molecular pathways unique to each of the acute and chronic phases. Comparison analysis of the microarray data obtained at the two timepoints revealed the top functional pathways involved in the acute phase as: cellular movement, cancer, cardiovascular system development and function, organismal development, nutritional disease, and cell death and survival. These pathways are consistent with the early stage CRPS pathology in our model. For instance, bone fracture and acute pain both can have immense global effects on both sensory and motor function, and as such, could be associated with a certain level of cellular re-organization (involvement of functions such as cellular movement and cell death and survival) at the spinal level. Similarly, the weight loss associated with the earlier timepoints in our model could account for the involvement of pathways such as organismal development and nutritional disease. As for the more chronic phase, the top pathways were: inflammatory response, hematological system development and function, immune cell trafficking, cell-to-cell signaling and interaction, and cellular movement. These pathways parallel the chronic phase of CRPS in our model, with particular emphasis on the neuro-immune component (inflammatory response and immune-cell trafficking). The chronic pain phenotype also implies central sensitization and thus explains the involvement of pathways such as cell-to-cell signaling and interaction and cellular movement. On the other hand, pathways such as those involved in cancer are more difficult to relate to CRPS, a benign condition. Perhaps the activation of these pathways is best viewed not as evidence of transformation of cells to a malignant state, but rather reflective of profound changes in function. Despite some overlap in the transcriptomic changes between the two timepoints, significant changes in gene expression reflected in the changes in pathway analysis imply a progression or transition in the pathology of the disease, mirroring the phenotypic changes observed in our model.
Our findings complement previous microarray studies undertaken both in dorsal root ganglia (DRG) and spinal cord samples in different animal models of pain [19]. For instance, acute transcriptomic changes were reported in the zymosan model of DRG inflammation and included pathways such as: defense response, immune response, regulation of body fluid levels, osteoblast proliferation, hemopoietic or lymphoid organ development, leukocyte proliferation, neuronal generation, epithelial cell proliferation, etc. 3 days after the induction of inflammation [23]. In models of neuropathy, functional gene clusters relating to complement activation, antigen processing/presentation, neuronal axonogenesis, cell adhesion, synaptic transmission, etc. were identified [19]. While it could be argued that the type of injury (neuropathic versus inflammatory) could potentially be a more important contributing factor than the timecourse [24] of injury/pain, we suggest that both the type of insult (inflammatory versus neuropathic) and the timecourse are reflected in the transcriptional changes and may be intertwined. For instance, inflammation and neuropathy could both be linked to a multifactorial syndrome such as CRPS, and the contribution of each could change with time.

Role of CcL2 in nociceptive processing

Similar to previous findings [25], our data shows that both the intrathecal and intraplantar administration of CcL2 result in mechanical allodynia. This is in agreement with the global role of CcL2 in nociception. The function of CcL2 in peripheral nociception, in particular at the level of the DRG and afferent neurons, has been well described. Electrophysiological studies have shown that CcL2 depolarizes DRG neurons in neuropathic animals [26,27] and sensitizes nociceptors through the activation of TRP channels and the inhibition of K+ conduction [26,28,29]. As elegant as these studies are, our own data involving the local injection of a selective CCR2 antagonist suggest that distal peripheral sites of CcL2 action are not prominent in supporting sensitization in our model.
In contrast, intrathecal injection of the same CCR2 antagonist reduced mechanical allodynia significantly, thus demonstrating that the CcL2 upregulation observed in the array and ELISA experiments was functional in our model. Unfortunately, CcL2 expression in the spinal cord remains controversial [30]. Although we did not specifically explore the question in our model, it has been shown that injured and uninjured neurons [31-33], astrocytes [34], and microglia [35] could all be potential sources for the elevated levels of CcL2. We did determine, however, that the upregulation of spinal CcL2 expression occurs in the absence of any measurable transcriptional changes in astrocyte (GFAP) and macrophage (Iba1) markers at both the 3- and 7-week time points. It is possible that CRPS is associated with microglial activation without wide-spread microglial proliferation, with activated microglia secreting a variety of pro-inflammatory cytokines and chemokines that are implicated in nociception. Though it is known that endogenous CcL2 can induce microglial activation in a mouse model of neuropathic pain [36], it is not known if this is true for the CRPS model. It would therefore be interesting to examine microglial and astrocytic responses following the fracture/cast procedure, whether these cells are responsible for some of the gene expression demonstrated by the arrays, and the responses of glial cells to the spinal administration of CcL2.
Another notable point is the timecourse of CcL2 upregulation in relation to phenotypic changes in our model. We show a transient upregulation of CcL2 mRNA and protein in the ipsilateral spinal cord at 3 weeks after fracture with the return to levels very close to control samples by 7 weeks. However, mechanical allodynia in this model persists well beyond 7 weeks, and retains its sensitivity to a CCR2 antagonist. One explanation is that CcL2 and other mediators play roles in the early cascade of events that lead to enhanced nociceptive sensitization that persists even after the resolution of the early changes. Thus at later time points even normal levels of CcL2 may support allodynia. In fact, plasma levels of CcL2 in CRPS patients were found to show no correlation with the duration of the CRPS [37], and CSF levels of CcL2 and GFAP were found to be upregulated in only 50% of patients [38], suggesting that mechanisms other than persistent chemokine activation are at play.

CcL2/CCR2 As potential therapeutic targets

The involvement of CcL2 in pain makes it an attractive candidate for therapeutic intervention. Indeed, multiple studies have shown that antagonizing CCR2, a major receptor for CcL2, is efficacious in reversing allodynia and hyperalgesia in animal models of neuropathic pain [39,40]. As mentioned above, our data show that spinal but not local hindpaw administration of the CCR2 antagonist, RS504393, attenuates mechanical sensitivity observed in our CRPS model. These observations are distinct from a report where CcL2-induced CCR2 receptor activation was shown to occur mainly in the peripheral nervous system in a demyelination model of neuropathic pain[41]. These differences could be due to the possibility that in our CRPS model, unlike neuropathy models, CcL2 plays its primary role in the CNS. While CcL2 itself is sufficient to induce mechanical sensitivity in the periphery, this type of signaling may not be necessary to induce and/or maintain CRPS-related nociception in the effected hindpaw. This is not to say peripheral inflammatory mediators are not involved in CRPS. Similar to clinical observations [42], data from our rat tibia fracture/cast immobilization model of CRPS has shown the upregulation of many peripheral inflammatory cytokines [43,44], thus drawing attention to the peripheral mechanisms that support some chronic pain syndromes.
The CCR2 antagonist AZD2423 was recently evaluated as an analgesic in a well-designed clinical trial, but had no efficacy in patients with posttraumatic neuralgia [45]. On the other hand, additional persistent pain states remain viable targets for this or similar drugs. Alternatively, it is possible that, in humans, CcL2 does not play as strong a role or perhaps is only one of many mediators ultimately converging on the same pathways to maintain pain in CRPS. Consistent with this notion, our array analysis revealed that multiple CC chemokine family members underwent alterations in expression making a reduction in signaling through one molecule unlikely to completely eliminate the nociceptive sensitization characterizing this syndrome. Perhaps a more systems-oriented approach would be useful when targeting the treatment of complex and multifactorial pathologies such as chronic pain.

Limitations and future directions

While this work has identified molecules and pathways hopefully expanding our understanding of acute and more chronic forms of CRPS, our approach has several caveats. Microarray probes do have inherent biases in their design due to their reliance on annotated genes. A more comprehensive approach, such as RNA sequencing, could provide a truly unbiased view [46]. In addition, the current manuscript demonstrates a nociceptive role of CcL2 in a mouse model of CRPS but it does not inform us about its source. Localizing CcL2 and/or CCR2 to a specific cell type would improve our understanding of the function of CcL2 in CRPS.
Finally, the current work examines spinal effects only while it is well known that CRPS has significant peripheral [44,47] and supraspinal [48,49] correlates. Ultimately, understanding how changes in gene expression and function at each of these sites contribute will be necessary to fully understand the syndrome.

Conclusions

We demonstrate broad and distinct changes in gene expression in the ipsilateral cord during the acute and chronic phases of “CRPS” in a tibia fracture/immobilization model in mice. These data allow the comparison on a broad-based molecular level with other models of chronic pain, and support the generation of novel hypotheses regarding mechanisms supporting acute and more chronic forms of CRPS. One particular gene of interest, CcL2, was found to be upregulated in the acute phase of CRPS and was pharmacologically shown to be associated with nociceptive thresholds at both acute and more chronic time points. Thus, there exists at least one functional example of a gene functioning in this very unique pain model in ways similar to those observed in models of inflammatory and neuropathic pain.

Methods

Animals

Male C57/B6J mice aged 12–14 weeks were purchased from a commercial supplier (Jackson Labs, Sacramento, CA) and were allowed to habituate to the animal facility for a minimum of 10 days prior to the experiments. Mice were housed in groups of 4 in a cage on a 12-hr light/dark cycle and an ambient temperature of 22 ± 1°C, with food and tap water available ad libitum. All animal procedures were approved by the Veterans Affairs Palo Alto Health Care System Institutional Animal Care and Use Committee (Palo Alto, CA) and followed the animal subjects guidelines of the International Association for the Study of Pain published in PAIN, 16 (1983) 109–110.

Limb fracture and cast immobilization

Mice were anesthetized with 1.5% Isoflurane in air and received a distal tibial fracture. Immediately following fracture and while still under anesthetic, a cast was placed around the injured hindpaw so as to encase it entirely [15]. To ensure the proper and consistent placement of the cast, it was elongated to wrap about the abdomen of the animal. After fracture and casting, the mice were given subcutaneous Buprenorphine (0.05 mg/kg) and Baytril (5 mg/kg) for the next three days, as well as normal saline (1.5 ml once) for post-operative analgesia, prevention of infection and dehydration. Mice were inspected daily to ensure the cast was positioned properly through the 3-week period of cast immobilization. Mice were provided with chow ad libitum; diet gels were also made available on the cage floor for mice having undergone surgery. At 3 weeks after surgery, the mice were anesthetized and the casts were removed using pliers.

Timecourse

Behavioral and physiological measures were taken on the injured and contralateral hindpaw 3, 5 and 7 weeks after fracture; the 3-week timepoint was 24 hours after cast removal. Tissue collected at the 3 and 7-week timepoints was used for the molecular studies (microarray, qPCR, ELISA).

Physiological measures

Hindpaw temperature

The temperature of the hindpaw was measured using a fine wire thermocouple (Omega) applied to the paw skin, as described previously [50]. The investigator held the wire using an insulating Styrofoam block. Three sites were tested over the dorsum of the hindpaw: the space between the first and second metatarsals (medial), the second and third metatarsals (central), and the fourth and fifth metatarsals (lateral). After a site was tested in one hindpaw the same site was immediately tested in the contralateral hindpaw. The testing protocol was medial dorsum right then left, central dorsum right then left, lateral dorsum right then left, medial dorsum left then right, central dorsum left then right, and lateral dorsum left then right. The six measurements for each hindpaw were averaged for the mean temperature.

Hindpaw volume

A laser sensor technique was used to determine the dorsal–ventral thickness of the hindpaw, as we have previously described [50]. The measurement sensor device used in these experiments (Limab) has a measurement range of 200 mm with a 0.01 mm resolution.

Behavioral testing

Mechanical hypersensitivity

Calibrated monofilaments (Stoelting Co., Wood Dale, IL) were applied to the plantar surface of the hindpaw and the 50% threshold to withdraw (grams) was calculated as previously described [51].

Hindpaw unweighting

An incapacitance device (IITC Inc.) was used to measure hindpaw unweighting. The mice were manually held in a vertical position over the apparatus with the hindpaws resting on separate metal scale plates and the entire weight of the mouse was supported on the hindpaws. The duration of each measurement was 6 s and 6 consecutive measurements were taken at 10s intervals. All 6 readings were averaged to calculate the bilateral hindpaw weight-bearing values.

Microarray analysis

Microarray analysis was performed in the L4/L5 region of the ipsilateral spinal cord at 3 and 7 weeks in CRPS (n = 3/group; tissue from 2 animals combined for each sample) and age-matched control mice. Microarray profiling was performed using an Agilent Whole Mouse Genome Microarray (44 k arrays) at the Stanford Functional Genomics Facility. Results were imported into R using the Bioconductor package for microarray analysis where RMA normalization was performed and filtering of absent/present labels performed. Statistical analysis of the 3- and 7-week timepoint compared to the control timepoint was then performed using Students t test. False Discovery Rate (FDR) was used to adjust p-values to take into account multiple comparison effects and significance was considered reached at an absolute fold change of 1.5 and a FDR-adjusted p-value of less than 0.05.

Pathway analysis

Ingenuity Software was used to perform whole pathway analysis in the identification of affected networks and their relationship to each other based on the differential expression between control, 3- and 7-week CRPS mice. Briefly, our data set containing gene identifiers and corresponding expression values was uploaded into the application. Each identifier was mapped to its corresponding object in the Ingenuity® Knowledge Base. Differentially expressed genes, called network eligible molecules, were overlaid onto a global molecular network developed from information contained in the Ingenuity Knowledge Base. Networks of Network Eligible Molecules were then algorithmically generated based on their connectivity. The pathway presented was chosen from following candidate gene validation. Right-tailed Fisher’s exact test was used to calculate a p-value determining the probability that the pathway is due to chance alone.

RNA isolation and quantitative real-time polymerase chain reaction (PCR)

Mice were first euthanized by carbon dioxide asphyxiation and spinal cord tissue was harvested by extrusion. Ipsilateral L4/L5 lumbar spinal cord segments were dissected on a chilled surface. Dissected tissue was then quick-frozen in liquid nitrogen and stored at −80°C until required for analysis. Total RNA was isolated from spinal cord using the RNeasy Mini Kit (Qiagen) according to the manufacturer's instructions. The purity and concentration were determined spectrophotometrically. The cDNA was subsequently synthesized using an iScript cDNA Synthesis Kit (Bio-Rad Laboratories). Real time PCR reactions were conducted using the SYBR Green PCR master mix (Applied Biosystems) and performed on the ABI 7900HT sequencing detection system (Applied Biosystems). The data from real time PCR experiments were analyzed by the comparative CT method as described in the manufacturer’s manual.

Enzyme-linked immunosorbent assay (ELISA)

Mice were first euthanized by carbon dioxide asphyxiation and spinal cord tissue was harvested by extrusion. Lumbar spinal cord segments were dissected on a chilled surface. Dissected tissue was then quick-frozen in liquid nitrogen and stored at −80°C until required for analysis. Mouse lumbar spinal cords were homogenized in ice cold 0.9% NaCl containing a cocktail of protease inhibitors (Roche Applied Science) and centrifuged at 12,000G for 10 min at 4°C. Supernatant fractions were then frozen at −80°C until use. An aliquot was subjected to protein assay (Bio-Rad) to normalize mediator levels. CcL2 levels were assayed in duplicate by using mouse CcL2 ELISA kit (R&D Systems) according to the manufacturer’s instructions.

Pharmacology

CcL2 administration

Recombinant full length CcL2 (ab9901, Abcam) was reconstituted in sterile saline. CcL2 or saline were administered intrathecally (10 or 100 ng in 5 μL; n = 8/group) or through intraplantar injections (100 or 500 μg in 10 μl).

RS5044393 administration

The CCR2 antagonist, RS504393 (Santa Cruz Biotech, CA) was diluted in sterile saline containing DMSO (<1 10="" 1="" 3="" 5="" administered="" dmso="" g="" in="" injections="" intraplantar="" intrathecally="" l="" nbsp="" or="" p="" rs504393="" saline="" through="" vehicle="" were="" with="">

Statistical analysis

All data are expressed as mean ± SEM. Analysis of repeated parametric measures was accomplished using a one-way analysis of variance followed post-hoc Dunnett or Bonferroni testing or a two-way analysis of variance followed by Bonferroni testing. For simple comparisons of two groups, a two-tailed Student t-test was employed. Welch’s correction was used when the assumption of equal variances was not met. Significance was set at p < 0.05. (Prism 5; GraphPad Software, La Jolla, CA).

Abbreviations

CcL2: Chemokine (C-C motif) Ligand 2; CCR2: C-C Chemokine Receptor 2; CNS: Central nervous system; CRPS: Complex Regional Pain Syndrome; DRG: Dorsal root ganglion; ELISA: Enzyme-linked immunosorbent assay; IPA: Ingenuity Pathway Analysis; SC: Spinal Cord; qPCR: Quantitative Polymerase Chain Reaction.

Competing interests

The authors do not have financial or other relationships that might lead to conflict of interest.

Authors’ contributions

JJ: Overall experimental design, microarray analysis, behavioral testing, writing of the manuscript. MT: Ingenuity pathway analysis, behavioral testing, writing of the manuscript. TG: Behavioral testing, tissue collection. WL: Generation of CRPS model animals, tissue collection. XS: ELISA, RNA extraction, qPCR analysis. MZ: Array quality control and interpretation, Ingenuity pathway analysis. GP: Supervision of array analysis. WSK: Co-PI of project, interpretation of results. JDC: Co-PI of project, overall supervision of experiments. All authors read and approved the final manuscript.

Acknowledgements

This work was supported by awards from the National Institutes for Health R01NS072143 (JDC) and Department of Veterans Affairs 1I01RX000238 (WSK and JDC).

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Please, don't make me lip sync Tina Turner.

Not the way I had hoped to leap back into mine own small blogging world, a moat-sized affair, after a six month or so stint spent dog-paddling in a chlorinated Olympic pool, but we don't get to be in charge of our own relevance -- at least not for a bit.

It's a relief not to be relevant, except, of course, in those instances where I hold the key, the definition, the path, the road map, and the most minute details of Being Right.  Then it's so -- stomping::feet -- frustrating.

Though, again, it's a relief.  I don't have to do anything.

I don't have to don a uniform, nor even dither around with wearing haute couture camo.

I don't have to have my skin, that largest of organs, peel and fall away from vascularized flesh, or have mucous membranes pretty much necrotize on the spot.

I don't have to have any ability to aid, ease, cure, ameliorate, or euthanize stymied by lack of supplies and an overabundance of need.

I don't have to be held hostage by an idiot electorate and its idiot elected representatives.  I don't have to shrink in horror at the echo of mine own words, "not time-sensitive." Were I a man, I am guessing that's a moment when one's testicles withdraw to ear level.

I don't have to be Richard Engel's moral sidekick if I don't feel like it.  I can change the station.  I can forget that Assad will see this as an unscheduled, unexpected extra play period.  I don't have to feel the bile rise in my esophagus, knowing that my life, my childrens' lives, have been measured and found meaningless.

Yes, I have a thang for Richard Engel.  I think he speaks my truths more often than not, though I've noted that he also does stuff about them.  A minor discord.  Truth-speakers need cheerleaders, too. Yay, Richard Engel!  No, I'm not smiling either.

I don't embarrass easily and the fact that our Congress was not immediately called to Washington but was, rather, left to choke on Summer's last wieners and burgers -- better now that we are all foodies -- and put off the "debate" until 9 September, well, that probably has nothing to do with why I can only swallow yogurt.

I went 24 hours without speaking, a respite for everyone.  My vision is blurry because I got confused -- which drops had I put in, which had I put in too often, which were totally forgotten.  I began coughing up blood with my jellied yellow sputum, nothing alarming, I don't think, just a result of force.  I cough like a commando.

When I think of what I wish to blog about, I cannot think.  I long, instead, for things you're used to hearing about -- sleep free from the world's sluttiness, sleep free from dreams of not finding the class, or the classroom, in which I was scheduled to teach, an hour ago.  Yes, I often find all my students scattered about strange buildings, in stairwells, seated alone in empty classrooms (but not ours), raising a ruckus in administration, where administrators glare at me and my long line of ducklings. I try to teach as we rush down hallways, try to make a game of it, but these are the grown ones, the college kids, and I know what they must be thinking.  Something along the lines of... "this class could double as a PE course."

When I think of what I want to say, I feel instead soft arms and hints of hugs, I hear murmurs of mothers, of fathers, of brothers, of sisters, of all of their lovers, recognized or not.  I hear no children.

I wonder what is the right prayer to pray in thankfulness for not being relevant.  Prayer, right now, is divorced, cleanly divided, from notions of encounters and dialogues.  And please don't make me lip sync Tina Turner or do other acts of penitential poignant irrelevance.



Please God, create and destroy, both, my matter...

Should I be glad that this instrument is compatible with my dearth of energy and my excess of repentance?

Please God, create and destroy, both, my matter... 

If we could but distract God for a forever instant, maybe we'd have a chance.  That can be my meaningfulness.  It still professes my cowardice and guilt, but might also gift humanity with the moment it needs, might allow for felonious acts to fall on a felonious physical body, an error from the get-go, creating a wondrous loop of meaninglessness within which you all can choose to finally trim that annoying cuticle on your left thumb, or slaughter the Idiot Think of the Lying Liars and become a worthy dream, not of Marvel Heroes but of marvelous one-by-ones.

Bomb his planes, his weapons' caches.  Kill him and his heinous cohorts in that moment where an old LP spins on the platter, skipping, skipping.  Extra-judicial executions, approved by the death penalty abolitionist too right, too sick to mince her words.  Do I deify myself?  Die for attention?  Do I damn myself, deified while standing on my aching head?  Die for distraction?  Sure thing, let's worry about those questions.

Please God, create and destroy, both, my matter... 

© 2013 L. Ryan

"There is no crisis in which political poets and orators may not speak of trees..."

Even though it's been pretty darned well established that this here is my blog, not yours, not the government's, not the world's, and that it's not even a faint and flagging reflection of the one true universe, I feel I must defend myself.  It came as a sign unto moi, a sign from Lo, the Angel of the Lord, a sign in the form of blood-tainted sputum and high fever, nightmares about the death penalty ("They say it's easier on ya if -- when ya hear the cyanide eggs drop -- ya count to ten, then take a deep breath..."), nightmares about waitressing (I dunno!).  Mostly the shock of bloody sputum in the comfort of a USAmerican home -- Lo, the Angel of the Lord wants me to make that clear.

It's not a diversionary tactic, opening the gates to the past words of greater writers;  It's not a passing of the baton, except as a reflection of how the race, the game, the run around the track, is prolonged.


On the eve of WWII, Bertolt Brecht wrote, “What kind of times are they when / A talk about trees is almost a crime / Because it implies silence about so many other horrors.” Nearly twenty years after the war, the American poet George Oppen responded: “There is no crisis in which political poets and orators may not speak of trees.” Oppen reads Brecht’s reference to “talk about trees” as Brecht’s own aversion to the aesthetic at a time of sociopolitical crisis. For Oppen, however, the aesthetic is critical for “the good life,” which he argues requires an aesthetic definition, and “will be defined outside of anybody’s politics, or defined wrongly.” 
Brecht rejects the sentimentalized tree in the interest of politics. Oppen rejects politics in the interest of the unsentimental tree.

So many call Oppen naive, the kindest thing so many can think of for a brilliant Marxist poet who, also, cast himself as a nexus -- a painful, jarring point -- for so many voices.  I stand with him.

In more prosaic moments, I think of Eli Cohen planting trees on the Golan Heights, outlining Syrian fortifications in feigned sympathy for the soldiers, unprotected from the sun's harsh, harsh rays.


         

*******

Dulce et Decorum Est 

Bent double, like old beggars under sacks,
Knock-kneed, coughing like hags, we cursed through sludge,
Till on the haunting flares we turned our backs
And towards our distant rest began to trudge.
Men marched asleep. Many had lost their boots
But limped on, blood-shod. All went lame; all blind;
Drunk with fatigue; deaf even to the hoots
Of tired, outstripped Five-Nines that dropped behind.

Gas! GAS! Quick, boys! -- An ecstasy of fumbling,
Fitting the clumsy helmets just in time;
But someone still was yelling out and stumbling
And flound'ring like a man in fire or lime . . .
Dim, through the misty panes and thick green light,
As under I green sea, I saw him drowning.

In all my dreams, before my helpless sight,
He plunges at me, guttering, choking, drowning.

If in some smothering dreams you too could pace
Behind the wagon that we flung him in,
And watch the white eyes writhing in his face,
His hanging face, like a devil's sick of sin;
If you could hear, at every jolt, the blood
Come gargling from the froth-corrupted lungs,
Obscene as cancer, bitter as the cud
Of vile, incurable sores on innocent tongues, --
My friend, you would not tell with such high zest
To children ardent for some desperate glory,
The old lie: Dulce et decorum est
Pro patria mori.

Wilfred Owen
8 October 1917 - March, 1918


*******

Syria wins two medals in International Chemistry Olympiad

Students Yazan Ghannam and Issam al-Anouf won the medals for the team.

Last week, Syrian student Osama Yaghi won a bronze medal in the International Physics Olympiad held in Denmark.

Head of the National Commission of the Syrian Science Olympiad Imad al-Azzb told SANA reporter that the success that has been achieved today is unprecedented for Syria due to the participation of 77 countries, pointing out that  this was the 5th participation of Syria in this world competition...


*******
               





The teacher passed out and fell right off her chair.
My classmates are crying and gasping for air.
The hamster is howling and hiding his head.
The plants by the window are practically dead.

There's gas in the class; it's completely my fault,
and smells like a chemical weapons assault.
So try to remember this lesson from me:
Don't take off your shoes in class after P.E.
--Kenn Nesbitt


*******


Kerry: Samples from Syria tested positive for sarin
By Carrie Dann, Political Reporter, NBC News

"In the last 24 hours, we have learned through samples that were provided to the United States that have now been tested from first responders in east Damascus and hair samples and blood samples have tested positive for signatures of sarin," Kerry said on NBC's Meet The Press. "So this case is building and this case will build."  
Sarin is a man-made chemical warfare agent considered the most toxic and fast-acting of its kind. The odorless, colorless nerve agent interferes with an enzyme called acetylcholinesterase, which controls nerve signals to the muscles. 

*******

          
Song of Napalm

for my wife

After the storm, after the rain stopped pounding,
We stood in the doorway watching horses
Walk off lazily across the pasture’s hill.
We stared through the black screen,
Our vision altered by the distance
So I thought I saw a mist
Kicked up around their hooves when they faded
Like cut-out horses
Away from us.
The grass was never more blue in that light, more
Scarlet; beyond the pasture
Trees scraped their voices into the wind, branches
Crisscrossed the sky like barbed wire
But you said they were only branches.

Okay. The storm stopped pounding.
I am trying to say this straight: for once
I was sane enough to pause and breathe
Outside my wild plans and after the hard rain
I turned my back on the old curses. I believed
They swung finally away from me ...

But still the branches are wire
And thunder is the pounding mortar,
Still I close my eyes and see the girl
Running from her village, napalm
Stuck to her dress like jelly,
Her hands reaching for the no one
Who waits in waves of heat before her.

So I can keep on living,
So I can stay here beside you,
I try to imagine she runs down the road and wings
Beat inside her until she rises
Above the stinking jungle and her pain
Eases, and your pain, and mine.

But the lie swings back again.
The lie works only as long as it takes to speak
And the girl runs only as far
As the napalm allows
Until her burning tendons and crackling
Muscles draw her up
into that final position

Burning bodies so perfectly assume. Nothing
Can change that; she is burned behind my eyes
And not your good love and not the rain-swept air
And not the jungle green
Pasture unfolding before us can deny it.

-- Bruce Weigl, “Song of Napalm” from Archaeology of the Circle: New and Selected Poems. Copyright © 1999 by Bruce Weigl.
*******
        

This is how sarin kills
By Max Fisher, Published: May 6 - Washington Post

Sarin was first developed in Nazi Germany and later used by Saddam Hussein’s forces against Iraqi Kurdish civilians. But what does it actually do to those exposed to it? The Atlantic’s James Hamblin takes a look at the compound and its history. He also explains, in medical detail, how it can turn our own nervous system against us:

Sarin is unique in potency but not in mechanism. There are other drugs, pesticides, and plants that work the same way. They are called cholinesterase inhibitors.

Our nerves talk to each other by releasing chemicals called neurotransmitters. The amount of a particular neurotransmitter helps determine whether a nerve fires or not. What so-called nerve agents do is alter those neurotransmitters. They kink the signaling between our nerves, telling them to do things they normally do, but with altered frequency.

After a neurotransmitter has done its job, delivered its message, an enzyme usually comes along and demolishes it. But nerve agents block those enzymes. The enzyme can’t break down the neurotransmitter, so the neurotransmitter stays around and keeps giving its message. If that message was, say, to release a little water onto your eye because your eye was dry, now the repeated message becomes “make your eyes water uncontrollably.”

Within seconds of exposure to sarin gas (or liquid, which evaporates easily), we start to notice the immediate effects of acetylcholine buildup. First, our smooth muscles and secretions go crazy. The nerves to those areas keep firing, keep telling them to go. The nose runs, the eyes cry, the mouth drools and vomits, and bowels and bladder evacuate themselves. It is not a dignified state.

Since sarin has no smell or taste, the person may very well have no idea what’s going on. Their chest tightens, vision blurs. If the exposure was great enough, that can progress to convulsions, paralysis, and death within 1 to 10 minutes.

Sarin’s horrific effects help explain why the Obama administration is so intent on holding a “red line” against its use. The taboo against chemical weapons has largely held for decades, one of the world’s few successes in restricting war. A chemical war, because its tools are so much better suited for use against large numbers of civilians than for defeating an armed enemy, is, as I wrote recently, a qualitatively different kind of war.
Of course, the fighting in Syria has already claimed tens of thousands of lives, often in attacks that target civilians or use mortars and air strikes that kill indiscriminately. Is that just as bad as using a small amount of sarin, which is all it would take to cross the red line? Is it worse? It depends how you draw the line.


*******
       

Father Death Blues

Hey Father Death, I'm flying home
Hey poor man, you're all alone
Hey old daddy, I know where I'm going

Father Death, Don't cry any more
Mama's there, underneath the floor
Brother Death, please mind the store

Old Aunty Death Don't hide your bones
Old Uncle Death I hear your groans
O Sister Death how sweet your moans

O Children Deaths go breathe your breaths
Sobbing breasts'll ease your Deaths
Pain is gone, tears take the rest

Genius Death your art is done
Lover Death your body's gone
Father Death I'm coming home

Guru Death your words are true
Teacher Death I do thank you
For inspiring me to sing this Blues

Buddha Death, I wake with you
Dharma Death, your mind is new
Sangha Death, we'll work it through

Suffering is what was born
Ignorance made me forlorn
Tearful truths I cannot scorn

Father Breath once more farewell
Birth you gave was no thing ill
My heart is still, as time will tell. 

--Allen Ginsberg

Saturday, August 31, 2013

"Not time sensitive": They're rioting in Africa...






"Kingston Trio meet Zimbabwe Ben. The more things change, the more they stay the same."
Uploaded to YouTube by WC Varones  on January 29, 2011.








Tuesday, August 27, 2013

Spew Day

An enlightening day, on all fronts.

Fred is sick of hearing about bad news, sad news, medical news.  Fred is sick of being interrupted. Yes, Fred let it spewwww today!  So I'm sitting here, feeling that safety lies in being mute.

The last eye surgery was yesterday.  Today's pressure check on that left eye revealed a miraculously wunnerful-wunnerful result of ELEVEN. I haven't had an intraocular pressure that low in 20 years.  Is the cure for glaucoma lens replacement?  (Yes, I jest -- because the level of inflammation in that eye is apparently pretty severe, and it is hurting to the point of being bothersome.  One minor bitch; One minor moan.)

It was a rough experience this time, but nothing having to do with the wondrous orbs themselves.  I cleaned obsessively over the weekend, something I do compulsively before any surgery, no matter how small, just in case Fred has to host an Irish wake should I decide not to wake up or pull some other shenanigan or tom-foolery resulting in death.  Do I want my Aunt Nancy to sit in Marlinspike Hall's Mourning Salon, enjoy a complimentary marguerita, only to rise covered in cat hair?  Could I find a restful position in the fiery sulfurous lake knowing that one of the militant lesbian feminist existentialist members of Fred's flourishing ukulele band was distracted from comforting my dear sweet Fred because of a smudge on one of our finest shot glasses.

Anyway, I may have overdone it.  I was twitching like a twitching fool before and, again, after the slice-and-dice.  The staff was, again, wonderful, attentive, professional, compassionate... but the only solution was to get home as soon as possible so that I could eliminate the excess external stimuli (even being careful not to touch me... a surgical team kinda, sorta, has-ta touch ya!).  Even noise and lights can bring on the Grand Spaz these days, so the anesthesiologist was very cool about allowing me to leap from gurney to wheelchair and out the door.  Plus... the antispasmodics I needed, at the doses required, were at home.  I should have brought them, but it just didn't occur to me.

Once home, there was considerably more actual eye pain than the first go 'round, and that became more irritating as the itching arrived, then the small welts around the bandage.  By mid-evening, I was snarling.  First, I replaced the nasty tape holding the eye guard in place with the much kinder version made of paper.  That helped... for about five minutes.  I fairly ripped the whole apparatus off, Fred watching TV next to me with such ADHD intensity that I don't thing he realized what I was doing.  It turned out that the problem was the shield itself.  The right eye received a sweet little unobtrusive plain plastic affair, very light and made of nothing that would dare offend.  Ah, but the left eye... was covered with a metal plate and its sharp edges were protected with a protective edging of RUBBER.  Adopting the deductive brilliance of the inhabitants of 221B Baker Street, I said (pretty much to myself):  "Aha! The game is a not a foot, but an eye!" I went digging through my handy-dandy purple and butt-ugly "eye kit," and praised the Good Lord and my favorite angel, Lo!  "Look, Lo!  I managed to hang on to what seemed like a piece of useless sentimentality!  The original plain-jane version of the eye guard!"

When I speak, I do not use quite as many exclamation marks.

So after a few hours of itching and welts, the problem was mostly relieved by proper tape and and the tossing of the malicious rubber coating on the guard.

The remaining problems?  Well, the Spaz Attacks didn't stop and I spiked a big ass fever, felt like krapola, and toyed with phoning the go-to-guy.  Instead, I had some frozen strawberries and lots of baclofen.  It seemed a reasonable accommodation.

Come pre-dawn, the only remaining difficulties were... the bleeping spazzes and the freaking fever with the helpful addition of severe pain in the shoulders and hips.  By the time they'd rechecked my eye pressures (not believing the initial reading of... read it again:  ELEVEN!), someone announced, "You feel like you have a fever," to which someone else added the helpful echo, "And your cheeks are bright pink and your eyes are kind of glazed...." There just being three of us in the room, there ended the commentary, as I had nothing to add to the conversation.

No, it all mostly boiled down to "give your internist a call," which is medical CYA terminology.

I don't think I will bother him yet.  The steroid dose is being tapered down, that can create its own havoc;  The surgery may have set off a CRPS inflammatory hoe-down;  The cleaning-of-the-manor escapade may have aggravated the infection in my bones.

So my money is on feeling a bit better day by day, with worse days interspersed just for normal insanity's sake.

On the way home today, in between Fred delivering various sententious sentences, we stopped so that I could buy some cheapo-cheapo production's (remember them?) reading glasses at a large grocery. And, of course, the ever comforting and increasingly necessary plain lowfat yogurt, the equally comforting and always important hair gel for the curly headed living in high humidity, and the surgical reward treat, which turned out to be NOT CHOCOLATE.  I don't know how it happened, but Fred's surgical reward was a well-chosen tin of chocolate-covered espresso beans and I opted for the veggie chips -- beets, green beans, zucchini, that sort of thing.  Basically fried stuff covered with salt.

And -- I cannot remember the last time I set foot in a grocery store -- I got to deliver that famous line once we were home and I was stashing away the purchases:  "We forgot the milk!"

So that you are not deprived of any interesting morsel of information, since putting up the groceries, I organized the next week's eye drop schedule (turns out the right eye still needs 'em, but in different amounts) and worked on getting the fever down.  I also managed to develop, and it may have shown up here and there in this post, some resentment over Fred's righteous outbursts.  It's the delivery that gets to me... The I-have-held-in-my-suffering-longer-than-your-average-person-would-be-able-to righteousness... The I-am-such-a-chipper-and-cheery-communicator-why-can't-you-be-like-me condescension... and then there's my guilt-because-I-know-the-essence-of-what-he-wants-because-he-has-asked-for-it-before.  What I don't get, and just cannot abide, is how he turns things that are positives (to me, their verbalizer) into negatives.  This can only be by the action of HIS brain and standards.  Most of the things I discuss simply ARE, and are offered as such.  Information.

That this outburst came shortly after I informed him, happily, that sweet Hannah (my hero -- the young girl who had the rotationplasty and has now had a SUCCESSFUL BMT!) is going to be on the Today Show next week.  A cause to rejoice, I thought.

Clearly, I want to be right.  Clearly, I don't want him to be right because I don't want to be wrong. That feels the most awful of all -- never, ever should I want for dear Fred not to be right.

He's a stud muffin.  He's a sweet heart.  He's a good guy.  And he is becoming foreign to me.  I spend much time trying to arrange a life for him should I die -- because I truly don't think he has the foggiest notion of how much it costs to live, how one goes about living.  He's the guy who never repairs anything and then is shocked when things fall apart.  I obsessively clean the lint trap on the drier and note on the kitchen calendar when the A/C filter was changed.  I budget for repairs each year because I know who is gonna pay (until, of course, Captain Haddock surfaces one late autumn day in his miniature submarine, tossing about reimbursement checks as if we knew we could count on getting them to begin with... and then the grog flows, and remembrance goes, and before you know it, it's "dive, dive dive..." and the Great Cuss-Artist of the Moat descends like a drunken ghost...)

And now I am having moments of resentment -- which logically can only be expended on myself, as I am the creator of the need.

I am the ruination of Fred's life.

I just did not need the reminder.

So that was my day.  It may be that the Spaz Attacks and the Fever, plus the irritation (ever so slight) of the eyes... it may be that I am feeling as if I've no skin at all.

Oh... and then there's the whole Syria fiasco set to go off, some say, on Thursday between lunch and 4 o'clock tea.  Why we cannot turn the whole affair into an elegant but non-fussy extra-judicial execution of a Head of State, I dunno.  No one ever asks me.  I think it's a cheerful, uplifting solution.

Love you (Well, some of you. You know who you are.  And hell, if you are someone I've never even met, but need a little love, take some:  It's yours!) --

profderien  


Amie de la Bonne et Belle Bianca Castafiore, Guardien de Frédéric, et Une Personne Extrêmement Déprimante et Dépressive qui Devrait Probablement Etre Evitée à Tout Prix --

Grosses Bises!






© 2013 L. Ryan

Sunday, August 25, 2013

That's the plan

A good Sunday afternoon to you.

I feel somber and insignificant, that wonderfully creative space so fertile for writers.

Yesterday was a day for physical work, such as I can pull off, anyway.  Today is meant to fritter away my nerves and still produce something that may extend beyond myself.  Thus far, I've done nothing that I'd dare lay out for a reader.

I'm about to go mess up the kitchen, having promised the production of something wonderful, while leaving that completely undefined.  A savory tart comes to mind.  A massive salad first came to mind but I was subtly told that wouldn't do.  In contention with all of these culinary diversions?  The need for sleep.

Tomorrow is my second eye surgery.  We're hoping to get in earlier this time, therefore out earlier, home earlier, resting earlier, rejoicing sooner.

That's the plan.

Love you.














© 2013 L. Ryan

Saturday, August 17, 2013

Karen Black, 1939 - 2013



Easy Rider - Cemetery Acid Trip - 1969
uploaded to YouTube by MACHINE OLISTIC VISION ARTIFACTS -- mova

Scene Plot:
They continue to New Orleans and find the brothel George had intended to visit. Taking prostitutes Karen (Karen Black) and Mary (Toni Basil) with them, Wyatt and Billy decide to go outside and wander the parade-filled street of the Mardi Gras celebration. They end up in a cemetery, where all four ingest LSD. They experience a psychedelic bad trip infused with Catholic prayer, represented through quick edits, sound effects, and over-exposed film.

Trivia
For the famous soliloquy that Peter Fonda does in the cemetery while tripped on acid, Director Dennis Hopper asked Peter to talk to the statue as if he were talking to his mother, who died a suicide when Peter was 10 years old. Peter didn't want to do it, as he had never confronted his feelings about his mother. But Hopper insisted, which is why you hear Peter call the statue "Mother", and he states that he both loves her and hates her, which expresses his conflicted emotions. This scene persuaded Bob Dylan to allow the use of his song "It's Alright Ma" in one of the final scenes, which contains lyrics referencing suicide. Peter told Dylan, "I need to hear those words", and he agreed to its use. 

The New Orleans cemetery is St. Louis #1, a Catholic cemetery. They didn't have permission to shoot there and Catholic audience members were shocked that the church had allowed it. Since then no other films have been allowed to shoot at St. Louis #1, unless it's a documentary and you have permission.



Uploaded on Feb 23, 2011 by DarkLadyUK
Karen Black in one of my favorites --
Come Back to the Five & Dime, Jimmy Dean, Jimmy Dean.

Come Back to the Five and Dime, Jimmy Dean, Jimmy Dean is a 1982 film adaptation of Ed Graczyk's 1976 play of the same name. The Broadway and screen versions were directed by Robert Altman, and starred Sandy Dennis, Cher, Mark Patton, Karen Black, Sudie Bond and Kathy Bates.

As with the original play, the film version takes place inside a small Woolworth's five-and-dime store in a small Texas town, where an all-female fan club for actor James Dean reunites in 1975. Through a series of flashbacks, the six members also reveal secrets dating back to 1955.

Jimmy Dean was the first of several feature adaptations of plays by Altman in the 1980s, after the director's departure from Hollywood. It was screened at various film festivals in North America and Europe, and won the top prize at the 1982 Chicago International Film Festival. This was the first release for New York-based independent outlet Cinecom, which Altman chose over a major studio "to guarantee a long play" in art house venues.




Nancy Pryor: The radio's dead. We're all alone now Bette.


© 2013 L. Ryan

Friday, August 16, 2013

CTTC and CALMARE / Scrambler Therapy: The Devil's Details

Money Drain




i don't have it in me to elaborate -- and lord knows, i should not have to, if you've been following my one-person campaign against CTTC, the patent monger and soul-sucking corporate face of CALMARE / "Scrambler Therapy" -- snake oil salesman to people desperate for relief of their CRPS pain (and countless other types of neuropathic pain).

but, while finally deciding to peer over my pirate's eye bandage to see if my stocks had bottomed out since last friday (they're not doing well, darn it all), i did my usual check on under-the-counter-over-the-barrel penny stock CTTC, and found it at its usual sky-rocketing 0.16 with no shares having exchanged hands as of 3 pm.  still, knowing that there are "entrepreneurs" out there dicking around with it, day-trading on minuscule changes - a cent here, a cent there - that amount to twenty and thirty percent gains, it makes me nauseous that it's still trading at all.

out of habit, i looked to see if there was any "news" driving this cruel company's latest blandness, and lo! there was a bit of something.

they say the devil is in the details.  there is one glaring detail that caught part of one of my errant eyes!

CTTC filed another Form 10-Q on august 13th and in the meandering nonsense most would overlook in their brief historical rundown of their desiccated cardiac function, it is worth noting that the "inventor" of CALMARE therapy, Giussepe Marineo, is no longer referred to as an engineer, a doctor, a holder of a doctorate, or even as a professor - as in times past. "in times past" meaning times as recent as a month ago.

Sales of our Calmare device continue to be the major source of revenue for the Company. The Company initially acquired the exclusive, worldwide rights to the Scrambler Therapy� technology in 2007. The Company's 2007 agreement with Giuseppe Marineo ("Marineo"), the inventor of Scrambler Therapy technology, and Delta Research and Development ("Delta"), authorized CTTC to manufacture and sell worldwide the device developed from the patented Scrambler Therapy technology;
that's a pretty huge fall from grace.  no more prefixes or suffixes for poor marineo.  and many, many
questions as to previous claims and accolades about the man.

as for their raw financial news, it does cheer me.  i managed a smile on my bandaged face -- and just to drive home more about the misery of CRPS, as that's my job in life (ar ar ar!), my skin peels off with the tape holding the bandages down, and i've now several raw craters on my CRPS-afflicted face.  yes, i know, and i say it along with you -- who the hell knew it could impact the face?  and such a lovely face it once was, too.

really.

kind of cute, even.

anyway -- feast your eyes on this financial wizardry:

We incurred a net loss of $677,000 or $0.04 per basic and diluted share for the three months ended June 30, 2013, compared to a net loss of $942,000 or $0.06 per basic and diluted share for the three months ended June 30, 2012. As explained in detail below, the net loss reflects an increase of $28,000 in gross revenue, an increase of $73,000 in gross profit from product sales and a decrease in other expenses of $238,000.

oh, what the heck.  i am so weird that i enjoy meetings;  i watch school board meetings of my former school district employer;  i keep robert's rules of order at bedside for a rip-roaring good read when bored.  get ready to laugh/cry at the remaining financial assessments:


Revenue and Gross Profit from Sales
Revenue from product sales: In the three months ended June 30, 2013, we recorded $136,000 in revenue from the sale and shipment of 2 Calmare� pain therapy medical devices, with a cost of product sales of $46,000. In the three months ended June 30, 2012, we recorded $63,000 in revenue from the sale and shipment of one Calmare� pain therapy medical devices; with a cost of product sales of $45,000.
Other Revenue
Retained royalties for the three months ended June 30, 2013 were $4,000, which was $48,000 or 92% less than the $52,000 of retained royalties reported in the three months ended June 30, 2012. The 2012 amount included the receipt of a $40,000 royalty payment received for 2011 which was greater than our original estimates.
Other income for the three months ended June 30, 2013, was $10,000, including payments for training and the sale of supplies such as electrodes and cables for use with our Calmare� devices ($2,000) and rental income ($8,000) from customers who were renting Calmare� pain therapy medical devices from us. In the three months ended June 30, 2012, other income was $8,000, including payments for the sale of supplies such as electrodes and cables for use with our Calmare� devices ($5,000) and rental income ($3,000) from customers who were renting Calmare� pain therapy medical devices from us.
Expenses
Total expenses were $781,000 in the three months ended June 30, 2013, compared to $1,019,000 in the three months ended June 30, 2012, a decrease of $238,000 or 23%.
Selling expenses were $36,000 in three months ended June 30, 2013, compared to $94,000 in the three months ended June 30, 2012. The decrease of $58,000 reflects an increase of $16,000 in commission expenses due to the sale of an additional Calmare� device in 2013, which was offset by a decrease of $9,000 in domestic patent legal expenses as well as a decrease of $14,000 in foreign patent legal expenses related to the joint venture with XION Corporation to develop the melanocortin technologies combined with a decrease of $51,000 in patent and translation fees related to working with the inventor of the Calmare� device resulting from the transfer of the contractual obligation to pay patent costs back to the inventor.
Personnel and consulting expenses were $279,000 in the three months ended June 30, 2013, as compared to $502,000 in the three months ended June 30, 2012, a decrease of $223,000 or 44%. Personnel related expenses were $218,000 in the three months ended June 30, 2013, as compared to $146,000 in the three months ended June 30, 2012, an increase of $72,000 primarily due to the addition of a new CEO in November 2012, as well as the expense during the three months ended June 30, 2013 ($17,000) related to the granting of 1,000,000 options to our CEO during the three months ended March 31, 2013. No options were granted to employees in 2012. The increased personnel related expenses were offset by reductions in consulting fees ($295,000), primarily due to the termination of services related to obtaining private insurance and Medicare reimbursement approval for our Calmare medical device ($178,000) as well as the termination of the contract for the Managing Director for International Business Development ($77,000); in addition, the management services fees for our former contracted CEO ($30,000) were discontinued when the employee CEO was hired in November 2012.
General and administrative expenses were $413,000 in the three months ended June 30, 2013, a decrease of $11,000 from $424,000 in the three months ended June 30, 2012
The change reflects increases in travel expenses ($26,000) due primarily to the increased travel of the new CEO during the quarter, offset by reductions due to the departure of one nurse trainer in the three months ended June 30, 2012; increases in directors fees and expenses, including liability insurance ($8,000); increased investor and public relations expenses ($3,000); increased investment banking expenses ($3,000); increased corporate legal expenses ($3,000); increased audit and tax services fees ($6,000) both related to the timing of activities; increased marketing expenses ($7,000) and increases in postage and delivery supply expenses ($5,000). These increases were offset by reductions in legal fees associated with litigation ($38,000); rent and associated expenses due to closing the North Carolina office during 2012 ($7,000); proxy and annual meeting expenses, due to reductions in the contracted services ($8,000); financing charges ($7,000); miscellaneous expenses, banking fees, miscellaneous taxes and other fees ($4,000); depreciation expense ($1,000); and a decrease in bad debt expense due to expenses related to a former employee which were incurred in the three months ended June 30, 2012 and did not recur in 2013 ($7,000).
Interest expense was $44,000 in the three months ended June 30, 2013, compared to $13,000 in the three months ended June 30, 2012, an increase of $31,000 due to an increase in the use of debt financing.
Unrealized loss on derivative instrument of $9,000 in three months ended June 30, 2013 as compared to the $14,000 gain recorded in the three months ended June 30, 2012, reflects the difference in the portion of the Class C Preferred stock which is based on changes in the price of the Company's common shares at the end of each period (see Note 12 for details).
just slipping in under the radar is this coy little come-hither:  "At June 30, 2013, we had outstanding debt in the form of promissory notes totaling $2,630,000."  it's at this point that the 10-Q confronts the failure of its first bail out attempt:  the "Factoring Agreement with Versant Funding, LLC," according to which "Versant agreed to advance 75% of the face value to the Company, and to submit a percentage of the remainder to the Company upon collection on the account."

if you were wondering what the "news" was for this 10-Q SEC filing, i guess this is it.  Versant having seen them as crap, they've now turned to this arrangement:  "During the fourth quarter of 2012, the Company ended its Factoring Agreement with Versant and entered into a new Factoring Agreement with LSQ Funding. The Factoring Agreement with LSQ Funding provides for an 85% advance of factored accounts, lower fees, a faster payout of both advances and balances due, and the possibility of over-advances."

there is even a jovial mention of judicious use of the company's NOLs.  an NOL is something from RomneyWorld, but certainly not reflective of any corporate sense of entitlement, oh, no!
'Net Operating Loss - NOL'
A period in which a company's allowable tax deductions are greater than its taxable income, resulting in a negative taxable income. This generally occurs when a company has incurred more expenses than revenues during the period.
The net operating loss for the company can generally be used to recover past tax payments or reduce future tax payments. The reasoning behind this is that because corporations are required to pay taxes when they earn money, they also deserve some form of tax relief when they lose money.
remember that corporations are people, too.  CTTC finds itself, corporately, in something akin to the position of many red, white, and blue-hearted americans:  "At June 30, 2013, the Company's balance sheet showed cash of $24,000."

at the tail end of this sad document, probably submitted on pieced-together panels of toilet tissue to save the big bucks, CTTC pretty much announces that it probably won't make it into 2014 -- unless the miraculous therapy catches hold in some new demographic as yet to be snoockered. 

to those who continue to want giussepe marineo and CALMARE to be a valid technology, let me simply leave you with the final stage directions in this sad Everyman Medieval Play that has been performed in various chiropractors' offices and, for a still unfathomable reason, embraced by obstetricians and gynecologists... for these are the closing words of the SEC filing from tuesday:


In January 2011, the Company entered into a two-year lease effective February 1, 2011 for additional office space for the sales and training staff in Charlotte, NC. Obligations under this lease averaged $27,000 per year for the two-year term. The Company closed that office in July 2012 and closed out the lease, agreeing to forfeit the security deposit and pay the landlord a fee of $15,000 of which $9,000 remains unpaid at June 30, 2013.
please, lord, let this bilking of people in horrid pain finally cease. i picture CTTC now as a host of half-packed cardboard boxes on a utilitarian indoor-outdoor carpet with torn threads and an occasional dividing line of duct tape... in a room with flickering fluorescent lights and a dead cockroach or two in the corners.  the landlord glances in about once a week, sighs, and counts the days until he can file suit.

© 2013 L. Ryan

natural tears

hey all, hello, my beloveds!

please excuse any typos -- and let's pretend than any spelling error i might make is due to a typo and not ignorance! -- as my vision is really, really weird right now.

monday's surgery went much better than i expected.  my go-to-guy doctor paved the way admirably, as i should have known he would.  they told me, "he really cares about you... we don't get that very often from PCPs." brought me to tears.  i care about him, too.

the nurse who was with me pre-op?  her sister has CRPS!  no, i am not rejoicing that her poor sister is suffering, but i was wonderfully relieved at not having to explain what CRPS is, and so on and so forth. and when the anesthesiologist, freaking out at the sight of my legs, began demanding TED hose and such, she politely shut him down while i was still getting a whiny "n-n-n-n-n-oooooo" out of my mouth.

she had the wonderful idea that they wait and do any repositioning or whatever until after i was unconscious.

truly, the traumatized person in the whole affair was the poor anesthesiologist -- i felt for the poor fellow but it took him no time at all to adjust once he had the necessary information and was from then on a prince! a peach!  a pear!

anyway, i can see very well in the distance with my right eye, but everything within 4 feet is a blur.  my left eye remains legally blind, near, far, and in-between.  i have six drops with 16 different delivery times, eye patchs, wrap around sunglasses, and several pairs of old glasses with lenses poked out, and most of the time just want to keep both eyes closed.

my pressures thus far have been acceptable, unexpectedly accepable!  she told me to be ready for emergency surgery should the pressure spike, but thus far this eye has been toeing the line as instructed. i speak to it in a firm voice, and deviations from the plan are not to be tolerated.

the next surgery will be the 26th, followed by pressure checks (and navigating the world's traffic -- all together now: "Poor Fred!"

CRPS has, of course, gone on a rampage.  for some reason, it's decided my left side will be ice cold and my right hot enough to fry the proverbial egg.  spasms galore.  my meds are very messed up, as i am on a jacked up dose of steroids, and a higher dose of fentanyl.  the ankle that felt pretty much "healed" is barking loudly as well as an area high on the right femur.  and, just for giggles, the hardware in my right elbow seems to be slipping.  i know.  it can't really do that, can it?

my hair is going in directions i've never imagined, pulled, pushed, smashed by glasses and elastics and cords and bed-head.  i scared myself when i glanced in the mirror this morning.

in cat news -- buddy thinks all of this eye paraphernalia is meant for him, and he is very close to clawing my operated eye out in an effort to get himself the eye patch.  the elastic is too much for his little entitled soul to withstand.  dobby is frightened by all of it but intrigued by the smell of the drops, the "eye bag" (a lovely bright purple plastic thing, made in china), and my many different ocular incarnations.  i do a passable pirate just for him, full of args and ahoys and mateys.  the headline feline news, though?  ms. marmy fluffy butt decided, i guess, that i needed her!  after about a solid year of being on her shyte list, she comes to me now quite often, for loving and *ack*-*ack* solicitous inquiries.  it has cheered me immensely.  i don't have to explain myself to these three.  they are sort of like... youse guys.  out there.

well, that's not true.  the feline triumvirate DOES demand explanations, prompt ones, too, and delivered in an acceptable patois of cat and the queen's english, with the correct *ack*-*ack* cadence when addressing the queen of queens, the Marmy.  dobby requires several iterations of "good boy" to be worked seamlessly into any conversation, but buddy the incredibly large maine coon "kitten" can get by for hours with a wink and an index finger wisely set aside the nose.  he's strangely subtle, that one. should you fail, though, to uphold your end of the subtle interlocutory exchange?  buddy will punish you by finding a way to sit on your face.

not always the greatest configuration after eye surgeries.

fevers are within normal fever limits, so i've not had to call about that.  but there are now chills, so i am trying to be wise.  sagacious.  smart.  savvy.  don't tell anyone but there is building pressure and pain in the RIGHT shoulder, as well as an increase in pressure (but not pain) in the left.  the left "former" shoulder. (i actually hit 101.8 and stared, giggling, at the instruction sheet carefully setting the limit for a call to the ophthalmologist at 100.  chortle!  as there is no pus streaming from mine blessdèd eyeballs, but there is audible CRUNCHING in each shoulder and an ungodly, unholy amount of pain in my right hip, i'm gonna go rogue and say... it's not the eye!)

that reminds me -- another blessing from monday.  they understood how to treat my left side, as in, not to hyperextend that arm, since it has no "girding." in fact, they braced it brilliantly, and i need to pay attention to how they did it and copy it here at home, as that's one of my worst sins -- extending that arm.

just on the basis of my high steroid dose, traffic duty, little sleep, and his ever ready presence with coffee and pizza (well... he does what he does best, y'know?  he's a blessing, he is):

all together now -- "fred is a saint!"

on the very, very down side, i finally clicked on facebook -- I DESPISE FACEBOOK -- only to find a days old message relating that my mom FELL in the nursing home, breaking her leg in three different spots, requiring surgery and pinning.  she is doubtless frustrated and depressed, frightened and weary. i wish i could be there, with my natural charm and vivacious wit.  i used to be pretty darned good at taking care of people and i would love to take care of her.

instead, i will wash the eyedrops out of my eyes with natural tears.



© 2013 L. Ryan