Phenotype Progression in Complex Regional Pain Syndrome Identified by Quantitative Sensory Testing
Husk, J. R.; Pang, D.; Hasnie, F.; Goebel, A.; Magerl, W.
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Complex Regional Pain Syndrome (CRPS) exhibits persistent disproportionate limb pain and hyperalgesia associated with neuroinflammatory and autonomic changes, typically after inciting limb injury. However, little is known about the progression of somatosensory changes over time. We reviewed cross-sectional studies employing standardised Quantitative Sensory Testing (QST) in accordance with the DFNS comprehensive somatosensory test protocol, stratified for CRPS duration. This study was registered with PROSPERO ID CRD42020216485. Reporting follows PRISMA guidelines. Databases searched were PubMed, Cochrane Library, Google Scholar, EMBASE, Web of Science and Scopus. Studies of adult patients with CRPS and QST according to the DFNS protocol were included. 1415 articles were screened and 23 studies meeting the inclusion criteria were included in quantitative analysis and narrative synthesis. Analysis was stratified by CRPS duration into an early ([≤] 6 months), intermediate (6-12 months) and late (> 12 months) time window. Across all studies encompassing 2059 CRPS patients all somatosensory parameters deviated significantly from healthy subject profiles (all P < 0.001). All non-nociceptive detection parameters displayed a significant loss of sensitivity, while all nociceptive parameters as well as thermal and mechanical dysesthesias, i.e., paradoxical heat sensation and allodynia displayed a significant gain of sensitivity. Pressure pain threshold (PPT) showed the most drastic sensory gain with a large effect size (> 2 SD; Hedges g = 0.9) equivalent to more than half of CRPS patients exhibiting abnormal pressure hyperalgesia. Moreover, PPT significantly increased progressively with increasing CRPS duration (from 1.7 to 2.2 and 2.8 SD above normal). In late CRPS (> 12 months), additionally contralateral, mirror image test site sensory loss (P < 0.001) and pressure hyperalgesia (P < 0.001) became evident. Stratification for magnitude of pain did only modestly predict relevant differences in somatosensory profiles. Quantitative analysis of 23 cross-sectional QST studies in CRPS demonstrates pressure hyperalgesia as the signature CRPS sensory abnormality, distinguishing CRPS from neuropathic pain conditions. Further, pressure hyperalgesia exhibits a peculiar dramatic step progression between 4-12 months, without equivalent in other parameters. In late CRPS, somatosensory profiles become significantly abnormal at contralateral areas indicating loss of regionality. These findings have important implications for the classification of CRPS as a chronic primary pain condition, for understanding challenges to rehabilitative interventions, and for condition-subtyping.
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