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Functional connectivity in complex regional pain syndrome: A bicentric study. | LitMetric

Functional connectivity in complex regional pain syndrome: A bicentric study.

Neuroimage

Functional Imaging Unit, Institute of Diagnostic Radiology and Neuroradiology, University Medicine Greifswald, Walther-Rathenau-Str. 46, Greifswald D-17475, Germany. Electronic address:

Published: November 2024

AI Article Synopsis

  • The study examined brain connectivity in 51 CRPS patients compared to 50 control subjects, finding both weak and some specific differences in functional connectivity.
  • It highlighted lower connectivity between the periaqueductal gray matter and the anterior insula, and higher connectivity within the reward system, indicating potential mechanisms in CRPS pain modulation.
  • Importantly, the researchers observed lower data quality in CRPS patients, suggesting that findings on connectivity should be re-evaluated in future studies for better reliability.

Article Abstract

Brain imaging studies in complex regional pain syndrome (CRPS) have found mixed evidence for functional and structural changes in CRPS. In this cross-sectional study, we evaluated two patient cohorts from different centers and examined functional connectivity (rsFC) in 51 CRPS patients and 50 matched controls. rsFC was compared in predefined ROI pairs, but also in non-hypothesis driven analyses. Resting state (rs)fMRI changes in default mode network (DMN) and the degree rank order disruption index (k) were additionally evaluated. Finally, imaging parameters were correlated with clinical severity and somatosensory function. Among predefined pairs, we found only weakly to moderately lower functional connectivity between the right nucleus accumbens and bilateral ventromedial prefrontal cortex in the infra-slow oscillations (ISO) band. The unconstrained ROI-to-ROI analysis revealed lower rsFC between the periaqueductal gray matter (PAG) and left anterior insula, and higher rsFC between the right sensorimotor thalamus and nucleus accumbens. In the correlation analysis, pain was positively associated with insulo-prefrontal rsFC, whereas sensorimotor thalamo-cortical rsFC was positively associated with tactile spatial resolution of the affected side. In contrast to previous reports, we found no group differences for k or rsFC in the DMN, but detected overall lower data quality in patients. In summary, while some of the previous results were not replicated despite the larger sample size, novel findings from two independent cohorts point to potential down-regulated antinociceptive modulation by the PAG and increased connectivity within the reward system as pathophysiological mechanisms in CRPS. However, in light of the detected systematic differences in data quality between patients and healthy subjects, validity of rsFC abnormalities in CRPS should be carefully scrutinized in future replication studies.

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Source
http://dx.doi.org/10.1016/j.neuroimage.2024.120886DOI Listing

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