Key result
Patients with comorbid chronic low back pain and opioid addiction demonstrated significantly increased functional connectivity between sensory, affective, and cognitive brain regions during pain induction compared to healthy controls.
Why the study?
Chronic pain and opioid dependence both affect brain structure and function, but neurophysiological alterations in patients with comorbid chronic pain and addiction had not yet been evaluated.
Does a pain-induction fMRI task reveal altered brain network connectivity in patients with comorbid chronic pain and opioid addiction compared to healthy controls?
Cross-Sectional (n=36)
No
Does a pain-induction fMRI task reveal altered brain network connectivity in patients with comorbid chronic pain and opioid addiction compared to healthy controls?
Effect estimate: Cohen's q up to 0.59
Patients with comorbid chronic pain and opioid addiction exhibit increased brain network connectivity during pain processing across sensory, affective, and cognitive regions, suggesting a synergistic neurophysiological alteration.
Altered connectivity in comorbid chronic pain and opioid addiction should not change practice; hypothesis-generating and requires prospective validation.
The comorbidity of chronic pain and opioid addiction is a serious problem that has been growing with the practice of prescribing opioids for chronic pain. Neuroimaging research has shown that chronic pain and opioid dependence both affect brain structure and function, but this is the first study to evaluate the neurophysiological alterations in patients with comorbid chronic pain and addiction. Eighteen participants with chronic low back pain and opioid addiction were compared with eighteen age- and sex-matched healthy individuals in a pain-induction fMRI task. Unified structural equation modeling (SEM) with Lagrange multiplier (LM) testing yielded a network model of pain processing for patient and control groups based on 19 a priori defined regions. Tests of differences between groups on specific regression parameters were determined on a path-by-path basis using z-tests corrected for the number of comparisons. Patients with the chronic pain and addiction comorbidity had increased connection strengths; many of these connections were interhemispheric and spanned regions involved in sensory, affective, and cognitive processes. The affected regions included those that are commonly altered in chronic pain or addiction alone, indicating that this comorbidity manifests with neurological symptoms of both disorders. Understanding the neural mechanisms involved in the comorbidity is crucial to finding a comprehensive treatment, rather than treating the symptoms individually.
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Smallwood et al. (2019) conducted a cross-sectional in Comorbid chronic low back pain and opioid addiction (n=36). Comorbid chronic low back pain and opioid addiction vs. Healthy controls was evaluated on Functional connectivity strength differences between brain regions during pain induction (Cohen's q up to 0.59). Patients with comorbid chronic low back pain and opioid addiction demonstrated significantly increased functional connectivity between sensory, affective, and cognitive brain regions during pain induction compared to healthy controls.
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