Key result
In patients with chronic pain undergoing interdisciplinary multimodal pain therapy, decreases in pain intensity were significantly correlated with increases in global network efficiency at theta frequencies (r = -0.56).
Why the study?
It remained unclear which neuronal measures relate to changes in clinical parameters over time to monitor chronic pain and treatment responses.
Do resting-state electroencephalography measures change and correlate with clinical improvements in patients with chronic pain undergoing interdisciplinary multimodal pain therapy?
Cohort (n=41)
No
Do resting-state electroencephalography measures change and correlate with clinical improvements in patients with chronic pain undergoing interdisciplinary multimodal pain therapy?
Effect estimate: r -0.56
p-value: p=<0.001
Changes in chronic pain following multimodal therapy may be reflected by global brain network changes in the theta band, suggesting a potential biomarker for monitoring treatment response.
May identify biomarkers to monitor chronic pain progression; leaves open which measures best track treatment response.
Chronic pain is a major healthcare issue posing a large burden on individuals and society. Converging lines of evidence indicate that chronic pain is associated with substantial changes of brain structure and function. However, it remains unclear which neuronal measures relate to changes of clinical parameters over time and could thus monitor chronic pain and treatment responses. We therefore performed a longitudinal study in which we assessed clinical characteristics and resting-state electroencephalography data of 41 patients with chronic pain before and 6 months after interdisciplinary multimodal pain therapy. We specifically assessed electroencephalography measures that have previously been shown to differ between patients with chronic pain and healthy people. These included the dominant peak frequency; the amplitudes of neuronal oscillations at theta, alpha, beta, and gamma frequencies; as well as graph theory-based measures of brain network organization. The results show that pain intensity, pain-related disability, and depression were significantly improved after interdisciplinary multimodal pain therapy. Bayesian hypothesis testing indicated that these clinical changes were not related to changes of the dominant peak frequency or amplitudes of oscillations at any frequency band. Clinical changes were, however, associated with an increase in global network efficiency at theta frequencies. Thus, changes in chronic pain might be reflected by global network changes in the theta band. These longitudinal insights further the understanding of the brain mechanisms of chronic pain. Beyond, they might help to identify biomarkers for the monitoring of chronic pain.
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Heitmann et al. (2021) conducted a cohort in Chronic pain (n=41). Interdisciplinary multimodal pain therapy (IMPT) vs. Baseline (pre-IMPT) was evaluated on Correlation between changes in global network efficiency (gEff) in the theta band and changes in average pain intensity (r -0.56, p=<0.001). In patients with chronic pain undergoing interdisciplinary multimodal pain therapy, decreases in pain intensity were significantly correlated with increases in global network efficiency at theta frequencies (r = -0.56).
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