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Interhemispheric Dorsolateral Prefrontal Cortex Connectivity is Associated with Individual Differences in Pain Sensitivity in Healthy Controls

机译:半球间外侧前额叶皮层连通性与健康控件中疼痛敏感性的个体差异相关。

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摘要

The dorsolateral prefrontal cortex (DLPFC) is implicated in pain modulation through multiple psychological processes. Recent noninvasive brain stimulation studies suggest that interhemispheric DLPFC connectivity influences pain tolerance and discomfort by altering interhemispheric inhibition. The structure and role of interhemispheric DLPFC connectivity in pain processing have not been investigated. The present study used dynamic causal modeling (DCM) for fMRI to investigate transcallosal DLPFC connectivity during painful stimulation in healthy volunteers. DCM parameters were used to predict individual differences in sensitivity to noxious heat stimuli. Bayesian model selection results indicated that influences among the right DLPFC (rDLPFC) and left DLPFC (lDLPFC) are modulated during painful stimuli. Regression analyses revealed that greater rDLPFC→lDLPFC couplings were associated with higher suprathreshold pain temperatures. These results highlight the role of interhemispheric connectivity in pain modulation and support the preferential role of the right hemisphere in pain processing. Knowledge of these mechanisms may improve understanding of abnormal pain modulation in chronic pain populations.
机译:背外侧前额叶皮层(DLPFC)通过多种心理过程参与疼痛调节。最近的非侵入性脑刺激研究表明,半球间DLPFC连接性通过改变半球间抑制作用影响疼痛耐受性和不适感。尚未研究半球间DLPFC连接的结构和在疼痛处理中的作用。本研究使用动态因果模型(DCM)进行功能磁共振成像,以研究健康志愿者在疼痛刺激过程中经call DLPFC的连通性。 DCM参数用于预测对有害热刺激敏感性的个体差异。贝叶斯模型选择结果表明,在疼痛刺激期间,右DLPFC(rDLPFC)和左DLPFC(lDLPFC)之间的影响得到了调节。回归分析表明,更大的rDLPFC→lDLPFC偶联与更高的阈上疼痛温度有关。这些结果突出了半球间连接在疼痛调节中的作用,并支持右半球在疼痛处理中的优先作用。这些机制的知识可以增进对慢性疼痛人群中异常疼痛调节的了解。

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