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Neural Mechanisms of Attentional Switching Between Pain and a Visual Illusion Task: A Laser Evoked Potential Study

机译:疼痛和视觉错觉任务之间注意转换的神经机制:激光诱发电位研究

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摘要

Previous studies demonstrated that pain induced by a noxious stimulus during a distraction task is affected by both stimulus-driven and goal-directed processes which interact and change over time. The purpose of this exploratory study was to analyse associations of aspects of subjective pain experience and engagement with the distracting task with attention-sensitive components of noxious laser-evoked potentials (LEPs) on a single-trial basis. A laser heat stimulus was applied to the dorsum of the left hand while subjects either viewed the Rubin vase-face illusion (RVI), or focused on their pain and associated somatosensory sensations occurring on their stimulated hand. Pain-related sensations occurring with every laser stimulus were evaluated using a set of visual analogue scales. Factor analysis was used to identify the principal dimensions of pain experience. LEPs were correlated with subjective aspects of pain experience on a single-trial basis using a multiple linear regression model. A positive LEP component at the vertex electrodes in the interval 294–351 ms (P2) was smaller during focusing on RVI than during focusing on the stimulated hand. Single-trial amplitude variations of the P2 component correlated with changes in Factor 1, representing essential aspects of pain, and inversely with both Factor 2, accounting for anticipated pain, and the number of RVI figure reversals. A source dipole located in the posterior region of the cingulate cortex was the strongest contributor to the attention-related single-trial variations of the P2 component. Instantaneous amplitude variations of the P2 LEP component during switching attention towards pain in the presence of a distracting task are related to the strength of pain experience, engagement with the task, and the level of anticipated pain. Results provide neurophysiological underpinning for the use of distraction analgesia acute pain relief.
机译:先前的研究表明,在分散注意力的过程中,有害刺激引起的疼痛会受到刺激驱动和目标导向过程的影响,这些过程会随着时间的流逝而相互作用和变化。这项探索性研究的目的是在单次试验中分析有害激光诱发电位(LEPs)的注意力敏感成分与主观疼痛经历和干扰任务的关系。激光加热刺激施加到左手的背部,而受试者要么观看鲁宾花瓶表面错觉(RVI),要么专注于他们的疼痛以及受刺激的手出现的相关体感感觉。使用一组视觉模拟量表评估每次激光刺激产生的疼痛相关感觉。使用因素分析来确定疼痛经历的主要方面。使用多元线性回归模型,将LEP与疼痛经历的主观方面进行单次试验相关联。在294-351毫秒(P2)的时间间隔内,在顶点电极处的正LEP分量要比在受刺激的手上聚焦时小。 P2分量的单次振幅变化与因子1的变化相关,代表疼痛的基本方面,而与因子2则相反,这说明了预期的疼痛和RVI图形反转的次数。位于扣带回皮质后部的源偶极子是引起注意力相关的P2成分单次试验变异的最强因素。在存在分散注意力的任务的情况下,将注意力转移到疼痛时,P2 LEP分量的瞬时幅度变化与疼痛体验的强度,与任务的参与以及预期的疼痛程度有关。结果为使用分心镇痛技术减轻急性疼痛提供了神经生理学基础。

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