持续注意力中的警觉行为和脑电图活动可能会影响急性疼痛。

J H Chien, A Korzeniewska, A E Hillis, J H Kim, N Emerson, J D Greenspan, C M Campbell, T J Meeker, T M Markman, F A Lenz
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引用次数: 0

摘要

在对多种模式的刺激进行持续注意时,神经活动往往会随着任务时间的推移而减少,同时任务执行中的错误也会增加(警觉性降低)。尽管对疼痛的持续注意具有重要的临床意义,但很少有人对其进行过实验研究。我们采用了一种持续注意实验方案(连续表现任务,CPT),当疼痛激光刺激(目标)随机出现在一列长时间的非疼痛非目标中时,受试者会对其进行计数。我们假设,前顶叶结构上的刺激后振荡功率除以基线功率(事件相关频谱扰动,ERSP - 头皮脑电图)的大小将随着任务时间的推移而在所有频率上降低,而 Beta ERSP(14-30Hz)将与 CPT 表现的错误率相关。在对疼痛目标进行 CPT 期间,根据其频段和刺激后的时间,在四个单独的窗口中发现了 ERSP。发现的 "警觉性下降 "证实了该 CPT 能产生对疼痛的持续注意。此外,错误率与激光能量、疼痛的不愉快程度和显著性评级成反比。错误率还与中央沟头皮脑电图电极上的贝塔ERSP窗口直接相关。随着任务时间的推移,ERSP 的幅度在 Alpha 窗口(8-14Hz)减小,在早期和晚期 Delta/Theta 窗口(0-8Hz)保持不变,而在 Beta 窗口则增大。Beta ERSP 的增加和 Alpha ERSP 的减少在不同受试者顶叶的同一脑电图电极上都有显著程度的表现。总体而言,Beta 活动随着任务时间的延长而增加,并且与其他模态一样,随着错误率的增加而增加。在疼痛的情况下,错误率的增加对应于对疼痛和非疼痛刺激的错误识别,因此会在持续注意力的影响下调节对疼痛的感觉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vigilance behaviors and EEG activity in sustained attention may affect acute pain.

Vigilance behaviors and EEG activity in sustained attention may affect acute pain.

Vigilance behaviors and EEG activity in sustained attention may affect acute pain.

During Sustained Attention to stimuli across many modalities neural activity often decreases over time on task, while Errors in task performance increase (Vigilance Decrement). Sustained Attention to pain has rarely been investigated experimentally despite its clinical significance. We have employed a Sustained Attention protocol (Continuous Performance Task, CPT) in which the subject counts painful laser stimuli (targets) when they occur randomly in a prolonged train of nonpainful nontargets. We hypothesize that the magnitude of the poststimulus oscillatory power divided by baseline power (Event-Related Spectral Perturbation, ERSP - scalp EEG) over Frontoparietal structures will decrease at all frequencies with time on task, while Beta ERSP (14-30Hz) will be correlated with Error Rates in performance of the CPT. During the CPT with a painful target ERSP was found in four separate Windows, as defined by both their frequency band and the time after the stimulus. A Vigilance Decrement was found which confirms that Sustained Attention to pain was produced by this CPT. In addition, Error Rates was correlated inversely with laser energy, and with ratings of pain unpleasantness and salience. Error Rates also were related directly to the Beta ERSP Window at scalp EEG electrodes over the central sulcus. Over time on task, the ERSP magnitude decreased in Alpha (8-14Hz) Window, was unchanged in early and late Delta/Theta Windows (0-8Hz), and increased in the Beta Window. The increase in Beta ERSP and a decrease in the Alpha ERSP occurred at the same EEG electrode over the parietal lobe to a significant degree across subjects. Overall, Beta activity increases with time on task, and with higher Error Rates as in the case of other modalities. In the case of pain increased Errors correspond to misidentification of painful and nonpainful stimuli and so modulate the sensation of pain under the influence of Sustained Attention.

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