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左手人群中有害刺激的脊髓和大脑整合。

Spinal and Cerebral Integration of Noxious Inputs in Left-handed Individuals.

机构信息

Department of Anatomy, Université du Québec À Trois-Rivières, 3351 boul. des Forges, C.P. 500, Trois-Rivières, QC, G9A 5H7, Canada.

CogNAC Research Group, Université du Québec À Trois-Rivières, Trois-Rivières, QC, G9A 5H7, Canada.

出版信息

Brain Topogr. 2021 Sep;34(5):568-586. doi: 10.1007/s10548-021-00864-y. Epub 2021 Aug 2.

Abstract

Some pain-related information is processed preferentially in the right cerebral hemisphere. Considering that functional lateralization can be affected by handedness, spinal and cerebral pain-related responses may be different between right- and left-handed individuals. Therefore, this study aimed to investigate the cortical and spinal mechanisms of nociceptive integration when nociceptive stimuli are applied to right -handed vs. left -handed individuals. The NFR, evoked potentials (ERP: P45, N100, P260), and event-related spectral perturbations (ERSP: theta, alpha, beta and gamma band oscillations) were compared between ten right-handed and ten left-handed participants. Pain was induced by transcutaneous electrical stimulation of the lower limbs and left upper limb. Stimulation intensity was adjusted individually in five counterbalanced conditions of 21 stimuli each: three unilateral (right lower limb, left lower limb, and left upper limb stimulation) and two bilateral conditions (right and left lower limbs, and the right lower limb and left upper limb stimulation). The amplitude of the NFR, ERP, ERSP, and pain ratings were compared between groups and conditions using a mixed ANOVA. A significant increase of responses was observed in bilateral compared with unilateral conditions for pain intensity, NFR amplitude, N100, theta oscillations, and gamma oscillations. However, these effects were not significantly different between right- and left-handed individuals. These results suggest that spinal and cerebral integration of bilateral nociceptive inputs is similar between right- and left-handed individuals. They also imply that pain-related responses measured in this study may be examined independently of handedness.

摘要

一些与疼痛相关的信息优先在大脑右半球处理。考虑到手的使用习惯会影响功能偏侧性,因此脊髓和大脑对疼痛相关刺激的反应可能在右利手和左利手个体之间存在差异。因此,本研究旨在探讨当伤害性刺激施加于右利手和左利手个体时,伤害性感受整合的皮质和脊髓机制。在 10 名右利手和 10 名左利手参与者之间比较了非伤害性刺激诱发反应(NFR)、诱发电位(ERP:P45、N100、P260)和事件相关频谱波动(ERSP:θ、α、β和γ波段振荡)。通过对下肢和左上肢的经皮电刺激来产生疼痛。在 5 种相互平衡的条件下,分别调整刺激强度,每种条件下有 21 个刺激:3 种单侧(右下肢、左下肢和左上肢刺激)和 2 种双侧条件(右下肢和左下肢,以及右下肢和左上肢刺激)。使用混合方差分析比较组间和条件间的 NFR 振幅、ERP、ERSP 和疼痛评分。与单侧条件相比,双侧条件下疼痛强度、NFR 振幅、N100、θ 振荡和γ 振荡的反应明显增加。然而,这些效应在右利手和左利手个体之间没有显著差异。这些结果表明,右利手和左利手个体之间双侧伤害性输入的脊髓和大脑整合相似。它们还表明,在本研究中测量的与疼痛相关的反应可能独立于利手性进行检查。

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