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刺激左顶下小叶后,运动图像的转换而非产生受到破坏。

Transformation but not generation of motor images is disrupted following stimulation over the left inferior parietal lobe.

机构信息

Neuroplasticity, Imagery, and Motor Behaviour Laboratory, Department of Psychology, University of British Columbia, Kelowna, BC, Canada.

Neuroplasticity, Imagery, and Motor Behaviour Laboratory, Department of Psychology, University of British Columbia, Kelowna, BC, Canada; Motor Skills Lab, School of Kinesiology, University of British Columbia, Vancouver, BC, Canada.

出版信息

Neuropsychologia. 2024 Nov 5;204:109013. doi: 10.1016/j.neuropsychologia.2024.109013. Epub 2024 Oct 12.

Abstract

Motor imagery (MI) involves the generation, maintenance, and transformation of motor images; yet, the neural underpinnings of each stage are not well understood. Here, we investigated the role of the left inferior parietal lobe (IPL) in the stages of MI. Healthy participants (N = 20) engaged in a MI task (making judgments about hands presented on a screen; hand laterality judgment task) over two days. Past literature demonstrates the mental rotation of hands in this task involves implicit MI (i.e., where MI occurs spontaneously in the absence of explicit instructions). During the task, active (Day A; 120% resting motor threshold) or sham (Day B; placebo) neuronavigated transcranial magnetic stimulation (TMS) was applied to the left IPL (location determined from past neuroimaging work) on 50% of trials at 250, 500, or 750ms post-stimulus onset, corresponding to different stages of MI. A/B days were randomized across participants. Linear mixed effects (LME) modelling conducted on reaction time and accuracy revealed that longer reaction times were observed when TMS was delivered at 750ms after trial onset, and more greatly for active vs. sham stimulation. This effect was exacerbated for palm-vs. back-view stimuli and for left vs. right hands. Accuracy overall was decreased for active vs. sham stimulation, and to a greater extent for palm-vs. back-view stimuli. Findings suggest that the left IPL is involved in image transformation. Overall this work informs on the neural underpinnings of the stages of MI.

摘要

运动想象(MI)涉及运动图像的产生、维持和转换;然而,每个阶段的神经基础还不是很清楚。在这里,我们研究了左顶下小叶(IPL)在 MI 各阶段中的作用。健康参与者(N=20)在两天内进行了一项 MI 任务(对手在屏幕上的呈现做出判断;手偏侧判断任务)。过去的文献表明,在这个任务中手的心理旋转涉及内隐 MI(即,在没有明确指令的情况下自发发生的 MI)。在任务期间,在刺激后 250、500 或 750ms 时,对左 IPL 施加活性(A 天;120%静息运动阈值)或假(B 天;安慰剂)神经导航经颅磁刺激(TMS)(位置由过去的神经影像学工作确定),对应于 MI 的不同阶段。A/B 天在参与者之间随机化。对反应时间和准确性进行的线性混合效应(LME)建模表明,当 TMS 在试验开始后 750ms 时施加时,反应时间更长,并且活性与假刺激相比更长。这种效应在手掌与背面视图刺激之间以及左手与右手之间更加明显。与假刺激相比,活性刺激的准确性总体上降低,而在手掌与背面视图刺激之间则更大。研究结果表明,左 IPL 参与了图像转换。总的来说,这项工作为 MI 各阶段的神经基础提供了信息。

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