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在个体化和非个体化抓握任务期间人类第一背侧骨间肌的皮质地形图。

Cortical topography of human first dorsal interroseus during individuated and nonindividuated grip tasks.

作者信息

Reilly Karen T, Mercier Catherine

机构信息

Centre de Neuroscience Cognitive, CNRS, Bron 69675, France.

出版信息

Hum Brain Mapp. 2008 May;29(5):594-602. doi: 10.1002/hbm.20421.

Abstract

Neural activity in the motor cortex and its descending projections is modulated in a task-related manner. Several TMS studies have shown that when normal human subjects execute different manual tasks requiring similar contraction levels in first dorsal interroseous (FDI) there is a task-related modulation of the amplitude of FDI motor evoked potentials (MEPs). Not all studies of task-related changes show the same pattern of results, however. One reason for this might be methodological. Studies have assessed task-related changes by stimulating a single site, which can provide information about task-related changes in the excitability of the cortex at that site, but which is not sensitive to excitability changes throughout the muscle's cortical representation. We investigated how the execution of an individuated versus a nonindividuated isometric grasping task affected the excitability of FDI's entire cortical representation. We examined FDI MEP amplitudes while subjects grasped an object between their thumb and index finger, or when they grasped the same object between their thumb and all four fingers, keeping the background level of EMG in FDI constant for the two tasks. We found no overall task-related change in the excitability of FDI or its cortical topography, possibly due to behavioral differences of individual subjects. The stability of FDI's cortical representation during two different manual tasks expands the possibilities for studying cortical reorganization in the context of active muscle contraction, which will enable us to better understand whether changes in the motor system observed when muscles are at rest are also present during voluntary muscle recruitment.

摘要

运动皮层及其下行投射中的神经活动以与任务相关的方式受到调节。多项经颅磁刺激(TMS)研究表明,当正常人类受试者执行不同的手动任务时,这些任务在第一背侧骨间肌(FDI)中需要相似的收缩水平,此时FDI运动诱发电位(MEP)的幅度存在与任务相关的调节。然而,并非所有关于任务相关变化的研究都显示出相同的结果模式。造成这种情况的一个原因可能是方法学上的。一些研究通过刺激单个位点来评估任务相关变化,这可以提供关于该位点皮层兴奋性任务相关变化的信息,但对整个肌肉皮层代表区内的兴奋性变化不敏感。我们研究了个体化与非个体化等长抓握任务的执行如何影响FDI整个皮层代表区的兴奋性。我们在受试者用拇指和食指夹取物体时,或者当他们用拇指和所有四根手指夹取同一物体时,检查FDI的MEP幅度,同时使FDI中肌电图(EMG)的背景水平在这两个任务中保持恒定。我们发现FDI的兴奋性或其皮层地形图没有总体的任务相关变化,这可能是由于个体受试者的行为差异。在两种不同的手动任务中FDI皮层代表区的稳定性扩展了在主动肌肉收缩背景下研究皮层重组的可能性,这将使我们能够更好地理解在肌肉休息时观察到的运动系统变化在自愿肌肉募集期间是否也存在。

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