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Asymmetry in corticomotor facilitation revealed in right-handers in the context of haptic discrimination

机译:在触觉歧视的背景下,右撇子显示出皮质运动促进的不对称性

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In this study we asked whether asymmetries related to handedness in right-handers (n=10) and left-handers (n=10) could influence hemispheric motor facilitation when the preferred or less-preferred hand is engaged in haptic sensing. Transcranial magnetic stimulation (TMS) was used to assess corticomotor excitability when young participants performed a precision grip under two conditions, i.e., with or without a haptic sensing component. In the grip condition participants were required to grasp a 5-mm thick plate between thumb and index fingers, whereas in the haptic condition they performed the same action but were also required to make judgements about the plate's thickness, i.e., either thin (5 mm) or thick (10 mm). Analysis of task-related variations in motor evoked potentials (MEP) amplitude recorded in hand muscles revealed a significant task×hand/hemisphere interaction only in the group of right-handers when the left hand/right hemisphere was engaged in haptic sensing as opposed to simply gripping. Collectively, these results are congruent with other TMS reports describing a greater degree of hemispheric asymmetry in right-handers, who are typically more strongly lateralised than left-handers. Our results with regard to a rightward hemispheric asymmetry for MEP facilitation with haptic sensing are also congruent with the predominant role ascribed to the right sensorimotor cortex in the processing of proprioceptive information.
机译:在这项研究中,我们询问当惯用或不惯用的手参与触觉时,右手(n = 10)和左手(n = 10)与惯用性相关的不对称性是否会影响半球运动的便利性。当年轻参与者在两种条件下(即有或没有触觉传感组件)进行精确抓握时,使用经颅磁刺激(TMS)评估皮质运动兴奋性。在握持状态下,参与者需要抓住拇指和食指之间的一块5mm厚的板,而在触觉状态下,他们执行相同的动作,但还需要对板的厚度做出判断,即要么薄(5mm )或厚(10毫米)。分析与任务相关的手部肌肉运动诱发电位(MEP)幅度变化,发现只有左手/右半球进行触觉感知时,只有右手组中的任务×手/半球相互作用显着简直令人抓狂。总的来说,这些结果与其他TMS报告一致,这些报告描述了右撇子的半球不对称程度更高,而右撇子通常比左撇子更偏侧。我们关于通过触觉进行MEP促进的右半球不对称性的研究结果也与归因于右感受运动皮层在本体感受信息处理中的主要作用相吻合。

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