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首页> 外文期刊>Cortex: A Journal Devoted to the Study of the Nervous System and Behavior >The temporal involvement of the left supramarginal gyrus in planning functional grasps: A neuronavigated TMS study
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The temporal involvement of the left supramarginal gyrus in planning functional grasps: A neuronavigated TMS study

机译:左髁上的颞敷质在规划功能麦克血管中的时间参与:神经和神经动脉的TMS研究

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The left supramarginal gyrus (SMG) is a critical structure in tool use actions, including such simple acts as selection of appropriate grasps and, if necessary, their on-line corrections. Yet, its temporal contribution to initial planning of functional grasps of tools is largely unknown. We used MRI-guided, event-related transcranial magnetic stimulation (TMS) to determine the time point when SMG involvement in processing of tools for functional grasp decision was affected most. In Exp. 1, with 15 participants, triple-pulse (10 Hz) TMS was applied to either the left anterior-to-mid SMG (amSMG; subdivisions PFt/PF) or vertex at three different time points: starting from 17 ms (i.e., delivered at 17/117/217 ms), 117 ms (117/217/317 ms) or 217 ms (217/317/417 ms) after stimulus onset. In Exp. 2, with 12 participants, we applied single-pulse TMS to either left amSMG or the left rostral middle frontal gurus (rMFG; area 46) at these same time points relative to stimulus onset. Subject- and item-based analyses of response times (RTs) were performed. Whereas the amSMG and vertex stimulation with triple pulse has revealed differential effects on RTs in general, as well as on tool orientation processing, it gave only vague pointers as to their temporal contributions to the task. Yet, amSMG and rMFG stimulation with single pulse demonstrated that, while the processing in both of these areas can be enhanced at 17 ms and no doubt at 117 ms (as compared to 217 ms), the earliest stimulation facilitated amSMG (vs. rMFG) contribution, and the latest stimulation had the opposite effect, facilitating rMFG (vs. amSMG) contribution to planning functional grasps. These outcomes demonstrate that the critical role of SMG in tool-related actions can be invoked substantially earlier than previously thought. (C) 2018 Elsevier Ltd. All rights reserved.
机译:左施施加器(SMG)是工具使用动作的关键结构,包括如适当掌握的选择,如必要,在线校正,包括这种简单的作用。然而,它对初始规划功能掌握工具的时间贡献在很大程度上是未知数。我们使用MRI引导的事件相关的经颅磁刺激(TMS)来确定SMG参与处理功能掌握决策的工具时的时间点受到影响最大。在exp。 1,具有15名参与者,将三脉冲(10Hz)TMS应用于左前进的SMG(AMSMG;细分PFT / PF)或顶点在三个不同的时间点:从17毫秒开始(即,交付在刺激发作后,在17/117/217 MS,117毫秒(117/217/317 ms)或217毫秒(217/317/417 ms)。在exp。 2,具有12名参与者,我们将单脉冲TM施加到左amsmg或左侧升管中间大师(RMFG;区域46)相对于刺激发作。执行响应时间(RTS)的基于主题和基于项目的分析。虽然Amsmg和三重脉冲的顶点刺激一般地对RTS揭示了差分效果,以及刀具方向处理,它只给出了对任务的时间贡献的模糊指针。然而,使用单脉冲的Amsmg和RMFG刺激表明,在17 ms中可以增强两个这些区域的加工,并且在117毫秒(与217毫秒相比)毫无疑问,最早的刺激促进的AMMG(与RMFG)相比贡献,最新的刺激具有相反的效果,促进RMFG(与AMSMG)对规划功能掌握的贡献。这些结果表明,SMG在工具相关行动中的关键作用可以显着早于先前思考来调用。 (c)2018年elestvier有限公司保留所有权利。

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