首页> 外文期刊>Behavioural Brain Research: An International Journal >The functional role of the ventral premotor cortex in a visually paced finger tapping task: a TMS study.
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The functional role of the ventral premotor cortex in a visually paced finger tapping task: a TMS study.

机译:TMS研究:在视觉节奏的手指敲击任务中,腹侧前运动皮质的功能性作用。

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摘要

The accurate control of timed actions is a fundamental aspect of our daily activities. Repetitive movements can be either self-paced or synchronized with an external stimulus. Finger tapping (FT) is a suitable task to study the mechanisms of motor timing in both conditions. The neuronal network supporting motor timing in FT tasks comprises the lateral cerebellum, the lateral and mesial premotor areas as well as parietal sites. It has been suggested that lateral premotor cortices (PMC) are involved in time representation and sensorimotor transformations needed for synchronization. Most studies have focused on the dorsal aspect of PMC (dPMC) whereas the ventral PMC (vPMC) function has been poorly investigated. Here we used an online transcranial magnetic stimulation (TMS) protocol to probe the role of vPMC in an FT task, as compared to a functionally relevant site (dPMC) and an unrelated one. According to the synchronization-continuation paradigm, subjects had to synchronize their tapping to a periodic continuous visual stimulus, and then continue without the external pacer. Two different visual pacers were used: a tapping finger and a hinged tilting bar. We show that TMS reduced the synchronization error when delivered to the vPMC. This effect was larger when the more abstract hinged tilting bar was used as a pacer instead of the finger. No effects were observed in the continuation phase. We hereby offer the first online-TMS evidence of the involvement of vPMC in visually cued FT tasks.
机译:准确控制定时动作是我们日常活动的基本方面。重复运动可以是自定进度的,也可以与外部刺激同步进行。敲击(FT)是研究两种情况下电机正时机制的合适任务。在FT任务中支持运动定时的神经网络包括小脑外侧,运动前外侧和内侧区域以及顶叶部位。已经提出,横向运动前皮质(PMC)参与同步所需的时间表示和感觉运动转换。大多数研究都集中在PMC(dPMC)的背面,而腹侧PMC(vPMC)的功能却研究不足。在这里,我们使用在线经颅磁刺激(TMS)协议来探究vPMC在FT任务中的作用,与功能相关位点(dPMC)和无关位点相比。根据同步-继续范例,受试者必须将其敲击与周期性的连续视觉刺激同步,然后在没有外部起搏器的情况下继续进行。使用了两种不同的视觉起搏器:敲击手指和铰接的倾斜杆。我们展示了TMS在交付给vPMC时减少了同步错误。当更抽象的铰接倾斜杆用作起搏器而不是手指时,此效果会更大。在延续阶段未观察到任何影响。我们特此提供第一个在线TMS证据,证明vPMC参与了视觉提示的FT任务。

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