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Ventral premotor to primary motor cortical interactions during object-driven grasp in humans

机译:物体驱动抓取过程中人的前运动前皮质与初级运动皮质的相互作用

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摘要

Interactions between the ventral premotor (PMv) and the primary motor cortex (M1) are crucial for transforming an object's geometrical properties, such as its size and shape, into a motor command suitable for grasp of the object. Recently, we showed that PMv interacts with M1 in a specific fashion, depending on the hand posture. However, the functional connectivity between PMv and M1 during the preparation of an actual grasp is still unknown.To address this issue, PMv–M1 interactions were tested while subjects were preparing to grasp different visible objects requiring either a precision grip or a whole hand grasp. A conditioning–test transcranial magnetic stimulation (TMS) paradigm was used: a test stimulus was applied over M1 either in isolation or after a conditioning stimulus delivered, at different delays, over the ipsilateral PMv. Motor evoked potentials (MEPs) were recorded in the first dorsal interosseus and abductor digiti minimi muscles, which show highly differentiated activity according to grasp.While subjects prepared to grasp, delivering a conditioning PMv pulse 6 or 8 msec before a test pulse over M1 strikingly facilitated MEPs in the specific muscles that were used in the upcoming grasp. This degree of facilitation correlated with the amount of muscle activity used later in the trial to grasp the objects.The present results demonstrate that, during grasp preparation, the PMv–M1 interactions are muscle-specific. PMv appears to process the object geometrical properties relevant for the upcoming grasp, and transmits this information to M1, which in turn generates a motor command appropriate for the grasp. We also reveal that the grasp-specific facilitation resulting from PMv–M1 interactions is differently related to the upcoming grasp muscle activity than is that from paired-pulse stimulation over M1, suggesting that these two TMS paradigms assess the excitability of cortico-cortical pathways devoted to the control of grasp at two different levels.
机译:腹侧前运动(PMv)和主运动皮质(M1)之间的相互作用对于将对象的几何特性(例如其大小和形状)转换为适合于抓握对象的运动命令至关重要。最近,我们显示了PMv与M1交互的特定方式,具体取决于手势。然而,在准备实际抓握时PMv和M1之间的功能连接性仍然未知。为了解决这个问题,在受试者准备抓握需要精确抓握或整体抓握的不同可见物体时,测试了PMv-M1的相互作用。 。使用了条件测试经颅磁刺激(TMS)范例:在M1上单独或在同侧PMv上以不同的延迟交付了条件刺激后,对M1施加了测试刺激。在第一背背骨和指外展肌中记录了运动诱发电位(MEP),根据抓握表现出高度分化的活动,而受试者准备抓握时,在经过M1的测试脉冲之前,先发出6或8毫秒的条件性PMv脉冲。促进了即将进行的抓握中使用的特定肌肉的MEP。这种促进程度与稍后在试验中用来抓取物体的肌肉活动量相关。本研究结果表明,在抓握准备过程中,PMv–M1相互作用是特定于肌肉的。 PMv似乎在处理与即将到来的抓握有关的对象几何特性,并将此信息传输到M1,M1依次生成适合抓握的电机命令。我们还揭示了与PM1配对脉冲刺激相比,PMv–M1相互作用导致的特定于抓握的促进与即将到来的抓握肌肉活动的相关性不同,这表明这两个TMS范式评估了专用于皮层-皮层通路的兴奋性在两个不同层次上进行控制。

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