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首页> 外文期刊>Psychophysiology >Planning of visually guided reach-to-grasp movements: Inference from reaction time and contingent negative variation (CNV)
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Planning of visually guided reach-to-grasp movements: Inference from reaction time and contingent negative variation (CNV)

机译:视觉引导的伸手可及的动作的规划:从反应时间和或有负变化(CNV)推断

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摘要

We performed electroencephalogram (EEG) recording in a precuing task to investigate the planning processes of reach-to-grasp movements in human. In this reaction time (RT) task, subjects had to reach, grasp, and pull an object as fast as possible after a visual GO signal. We manipulated two parameters: the hand shape for grasping (precision grip or side grip) and the force required to pull the object (high or low). Three seconds before the GO onset, a cue provided advance information about force, grip, both parameters, or no information at all. EEG data show that reach-to-grasp movements generate differences in the topographic distribution of the late Contingent Negative Variation (ICNV) amplitude between the 4 precuing conditions. Along with RT data, it confirms that two distinct functional networks are involved with different time courses in the planning of grip and force. Finally, we outline the composite nature of the lCNV that might reflect both high- and low-level planning processes.
机译:我们在一项艰巨的任务中执行了脑电图(EEG)记录,以调查人类达到抓握运动的计划过程。在此反应时间(RT)任务中,受试者必须在发出可视GO信号后尽快到达,抓住和拉扯物体。我们操纵了两个参数:用于抓握的手的形状(精密抓握或侧面抓握)和拉动物体所需的力(高或低)。 GO开始前三秒钟,一个提示提供了有关力,抓地力,两个参数或根本没有信息的预先信息。脑电图数据显示,在4种处理条件之间,达到握力的运动会在后期的或有负变化(ICNV)幅度的地形分布中产生差异。连同RT数据一起,它证实了两个不同的功能网络在抓地力和力量的规划中涉及了不同的时程。最后,我们概述了lCNV的复合性质,该性质可能反映高级别和低级别的计划过程。

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