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Inhibition of the anterior intraparietal area and the dorsal premotor cortex interfere with arbitrary visuo-motor mapping.

机译:顶壁前区和前运动背皮质的抑制干扰任意视觉运动标测。

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OBJECTIVE: The contribution of the human anterior intraparietal area and the dorsal premotor cortex to arbitrary visuo-motor mapping during grasping were tested. METHODS: Trained right-handed subjects reached for and pincer-grasped a cube with the right hand in the absence of visual feedback after the cube location had been displayed for 200ms. During the reaching movements, the colour of the cube changed and visual feedback about the change of colour was provided for 100ms at 500ms after movement onset (at the time of peak grasp aperture). Depending on colour, subjects were instructed to either pincer-grasp the cube in a horizontal or vertical grasp position with the latter necessitating wrist rotation (experiment 1) or to pincer-grasp and transport the cube to either a left or right target position (experiment 2). Within two consecutive 200ms time windows (TMS 1 and 2) starting 500ms and 700ms after movement onset, respectively, double pulses of supra-threshold transcranial magnetic stimulation (inter-stimulus interval: 100ms) were delivered over (i) the left primary motor cortex (90 degrees vertically angulated coil position, control stimulation), (ii) the left dorsal premotor cortex or (ii) the left anterior intraparietal area. RESULTS: Compared to control stimulation, stimulation of the anterior intraparietal area, but not of the dorsal premotor cortex, at TMS 1 delayed the times to wrist rotation (experiment 1) and hand transport (experiment 2). Compared to control stimulation, stimulation of the dorsal premotor cortex, but not of the anterior intraparietal area, at TMS 2 delayed both wrist rotation (experiment 1) and hand transport (experiment 2). CONCLUSIONS: We contend that the anterior intraparietal area and the dorsal premotor cortex are both involved albeit at different phases during the mapping of arbitrary visual cues with goal directed grasp and transport movements. SIGNIFICANCE: These data add to the current understanding of how human cortical areas work in concert during manual activities.
机译:目的:检测人的前壁顶区和背运动前皮层在抓握过程中对任意视运动的作图。方法:经过训练的惯用右手受试者在显示立方体位置200毫秒后,在没有视觉反馈的情况下,用右手伸手抓住了立方体。在到达运动期间,立方体的颜色发生了变化,并且在运动开始后500ms(在峰值抓取孔径时)提供了100ms的关于颜色变化的视觉反馈。根据颜色的不同,受试者被要求在水平或垂直抓握位置上将立方体钳住并握紧立方体(需要进行手腕旋转)(实验1),或者将立方体钳住并将其运送到左侧或右侧目标位置(实验) 2)。在分别从运动开始后500ms和700ms开始的两个连续的200ms时间窗口(TMS 1和2)内,超阈值经颅磁刺激的两次脉冲(刺激间隔:100ms)通过(i)左主运动皮层传递(90度垂直成角度的线圈位置,控制刺激),(ii)左前运动前皮层或(ii)左前顶壁内区域。结果:与对照刺激相比,在TMS 1刺激前顶壁内区而不刺激背运动前皮层可延迟腕部旋转(实验1)和手部运输(实验2)的时间。与对照刺激相比,在TMS 2刺激背前运动皮层,但不刺激前顶内区,可以同时延迟腕部旋转(实验1)和手部运输(实验2)。结论:我们认为,在以目标为导向的抓握和运输运动进行任意视觉提示的映射过程中,尽管前壁顶区和背运动前皮层都涉及不同阶段。意义:这些数据增加了对人类皮层区域在手动活动过程中如何协同工作的最新了解。

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