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FMRI study on the neural mechanisms of sensorimotor transformations

机译:FMRI研究感觉运动转换的神经机制

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We used a blocked fMRI design to investigate the neural mechanisms of action planning in internal versus external space. The subject's arm was positioned alongside the body with the forearm semi-pronated. Vertical position of a cursor on the screen was controlled by finger flexion/extension measured with an MRI-compatible data glove. For each trial, subjects moved a cursor within from a centrally-positioned start to an upper or lower target. An MRI-compatible torque motor randomly rotated the forearm into pro/supination. In separate blocks, forearm rotation occurred before or after the target appeared, forcing a motor plan update based on target position or on forearm orientation, respectively. In control blocks, the target and forearm orientation remained consistent, so as not to require trial-to-trial re-planning. Re-planning in internal space was associated with activation in the left ventral premotor cortex and bilateral inferior parietal lobule. Replanning in external space was associated with activation in the superior parietal lobule. These data build on the role of premotor and parietal cortices in sensorimotor transformations.
机译:我们使用了封闭的功能磁共振成像设计来研究内部与外部空间中行动计划的神经机制。受试者的手臂与身体并排放置,前臂为半圆形。屏幕上光标的垂直位置由使用MRI兼容数据手套测量的手指屈伸控制。对于每个试验,受试者都将光标从居中位置的起始位置移动到较高或较低的目标位置。兼容MRI的扭矩马达将前臂随机旋转成前旋/旋后旋。在单独的块中,前臂旋转发生在目标出现之前或之后,从而分别根据目标位置或前臂方向强制更新运动计划。在控制区,目标和前臂的方向保持一致,以免进行试验到试验的重新计划。内部空间的重新规划与左腹前运动皮层和双侧下壁小叶的激活有关。在外部空间的重新规划与上顶小叶的激活有关。这些数据建立在运动前体和顶叶皮层在感觉运动转换中的作用上。

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