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首页> 外文期刊>NeuroImage >A key region in the human parietal cortex for processing proprioceptive hand feedback during reaching movements
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A key region in the human parietal cortex for processing proprioceptive hand feedback during reaching movements

机译:人体顶叶皮层的关键区域,用于在到达动作时处理本体感受手反馈

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摘要

Seemingly effortless, we adjust our movements to continuously changing environments. After initiation of a goal-directed movement, the motor command is under constant control of sensory feedback loops. The main sensory signals contributing to movement control are vision and proprioception. Recent neuroimaging studies have focused mainly on identifying the parts of the posterior parietal cortex (PPC) that contribute to visually guided movements. We used event-related TMS and force perturbations of the reaching hand to test whether the same sub-regions of the left PPC contribute to the processing of proprioceptive-only and of multi-sensory information about hand position when reaching for a visual target. TMS over two distinct stimulation sites elicited differential effects: TMS applied over the posterior part of the medial intraparietal sulcus (mIPS) compromised reaching accuracy when proprioception was the only sensory information available for correcting the reaching error. When visual feedback of the hand was available, TMS over the anterior intraparietal sulcus (aIPS) prolonged reaching time. Our results show for the first time the causal involvement of the posterior mIPS in processing proprioceptive feedback for online reaching control, and demonstrate that distinct cortical areas process proprioceptive-only and multi-sensory information for fast feedback corrections.
机译:似乎毫不费力地,我们将动作调整为不断变化的环境。在启动了针对目标的运动之后,电机命令处于感官反馈回路的恒定控制之下。有助于运动控制的主要感觉信号是视觉和本体感受。最近的神经影像学研究主要集中在确定有助于视觉引导运动的顶叶后皮质(PPC)的部分。我们使用了事件相关的TMS和伸出手的力量扰动来测试左PPC的相同子区域在到达视觉目标时是否有助于仅感觉本体的处理以及有关手位置的多感官信息的处理。在两个不同的刺激部位上进行TMS会产生不同的效果:当本体感受是唯一可用来校正到达误差的感官信息时,在顶顶内侧沟(mIPS)的后部施加TMS会影响到达精度。当可获得手的视觉反馈时,前顶壁内沟(aIPS)上的TMS会延长到达时间。我们的结果首次显示了后mIPS在处理本体感觉反馈以进行在线到达控制中的因果关系,并证明了不同的皮质区域处理仅本体感觉和多感觉信息以进行快速反馈校正。

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