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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Differential Recruitment of Anterior Intraparietal Sulcus and Superior Parietal Lobule during Visually Guided Grasping Revealed by Electrical Neuroimaging
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Differential Recruitment of Anterior Intraparietal Sulcus and Superior Parietal Lobule during Visually Guided Grasping Revealed by Electrical Neuroimaging

机译:电神经影像学揭示的视觉引导抓取过程中前鼻窦沟和上顶叶的差异招募。

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摘要

Dorsal parietal cortex is required for visually guided prehension. Transcranial magnetic stimulation to either the anterior intraparietal sulcus (aIPS) or superior parietal lobule (SPL) disrupts on-line adaptive adjustments of grasp when objects are perturbed. We used high-density electroencephalography during grasping to determine the relative timing of these two areas and to test whether the temporal contribution of each site would change when the task goal was perturbed. During object grasping with the right-hand, two distinct evoked responses were present over the 50-100 and 100 -200 ms periods after movement onset. Distributed linear source estimation of these scalp potentials localized left lateralized sources, first in the aIPS and then the SPL. The duration of the response from the aIPS area was longer when there was an object perturbation. Initiation of a corrective movement coincided with activation in SPL. These data support a two-stage process: the integration of target goal and an emerging action plan within aIPS and subsequent on-line adjustments within SPL.
机译:在视觉引导下需要背顶叶皮层。经颅磁刺激对前壁顶沟(aIPS)或顶叶小叶(SPL)的干扰会扰乱物体时的在线适应性调节。我们在抓握过程中使用了高密度脑电图来确定这两个区域的相对时机,并测试了当任务目标受到干扰时每个部位的时间贡献是否会改变。在用右手抓住物体的过程中,运动开始后的50-100和100 -200 ms期间出现了两个明显的诱发反应。这些头皮电位的分布式线性源估计首先在aIPS中,然后在SPL中定位在左侧偏侧源中。当存在物体干扰时,来自aIPS区域的响应持续时间会更长。纠正运动的开始与SPL的激活同时发生。这些数据支持两个阶段的过程:aIPS中目标目标和新出现的行动计划的集成,以及SPL中的后续在线调整。

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