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PNAS Plus: Four-dimensional maps of the human somatosensory system

机译:PNAS Plus:人体体感系统的四维地图

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摘要

A fine-grained description of the spatiotemporal dynamics of human brain activity is a major goal of neuroscientific research. Limitations in spatial and temporal resolution of available noninvasive recording and imaging techniques have hindered so far the acquisition of precise, comprehensive four-dimensional maps of human neural activity. The present study combines anatomical and functional data from intracerebral recordings of nearly 100 patients, to generate highly resolved four-dimensional maps of human cortical processing of nonpainful somatosensory stimuli. These maps indicate that the human somatosensory system devoted to the hand encompasses a widespread network covering more than 10% of the cortical surface of both hemispheres. This network includes phasic components, centered on primary somatosensory cortex and neighboring motor, premotor, and inferior parietal regions, and tonic components, centered on opercular and insular areas, and involving human parietal rostroventral area and ventral medial-superior-temporal area. The technique described opens new avenues for investigating the neural basis of all levels of cortical processing in humans.
机译:对人脑活动的时空动态进行精细描述是神经科学研究的主要目标。迄今为止,可用的无创记录和成像技术在空间和时间分辨率上的局限性阻碍了人类神经活动的精确,全面的四维图的获取。本研究结合了来自近100名患者的大脑记录的解剖学和功能数据,以生成高度解析的人类皮层处理无痛躯体感觉刺激的三维图。这些图表明,专门用于手部的人体体感系统涵盖了覆盖两个半球皮质表面10%以上的广泛网络。该网络包括以主要体感皮层和邻近的运动,运动前和顶壁下区域为中心的相位成分,以及以腹膜和岛突区域为中心并涉及人顶叶腹膜前腹区域和腹内侧-上-颞区域的强直成分。所描述的技术开辟了新的途径,用于研究人类所有水平的皮质处理的神经基础。

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