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Neuromagnetic Response to Body Motion and Brain Connectivity

机译:对身体运动和大脑连通性的神经磁反应

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摘要

Visual detection of body motion is of immense importance for daily-life activities and social nonverbal interaction. Although neurobiological mechanisms underlying visual processing of human locomotion are being explored extensively by brain imaging, the role of structural brain connectivity is not well understood. Here we investigate cortical evoked neuromagnetic response to point-light body motion in healthy adolescents and in patients with early periventricular lesions, periventricular leukomalacia (PVL), that disrupt brain connectivity. In a simultaneous masking paradigm, participants detected the presence of a point-light walker embedded in a few sets of spatially scrambled dots on the joints of a walker. The visual sensitivity to camouflaged human locomotion was lower in PVL patients. In accord with behavioral data, root-mean-square (RMS) ampli-rntude of neuromagnetic trace in response to human locomotion was lower in PVL patients at latencies of 180-244 msec over the right temporal cortex. In this time window, the visual sensitivity to body motion in controls, but not in PVL patients, was inversely linked to the right temporal activation. At later latencies of 276-340 msec, we found reduction in RMS amplitude in PVL patients for body motion stimuli over the right frontal cortex. The findings indicate that disturbances in brain connectivity with the right temporal cortex, a key node of the social brain, and with the right frontal cortex lead to disintegration of the neural network engaged in visual processing of body motion. We suspect that reduced cortical response to body motion over the right temporal and frontal cortices might underlie deficits in visual social coenition.
机译:视觉检测身体运动对于日常生活活动和社交非语言互动至关重要。尽管通过大脑成像已广泛探索了对人类运动进行视觉处理的神经生物学机制,但人们对结构性大脑连通性的作用尚不甚了解。在这里,我们研究了健康青少年以及早期脑室周围病变,脑室周围白细胞减少症(PVL)破坏大脑连接性的皮质诱发的对点光身体运动的神经磁反应。在同时掩蔽范例中,参与者检测到点光助行器的存在,该点光助行器嵌入在助行器的关节上的几组空间扰乱点中。 PVL患者对伪装人体运动的视觉敏感性较低。根据行为数据,PVL患者在右侧颞皮质的潜伏期为180-244毫秒时,神经磁迹对人的运动的响应的均方根(RMS)幅度较低。在此时间窗口中,对照组(而非PVL患者)对身体运动的视觉敏感性与正确的时间激活呈反相关。在后来的276-340毫秒的等待时间中,我们发现PVL患者右额皮质的身体运动刺激的RMS振幅降低。研究结果表明,大脑与右侧颞叶皮层,社交大脑的关键节点以及右侧额叶皮层的大脑连接性紊乱会导致从事视觉运动处理的神经网络解体。我们怀疑皮质对右侧颞叶和额叶皮质运动的反应减少可能是视觉社交意识不足的原因。

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