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Sensory Stimulation Enhances Functional Connectivity towards the Somatosensory Cortex in Upper Limb Amputation

机译:感觉刺激在上肢截肢中朝向躯体感应皮层增强功能性连通性

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Sensory stimulation elicits sensations in the phantom hand of individuals with upper limb amputation. The reinstated sensory information is important to improve phantom limb perception and motor performance. In this work, we aimed to characterize the cortical impact of sensory stimulation on sensorimotor integration in upper limb amputees. To this goal, we investigated dynamic functional connectivity computed from electroencephalogram (EEG) recorded while amputees executed phantom hand movements with and without sensory stimulation. We focused on the dynamic functional connections to the somatosensory system and discovered that non-invasive sensory stimulation induced increased speed of information transfer, shown by decreased temporal distance, and increased number of connections from the motor, somatosensory, and multisensory processing systems. We show that the cortical impact of sensory stimulation is manifested not only through functional activities related to the primary somatosensory system, but also those involving the secondary somatosensory system.
机译:感官刺激引发了具有上肢截肢的个人幻象手中的感觉。恢复的感官信息对于提高幻影肢体感知和电机性能非常重要。在这项工作中,我们旨在表征感官刺激对上肢肿块中感觉刺激的皮质冲击。为此目的,我们调查了从脑电图(EEG)计算的动态功能连接,而随意进行刺激手动运动和没有感觉刺激。我们专注于对躯体感应系统的动态功能连接,并发现非侵入性感觉刺激引起的信息传递速度提高,所示的时间距离下降,以及来自电动机,躯体感觉和多思索处理系统的连接数量增加。我们表明,感觉刺激的皮质冲击不仅通过与原发性躯体传感系统有关的功能性活动,而且表现出涉及次要躯体感觉系统的功能。

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