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Sensory Feedback in Upper Limb Amputees Impacts Cortical Activity as Revealed by Multiscale Connectivity Analysis

机译:多尺度连通性分析显示上肢截肢者的感觉反馈影响皮层活动

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Sensory feedback in upper limb amputees is crucial for improving movement decoding and also to enhance embodiment of the prosthetic limb. Recently, an increasing number of invasive and noninvasive solutions for sensory stimulation have demonstrated the capability of providing a range of sensations to upper limb amputees. However, the cortical impact of restored sensation is not clearly understood. Particularly, understanding the cortical connectivity changes at multiple scales (nodal and modular) in response to sensory stimulation, can reveal crucial information on how amputees brain process the sensory stimuli. Using Electroencephalography (EEG) signals, we compared the cortical connectivity network in response to sensory feedback provided by targeted transcutaneous electrical nerve stimulation (tTENS) in an upper limb amputee during phantom upper limb movements. We focused our cortical connectivity analysis on four functional modules comprising of 20 brain regions that are primarily associated with a visually guided motor task (visual, motor, somatosensory and multisensory integration (MI)) used in this study. At the modular level, we observed that the hubness (a graph theoretic measure quantifying the importance of brain regions in integrating brain function) of the motor module decreases whereas that of the somatosensory module increases in presence of tTENS feedback. At the nodal level, similar observations were made for the visual and MI regions. This is the first work to reveal the impact of sensory feedback at multiple scales in the cortex of amputees in response to sensory stimulation.
机译:上肢截肢者的感觉反馈对于改善运动解码和增强假肢的实施至关重要。近来,越来越多的用于感官刺激的侵入性和非侵入性解决方案已经证明能够为上肢截肢者提供一系列的感觉。但是,恢复感觉的皮层影响尚不清楚。特别是,了解皮质的连接性响应感官刺激而在多个尺度(节点和模块化)上的变化,可以揭示有关截肢者大脑如何处理感官刺激的重要信息。使用脑电图(EEG)信号,我们比较了皮层连接网络,以响应幻影的上肢运动期间上肢截肢者中有针对性的经皮电神经刺激(tTENS)提供的感觉反馈。我们将皮质连通性分析的重点放在包括20个大脑区域的四个功能模块上,这些功能模块主要与本研究中使用的视觉指导的运动任务(视觉,运动,体感和多感觉整合(MI))相关。在模块级别,我们观察到运动模块的中枢性(图形理论量度脑部区域在整合大脑功能中的重要性)降低,而体感模块的中枢性在存在tTENS反馈的情况下增加。在节点级别,对视觉和心梗区域也进行了类似的观察。这是揭示响应于感觉刺激而在截肢者皮层中多个尺度上感觉反馈影响的第一项工作。

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