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Neural Growth Into A MicroChannel Network: Towards A Regenerative Neural Interface

机译:神经生长到微通道网络:朝向再生神经界面

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We propose and validated a design for a highly selective "endcap" regenerative neural interface towards a neuroprosthesis. In vitro studies using rat cortical neurons determine if a branching microchannel structure can counter fasciculated growth and cause neurites to separate from one another, allowing for greater selective contact Initial studies find that narrower branching microchannels achieve improved neurite separation. Electrical stimulation of neurites within microchannels is possible, as is recording of neurite action potentials with the microchannels acting as electrical signal amplifiers.
机译:我们提出并验证了一种用于高选择性“endcap”再生神经界面的设计,朝神经调节剂进行了再生神经界面。使用大鼠皮质神经元的体外研究确定了分支微通道结构是否可以反击识别的生长并导致神经肌腱彼此分离,允许更大的选择性接触初始研究发现,较窄的分支微通道实现改善的神经态分离。在微通道内的神经胶质中的电刺激是可以用作电信号放大器的微通道的神经突动作电位的记录。

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