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Robust and real-time monitoring of nerve regeneration using implantable flexible microelectrode array

机译:使用植入式柔性微电极阵列进行神经再生的鲁棒和实时监控

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摘要

This paper presents a robust and quasi-real-time monitoring method for examining the degree of regeneration of peripheral nerves using a polymer-based implantable microelectrocle array (IMA). The IMA was implanted in the sciatic nerves of rats using two different approaches: (1) direct implantation which was achieved by directly suturing to nerve stumps for short-term regeneration and (2) assembly implantation which was achieved by implanting the IMA assembled with a resorbable conduit that cross a 4-mm nerve defect. The regeneration of the injury was evaluated by measuring the nerve signals following foot pricking and impulse stimulating to the proximal stump. The direct implantation produced a peak voltage of 3.43 mV before amplification and a conduction velocity of 19.8 m/s. The assembly implantation produced a peak voltage of 1.51 mV and a conduction velocity of 18 m/s. The degree of regeneration was also examined using gait and morphological analyses. The sciatic function index was -38.5 +/- 12.5 fordirect implantation and -64.9 +/- 7.5 for assembly implantation. The morphologies of the regenerated nerves were examined using toluidine blue, transmission electron microscopy images, and pilot tests. Te regeneration ratios after the direct and assembly implantation were 45% and 21 %, respectively.
机译:本文提出了一种稳健且准实时的监测方法,用于使用基于聚合物的植入式微电极阵列(IMA)来检查周围神经的再生程度。使用两种不同的方法将IMA植入大鼠的坐骨神经中:(1)直接植入是通过直接缝合到神经残端进行短期再生而实现的;(2)组装植入是通过将IMA组装成的。跨过4毫米神经缺损的可吸收导管。通过测量足刺和刺激近端残端的神经信号来评估损伤的再生。直接注入在放大前产生的峰值电压为3.43 mV,传导速度为19.8 m / s。组件注入产生的峰值电压为1.51 mV,传导速度为18 m / s。还使用步态和形态学分析检查了再生程度。对于直接植入,坐骨神经功能指数是-38.5 +/- 12.5,对于组装植入,坐骨神经功能指数是-64.9 +/- 7.5。使用甲苯胺蓝,透射电子显微镜图像和先导测试检查了再生神经的形态。直接植入和组装植入后的Te再生率分别为45%和21%。

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