...
首页> 外文期刊>Nano letters >Stretchable Transparent Electrode Arrays for Simultaneous Electrical and Optical Interrogation of Neural Circuits in Vivo
【24h】

Stretchable Transparent Electrode Arrays for Simultaneous Electrical and Optical Interrogation of Neural Circuits in Vivo

机译:可伸展的透明电极阵列,用于同时电气和光学询问体内神经电路

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Recent developments of transparent electrode arrays provide a unique capability for simultaneous optical and electrical interrogation of neural circuits in the brain. However, none of these electrode arrays possess the stretchability highly desired for interfacing with mechanically active neural systems, such as the brain under injury, the spinal cord, and the peripheral nervous system (PNS). Here, we report a stretchable transparent electrode array from carbon nanotube (CNT) web-like thin films that retains excellent electrochemical performance and broad-band optical transparency under stretching and is highly durable under cyclic stretching deformation. We show that the CNT electrodes record well-defined neuronal response signals with negligible light-induced artifacts from cortical surfaces under optogenetic stimulation. Simultaneous two-photon calcium imaging through the transparent CNT electrodes from cortical surfaces of GCaMP-expressing mice with epilepsy shows individual activated neurons in brain regions from which the concurrent electrical recording is taken, thus providing complementary cellular information in addition to the high-temporal-resolution electrical recording. Notably, the studies on rats show that the CNT electrodes remain operational during and after brain contusion that involves the rapid deformation of both the electrode array and brain tissue. This enables real-time, continuous electrophysiological monitoring of cortical activity under traumatic brain injury. These results highlight the potential application of the stretchable transparent CNT electrode arrays in combining electrical and optical modalities to study neural circuits, especially under mechanically active conditions, which could potentially provide important new insights into the local circuit dynamics of the spinal cord and PNS as well as the mechanism underlying traumatic injuries of the nervous system.
机译:透明电极阵列的最新进展提供了脑中神经电路的同时光学和电气询问的独特能力。然而,这些电极阵列中的任何一个都具有温度所需的可拉伸性,用于与机械活性神经系统(例如损伤下的脑),脊髓和外周神经系统(PNS)的脑部接壤。这里,我们报告了一种可拉伸的透明电极阵列,来自碳纳米管(CNT)网状薄膜,其在拉伸下保持出优异的电化学性能和宽带光学透明性,并且在循环拉伸变形下高度耐用。我们表明,CNT电极记录了从致敏刺激下从皮质表面的光学诱导的伪影明确定义的神经元响应信号。通过癫痫表达小鼠的皮质表面的透明CNT电极同时同时两光子钙成像,其癫痫显示了脑区中的个体活化神经元,从中拍摄了并发电气记录,从而提供互补的蜂窝信息除了高时 - 分辨率电气记录。值得注意的是,对大鼠的研究表明,CNT电极在脑挫伤期间和之后仍然涉及电极阵列和脑组织的快速变形。这使得创伤性脑损伤下的皮质活动能够实时,连续电生理监测。这些结果突出了可拉伸的透明CNT电极阵列在组合电气和光学模式中的潜在应用,以研究神经电路,尤其是在机械活跃的条件下,这可能会对脊髓和PNS的局部电路动态提供重要的新见解作为神经系统创伤性损伤的机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号