光遗传学
神经调节
材料科学
神经科学
信号(编程语言)
神经活动
自愈水凝胶
解码方法
透明度(行为)
光学透明度
纳米技术
电极
生物医学工程
计算机科学
光电子学
医学
化学
生物
中枢神经系统
电信
物理化学
高分子化学
程序设计语言
计算机安全
作者
Quanduo Liang,Zhenzhen Shen,Xiguang Sun,Dehai Yu,Kewei Liu,Samuel M. Mugo,Wei Chen,Dong Wang,Qiang Zhang
标识
DOI:10.1002/adma.202211159
摘要
Recording brain neural signals and optogenetic neuromodulations open frontiers in decoding brain neural information and neurodegenerative disease therapeutics. Conventional implantable probes suffer from modulus mismatch with biological tissues and an irreconcilable tradeoff between transparency and electron conductivity. Herein, a strategy is proposed to address these tradeoffs, which generates conductive and transparent hydrogels with polypyrrole-decorated microgels as cross-linkers. The optical transparency of the electrodes can be attributed to the special structures that allow light waves to bypass the microgel particles and minimize their interaction. Demonstrated by probing the hippocampus of rat brains, the biomimetic electrode shows a prolonged capacity for simultaneous optogenetic neuromodulation and recording of brain neural signals. More importantly, an intriguing brain-machine interaction is realized, which involves signal input to the brain, brain neural signal generation, and controlling limb behaviors. This breakthrough work represents a significant scientific advancement toward decoding brain neural information and developing neurodegenerative disease therapies.
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