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植入式神经电极阵列器件与材料的研究进展
作者单位:
基金项目:the Key-Area Research and Development Program of Guangdong Province(2018B030331001);the Key-Area Research and Development Program of Guangdong Province(2018B030338001);the National Key R & D Program of China(2018YFA0701400);the National Key R & D Program of China(2017YFC1310503);the National Nature Science Foundation of China(31700936);the Doctoral Initiation Project of the Guangdong Province(2017A030310496)
摘    要:

关 键 词:脑机接口  生物电子医疗  多电极阵列  在体电生理  纳米材料  
收稿时间:2020-07-01

Progress in Devices and Materials for Implantable Multielectrode Arrays
Zhanhong Du,Yi Lu,Pengfei Wei,Chunshan Deng,Xiaojian Li. Progress in Devices and Materials for Implantable Multielectrode Arrays[J]. Acta Physico-Chimica Sinica, 2020, 36(12): 2007004-0. DOI: 10.3866/PKU.WHXB202007004
Authors:Zhanhong Du  Yi Lu  Pengfei Wei  Chunshan Deng  Xiaojian Li
Affiliation:
Abstract:The human brain comprises over 100 billion neurons that communicate with each other via electrical activities called action potentials. Sensory perception, cognition, and behavior all emerge from these activities. Neuroengineering is a developing interdisciplinary field that employs knowledge from neurobiology, electrical and electronic engineering, materials science and engineering, computer science, and many others. Neuroengineering aims to develop tools for understanding the mechanism of brain function at the circuit level, and to further the development of neuromodulation strategy and neuroprosthetics for motor, sensory, and mental rehabilitation from disabilities and illnesses.
Keywords:Brain-computer interface  Bioelectronic medicine  Multielectrode array  In vivo electrophysiology  Nanomaterial  
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