Ramezani Zeinab, Seo Kyung Jin, Fang Hui
Department of Electrical and Computer Engineering.
Department of Mechanical and Industrial Engineering.
J Micromech Microeng. 2021 Apr;31(4). doi: 10.1088/1361-6439/abeb30. Epub 2021 Mar 19.
Neural interfaces bridge the nervous system and the outside world by recording and stimulating neurons. Combining electrical and optical modalities in a single, hybrid neural interface system could lead to complementary and powerful new ways to explore the brain. It has gained robust and exciting momentum recently in neuroscience and neural engineering research. Here, we review developments in the past several years aiming to achieve such hybrid electrical and optical microsystem platforms. Specifically, we cover three major categories of technological advances: transparent neuroelectrodes, optical neural fibers with electrodes, and neural probes/grids integrating electrodes and microscale light-emitting diodes. We discuss examples of these probes tailored to combine electrophysiological recording with optical imaging or optical neural stimulation of the brain and possible directions of future innovation.
神经接口通过记录和刺激神经元来连接神经系统和外部世界。在单一的混合神经接口系统中结合电学和光学模式,可能会带来探索大脑的互补且强大的新方法。最近,它在神经科学和神经工程研究中获得了强劲且令人兴奋的发展势头。在此,我们回顾过去几年旨在实现这种混合电学和光学微系统平台的进展。具体而言,我们涵盖了三大类技术进步:透明神经电极、带电极的光学神经纤维以及集成电极和微型发光二极管的神经探针/网格。我们讨论了这些为将电生理记录与大脑的光学成像或光学神经刺激相结合而量身定制的探针示例以及未来创新的可能方向。