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用于非遗传双向神经通信的多功能光纤光声发射器。

Multifunctional fiber-based optoacoustic emitter for non-genetic bidirectional neural communication.

作者信息

Zheng Nan, Jiang Ying, Jiang Shan, Kim Jongwoon, Li Yueming, Cheng Ji-Xin, Jia Xiaoting, Yang Chen

出版信息

ArXiv. 2023 Jan 9:arXiv:2301.03659v1.

Abstract

A bidirectional brain interface with both "write" and "read" functions can be an important tool for fundamental studies and potential clinical treatments for neurological diseases. Here we report a miniaturized multifunctional fiber based optoacoustic emitter (mFOE) that first integrates simultaneous non-genetic optoacoustic stimulation for "write" and electrophysiology recording of neural circuits for "read". The non-genetic feature addresses the challenges of the viral transfection required by optogenetics in primates and human. The orthogonality between optoacoustic waves and electrical field provides a solution to avoid the interference between electrical stimulation and recording. We first validated the non-genetic stimulation function of the mFOE in rat cultured neurons using calcium imaging. In vivo application of mFOE for successful simultaneous optoacoustic stimulation and electrical recording of brain activities was confirmed in mouse hippocampus in both acute and chronical applications up to 1 month. Minimal brain tissue damage has been confirmed after these applications. The capability of non-genetic neural stimulation and recording enabled by mFOE opens up new possibilities for the investigation of neural circuits and brings new insights into the study of ultrasound neurostimulation.

摘要

一种具有“写入”和“读取”功能的双向脑接口,可成为神经疾病基础研究和潜在临床治疗的重要工具。在此,我们报告一种基于光纤的小型化多功能光声发射器(mFOE),它首次集成了用于“写入”的同步非基因光声刺激和用于“读取”的神经回路电生理记录。非基因特性解决了灵长类动物和人类中光遗传学所需的病毒转染难题。光声波与电场之间的正交性为避免电刺激与记录之间的干扰提供了解决方案。我们首先使用钙成像在大鼠培养神经元中验证了mFOE的非基因刺激功能。在小鼠海马体中,通过急性和长达1个月的慢性应用,证实了mFOE在体内成功实现了光声刺激与脑活动电记录的同步。这些应用后已确认脑组织损伤极小。mFOE实现的非基因神经刺激和记录能力为神经回路研究开辟了新的可能性,并为超声神经刺激研究带来了新的见解。

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