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用于同时进行神经刺激和电生理研究的软性整体式红外神经接口

Soft monolithic infrared neural interface for simultaneous neurostimulation and electrophysiology.

作者信息

Meneghetti Marcello, Kaur Jaspreet, Sui Kunyang, Sørensen Jakob F, Berg Rune W, Markos Christos

机构信息

DTU Electro, Department of Electrical and Photonics Engineering, Technical University of Denmark, DK-2800 Kgs, Lyngby, Denmark.

Department of Neuroscience, University of Copenhagen, Blegdamsvej 3B, DK-2200 Kbh N, Copenhagen, Denmark.

出版信息

Light Sci Appl. 2023 May 24;12(1):127. doi: 10.1038/s41377-023-01164-9.

Abstract

Controlling neuronal activity using implantable neural interfaces constitutes an important tool to understand and develop novel strategies against brain diseases. Infrared neurostimulation is a promising alternative to optogenetics for controlling the neuronal circuitry with high spatial resolution. However, bi-directional interfaces capable of simultaneously delivering infrared light and recording electrical signals from the brain with minimal inflammation have not yet been reported. Here, we have developed a soft fibre-based device using high-performance polymers which are >100-fold softer than conventional silica glass used in standard optical fibres. The developed implant is capable of stimulating the brain activity in localized cortical domains by delivering laser pulses in the 2 μm spectral region while recording electrophysiological signals. Action and local field potentials were recorded in vivo from the motor cortex and hippocampus in acute and chronic settings, respectively. Immunohistochemical analysis of the brain tissue indicated insignificant inflammatory response to the infrared pulses while the signal-to-noise ratio of recordings still remained high. Our neural interface constitutes a step forward in expanding infrared neurostimulation as a versatile approach for fundamental research and clinically translatable therapies.

摘要

使用可植入神经接口控制神经元活动是理解和开发对抗脑部疾病新策略的重要工具。红外神经刺激是一种有前景的替代光遗传学的方法,可用于以高空间分辨率控制神经元回路。然而,能够在最小炎症情况下同时传递红外光并记录来自大脑的电信号的双向接口尚未见报道。在此,我们使用了高性能聚合物开发了一种基于软纤维的设备,这种聚合物比标准光纤中使用的传统石英玻璃软100倍以上。所开发的植入物能够通过在2μm光谱区域传递激光脉冲来刺激局部皮质区域的大脑活动,同时记录电生理信号。分别在急性和慢性情况下,从运动皮层和海马体体内记录动作电位和局部场电位。对脑组织的免疫组织化学分析表明,对红外脉冲的炎症反应不明显,而记录的信噪比仍然很高。我们的神经接口在将红外神经刺激扩展为基础研究和临床可转化治疗的通用方法方面向前迈进了一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2869/10209158/673a0368875c/41377_2023_1164_Fig1_HTML.jpg

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