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用薄膜阵列从猫的骶部背根神经节进行高密度神经记录。

High-density neural recordings from feline sacral dorsal root ganglia with thin-film array.

机构信息

Biomedical Engineering, University of Michigan, Ann Arbor, MI, United States of America.

Biointerfaces Institute, University of Michigan, Ann Arbor, MI, United States of America.

出版信息

J Neural Eng. 2021 Mar 18;18(4). doi: 10.1088/1741-2552/abe398.

Abstract

. Dorsal root ganglia (DRG) are promising sites for recording sensory activity. Current technologies for DRG recording are stiff and typically do not have sufficient site density for high-fidelity neural data techniques.. In acute experiments, we demonstrate single-unit neural recordings in sacral DRG of anesthetized felines using a 4.5m thick, high-density flexible polyimide microelectrode array with 60 sites and 30-40m site spacing. We delivered arrays into DRG with ultrananocrystalline diamond shuttles designed for high stiffness affording a smaller footprint. We recorded neural activity during sensory activation, including cutaneous brushing and bladder filling, as well as during electrical stimulation of the pudendal nerve and anal sphincter. We used specialized neural signal analysis software to sort densely packed neural signals.. We successfully delivered arrays in five of six experiments and recorded single-unit sensory activity in four experiments. The median neural signal amplitude was 55V peak-to-peak and the maximum unique units recorded at one array position was 260, with 157 driven by sensory or electrical stimulation. In one experiment, we used the neural analysis software to track eight sorted single units as the array was retracted ∼500m.. This study is the first demonstration of ultrathin, flexible, high-density electronics delivered into DRG, with capabilities for recording and tracking sensory information that are a significant improvement over conventional DRG interfaces.

摘要

背根神经节(DRG)是记录感觉活动的有前途的部位。目前用于 DRG 记录的技术比较僵硬,通常不具备高密度的记录位点,无法满足高保真神经数据技术的要求。在急性实验中,我们使用 4.5 毫米厚的高密度柔性聚酰亚胺微电极阵列,在 60 个位点和 30-40 微米的位点间隔下,对麻醉猫的骶骨 DRG 进行了单单位神经记录。我们使用专为高刚度设计的超纳米金刚石梭子将阵列递送至 DRG,从而减小了阵列的足迹。我们在感觉激活期间(包括皮肤刷擦和膀胱充盈)以及阴部神经和肛门括约肌的电刺激期间记录神经活动。我们使用专门的神经信号分析软件对密集的神经信号进行分类。我们在六次实验中的五次成功地递送了阵列,并在四次实验中记录了单单位感觉活动。神经信号幅度的中位数为 55V 峰峰值,在一个阵列位置记录到的最大独特单元数为 260 个,其中 157 个由感觉或电刺激驱动。在一项实验中,我们使用神经分析软件在阵列缩回约 500 微米时跟踪八个分类的单单位。本研究首次证明了超薄、灵活、高密度的电子设备可以递送至 DRG,具有记录和跟踪感觉信息的能力,这比传统的 DRG 接口有了显著的改进。

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