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Optogenetic stimulation of the cochlea-A review of mechanisms, measurements, and first models

机译:耳蜗的光遗传刺激-机制,测量和第一个模型的综述

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摘要

This review evaluates the potential of optogenetic methods for the stimulation of the auditory nerve and assesses the feasability of optogenetic cochlear implants (CIs). It provides an overview of all critical steps like opsin targeting strategies, how opsins work, how their function can be modeled and included in neuronal models and the properties of light sources available for optical stimulation. From these foundations, quantitative estimates for the number of independent stimulation channels and the temporal precision of optogenetic stimulation of the auditory nerve are derived and compared with state-of-the-art electrical CIs. We conclude that optogenetic CIs have the potential to increase the number of independent stimulation channels by up to one order of magnitude to about 100, but only if light sources are able to deliver confined illumination patterns independently and paral-lelly. Already now, opsin variants like ChETA and Chronos enable driving of the auditory nerve up to rates of 200 spikes/s, close to the physiological value of their maximum sustained firing rate. Apart from requiring 10 times more energy than electrical stimulation, optical CIs still face major hurdles concerning the safety of gene transfection and optrode array implantation, for example, before becoming an option to replace electrical CIs.
机译:这项审查评估光遗传学方法刺激听觉神经的潜力,并评估光遗传学人工耳蜗(CIs)的可行性。它概述了所有关键步骤,例如视蛋白靶向策略,视蛋白如何工作,如何对它们的功能进行建模并包括在神经元模型中以及可用于光刺激的光源的属性。从这些基础上,得出了对独立刺激通道数量和听神经光遗传刺激的时间精度的定量估计,并将其与最新的电CI进行了比较。我们得出的结论是,光遗传学CI具有将独立刺激通道的数量最多增加一个数量级至大约100的潜力,但前提是光源能够独立且平行地提供受限的照明模式。现在,像ChETA和Chronos这样的视蛋白变体已经能够以200峰值/秒的速度驱动听神经,接近其最大持续放电速度的生理值。光学CI除了需要比电刺激多10倍的能量之外,例如在成为替代电CI之前,仍然面临着有关基因转染和电极阵列植入安全性的主要障碍。

著录项

  • 来源
    《Network》 |2016年第4期|212-236|共25页
  • 作者单位

    Bio-Inspired Information Processing, Faculty of Electrical and Computer Engineering, Technical University of Munich, Garching, Germany,Technical University of Munich, Electrical and Computer Engineering, Bio-Inspired Information Processing, Boltzmannstr. 11, 85748 Garching, Germany;

    Bio-Inspired Information Processing, Faculty of Electrical and Computer Engineering, Technical University of Munich, Garching, Germany;

    Bio-Inspired Information Processing, Faculty of Electrical and Computer Engineering, Technical University of Munich, Garching, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Auditory system; cochlear implants; optogenetics; spiking neurons;

    机译:听觉系统;人工耳蜗光遗传学尖刺神经元;
  • 入库时间 2022-08-18 01:47:11

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