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Integration of silicon-based neural probes and micro-drive arrays for chronic recording of large populations of neurons in behaving animals

机译:集成硅基神经探针和微驱动器阵列,用于长期记录行为动物中大量神经元

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摘要

Objective. Understanding how neuronal assemblies underlie cognitive function is a fundamental question in system neuroscience. It poses the technical challenge to monitor the activity of populations of neurons, potentially widely separated, in relation to behaviour. In this paper, we present a new system which aims at simultaneously recording from a large population of neurons from multiple separated brain regions in freely behaving animals. Approach. The concept of the new device is to combine the benefits of two existing electrophysiological techniques, i.e. the flexibility and modularity of micro-drive arrays and the high sampling ability of electrode-dense silicon probes. Main results. Newly engineered long bendable silicon probes were integrated into a micro-drive array. The resulting device can carry up to 16 independently movable silicon probes, each carrying 16 recording sites. Populations of neurons were recorded simultaneously in multiple cortical and/or hippocampal sites in two freely behaving implanted rats. Significance. Current approaches to monitor neuronal activity either allow to flexibly record from multiple widely separated brain regions (micro-drive arrays) but with a limited sampling density or to provide denser sampling at the expense of a flexible placement in multiple brain regions (neural probes). By combining these two approaches and their benefits, we present an alternative solution for flexible and simultaneous recordings from widely distributed populations of neurons in freely behaving rats.
机译:目的。理解神经元组装如何构成认知功能是系统神经科学中的一个基本问题。这对于监视与行为有关的潜在地广泛分离的神经元群体的活动提出了技术挑战。在本文中,我们提出了一个新系统,旨在同时记录自由行为动物中多个分离的大脑区域的大量神经元。方法。新设备的概念是结合两种现有电生理技术的优势,即微驱动器阵列的灵活性和模块化以及电极致密硅探针的高采样能力。主要结果。新设计的长形可弯曲硅探针已集成到微驱动器阵列中。最终的设备可以携带多达16个独立移动的硅探针,每个探针都带有16个记录位点。在两只自由行为的大鼠中,同时在多个皮质和/或海马位点记录了神经元的种群。意义。当前监视神经元活动的方法要么允许从多个广泛分离的大脑区域(微驱动器阵列)中灵活记录,但采样密度有限,要么以在多个大脑区域中灵活放置的代价(神经探针)提供更密集的采样。通过结合这两种方法及其好处,我们为自由行为的大鼠中广泛分布的神经元群体提供了灵活而同时的录制的替代解决方案。

著录项

  • 来源
    《Journal of neural engineering》 |2016年第4期|046018.1-046018.11|共11页
  • 作者单位

    Neuro-Electronic Research Flanders (NERF), Leuven, Belgium,Department of Neuroscience, Biomedical Sciences, KULeuven, Belgium;

    ATLAS Neuroengineering, Leuven, Belgium;

    ATLAS Neuroengineering, Leuven, Belgium,Department of Microsystems Engineering (IMTEK), University of Freiburg, Germany;

    Department of Microsystems Engineering (IMTEK), University of Freiburg, Germany;

    Neuro-Electronic Research Flanders (NERF), Leuven, Belgium;

    Department of Neurosciences, Canadian Centre for Behavioral Neuroscience (CCBN), University of Lethbridge, Canada;

    Neuro-Electronic Research Flanders (NERF), Leuven, Belgium,Brain & Cognition Research Unit, KULeuven, Belgium,Imec, Leuven, Belgium;

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

    neural probe; neurophysiology; behaving rodents;

    机译:神经探针神经生理学啮齿动物;

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