开源硅微探针,用于高通量神经记录。

Open source silicon microprobes for high throughput neural recording.

机构信息

Equal contribution.

出版信息

J Neural Eng. 2020 Jan 24;17(1):016036. doi: 10.1088/1741-2552/ab581a.

Abstract

OBJECTIVE

Microfabricated multielectrode arrays are widely used for high throughput recording of extracellular neural activity, which is transforming our understanding of brain function in health and disease. Currently there is a plethora of electrode-based tools being developed at higher education and research institutions. However, taking such tools from the initial research and development phase to widespread adoption by the neuroscience community is often hindered by several obstacles. The objective of this work is to describe the development, application, and open dissemination of silicon microprobes for recording neural activity in vivo.

APPROACH

We propose an open source dissemination platform as an alternative to commercialization. This framework promotes recording tools that are openly and inexpensively available to the community. The silicon microprobes are designed in house, but the fabrication and assembly processes are carried out by third party companies. This enables mass production, a key requirement for large-scale dissemination.

MAIN RESULTS

We demonstrate the operation of silicon microprobes containing up to 256 electrodes in conjunction with optical fibers for optogenetic manipulations or fiber photometry. These data provide new insights about the relationship between calcium activity and neural spiking activity. We also describe the current state of dissemination of these tools. A file repository of resources related to designing, using, and sharing these tools is maintained online.

SIGNIFICANCE

This paper is likely to be a valuable resource for both current and prospective users, as well as developers of silicon microprobes. Based on their extensive usage by a number of labs including ours, these tools present a promising alternative to other types of electrode-based technologies aimed at high throughput recording in head-fixed animals. This work also demonstrates the importance of validating fiber photometry measurements with simultaneous electrophysiological recordings.

摘要

目的

微制造多电极阵列广泛用于高通量记录细胞外神经活动,这正在改变我们对健康和疾病状态下大脑功能的理解。目前,许多基于电极的工具正在高等教育和研究机构中得到开发。然而,将这些工具从初始研究和开发阶段推向神经科学界的广泛采用,通常会受到几个障碍的阻碍。本工作的目的是描述用于记录体内神经活动的硅微探针的开发、应用和开放传播。

方法

我们提出了一个开源传播平台作为商业化的替代方案。该框架促进了向社区公开和经济实惠地提供记录工具。硅微探针是内部设计的,但制造和组装过程是由第三方公司进行的。这使得大规模生产成为可能,这是大规模传播的关键要求。

主要结果

我们展示了含有多达 256 个电极的硅微探针与光纤结合使用的操作,用于光遗传学操作或光纤光度法。这些数据提供了关于钙活性与神经尖峰活动之间关系的新见解。我们还描述了这些工具目前的传播状态。一个与设计、使用和共享这些工具相关的资源文件库在线维护。

意义

本文对于当前和潜在的使用者以及硅微探针的开发者来说可能是一个有价值的资源。基于包括我们实验室在内的许多实验室的广泛使用,这些工具为基于其他类型电极的技术提供了一种有前途的替代方案,这些技术旨在对头固定动物进行高通量记录。这项工作还证明了用同时的电生理记录验证光纤光度测量的重要性。

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