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Neuropixels Data-Acquisition System: A Scalable Platform for Parallel Recording of 10 000+ Electrophysiological Signals

机译:Neuropixels数据采集系统:一个可扩展平台,用于通过10 000+电生理信号的并联记录

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摘要

Although CMOS fabrication has enabled a quick evolution in the design of high-density neural probes and neural-recording chips, the scaling and miniaturization of the complete data-acquisition systems has happened at a slower pace. This is mainly due to the complexity and the many requirements that change depending on the specific experimental settings. In essence, the fundamental challenge of a neural-recording system is getting the signals describing the largest possible set of neurons out of the brain and down to data storage for analysis. This requires a complete system optimization that considers the physical, electrical, thermal and signal-processing requirements, while accounting for available technology, manufacturing constraints and budget. Here we present a scalable and open-standards-based open-source data-acquisition system capable of recording from over 10,000 channels of raw neural data simultaneously. The components and their interfaces have been optimized to ensure robustness and minimum invasiveness in small-rodent electrophysiology.
机译:尽管CMOS制造在高密度神经探测和神经记录芯片的设计中使得快速进化,但完整数据采集系统的缩放和小型化发生在速度较慢的速度。这主要是由于复杂性和根据具体实验设置改变的许多要求。从本质上讲,神经记录系统的基本挑战是将信号描述为脑中最大可能的神经元组,并降至数据存储以进行分析。这需要完整的系统优化,以进行物理,电气,热和信号处理要求,同时考虑可用技术,制造限制和预算。在这里,我们介绍了一种可扩展和开放标准的开源数据采集系统,其能够同时从超过10,000个原始神经数据通道记录。已经优化了组件及其界面,以确保小啮齿动物电生理学中的鲁棒性和侵入性。

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