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EnerCage:一种用于行为实验的具有可扩展架构的智能实验场所。

EnerCage: a smart experimental arena with scalable architecture for behavioral experiments.

作者信息

McMenamin Peter, Kiani Mehdi, Manns Joseph R, Ghovanloo Maysam

出版信息

IEEE Trans Biomed Eng. 2014 Jan;61(1):139-48. doi: 10.1109/TBME.2013.2278180. Epub 2013 Aug 15.

DOI:10.1109/TBME.2013.2278180
PMID:23955695
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3925464/
Abstract

Wireless power, when coupled with miniaturized implantable electronics, has the potential to provide a solution to several challenges facing neuroscientists during basic and preclinical studies with freely behaving animals. The EnerCage system is one such solution as it allows for uninterrupted electrophysiology experiments over extended periods of time and vast experimental arenas, while eliminating the need for bulky battery payloads or tethering. It has a scalable array of overlapping planar spiral coils (PSCs) and three-axis magnetic sensors for focused wireless power transmission to devices on freely moving subjects. In this paper, we present the first fully functional EnerCage system, in which the number of PSC drivers and magnetic sensors was reduced to one-third of the number used in our previous design via multicoil coupling. The power transfer efficiency (PTE) has been improved to 5.6% at a 120 mm coupling distance and a 48.5 mm lateral misalignment (worst case) between the transmitter (Tx) array and receiver (Rx) coils. The new EnerCage system is equipped with an Ethernet backbone, further supporting its modular/scalable architecture, which, in turn, allows experimental arenas with arbitrary shapes and dimensions. A set of experiments on a freely behaving rat were conducted by continuously delivering 20 mW to the electronics in the animal headstage for more than one hour in a powered 3538 cm(2) experimental area.

摘要

无线供电技术与小型化植入式电子设备相结合,有潜力为神经科学家在对自由活动动物进行基础研究和临床前研究时面临的若干挑战提供解决方案。EnerCage系统就是这样一种解决方案,它能够在较长时间内和广阔的实验区域进行不间断的电生理实验,同时无需笨重的电池负载或系留装置。它拥有一系列可扩展的重叠平面螺旋线圈(PSC)和三轴磁传感器,用于向自由移动的实验对象上的设备进行聚焦无线电力传输。在本文中,我们展示了首个功能完备的EnerCage系统,通过多线圈耦合,PSC驱动器和磁传感器的数量减少至我们先前设计中所使用数量的三分之一。在发射机(Tx)阵列与接收机(Rx)线圈之间120毫米的耦合距离以及48.5毫米的横向错位(最坏情况)下,功率传输效率(PTE)已提高到5.6%。新的EnerCage系统配备了以太网主干网,进一步支持其模块化/可扩展架构,这反过来又允许构建具有任意形状和尺寸的实验区域。在一个3538平方厘米的通电实验区域内,对一只自由活动的大鼠持续一小时以上向其头部固定装置中的电子设备输送20毫瓦功率,进行了一组实验。

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