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用于可靠记录自由活动大鼠动作电位的遥测系统。

Telemetry system for reliable recording of action potentials from freely moving rats.

作者信息

Hawley Emerson S, Hargreaves Eric L, Kubie John L, Rivard Bruno, Muller Robert U

机构信息

Department of Physiology, SUNY Health Sciences Center at Brooklyn, New York 11203, USA.

出版信息

Hippocampus. 2002;12(4):505-13. doi: 10.1002/hipo.10040.

Abstract

Recording single cells from alert rats currently requires a cable to connect brain electrodes to the acquisition system. If no cable were necessary, a variety of interesting experiments would become possible, and the design of other experiments would be simplified. To eliminate the need for a cable we have developed a one-channel radiotelemetry system that is easily carried by a rat. This system transmits a signal that is reliable, highly accurate and can be detected over distances of > or = 20 m. The mobile part of the system has three components: (1) a headstage with built-in amplifiers that plugs into the connector for the electrode array on the rat's head; the headstage also incorporates a light-emitting diode (LED) used to track the rat's position; (2) a backpack that contains the transmitter and batteries (2 N cells); the backpack also provides additional amplification of the single cell signals; and (3) a short cable that connects the headstage to the backpack; the cable supplies power to the headstage amplifiers and the LED, and carries the physiological signals from the headstage to the backpack. By using a differential amplifier and recording between two brain microelectrodes the system can transmit action potential activity from two nearly independent sources. In a future improvement, two transmitters with different frequencies would be used telemeter signals from four microelectrodes simultaneously.

摘要

目前,要记录清醒大鼠的单细胞活动,需要用一根电缆将脑电极与采集系统相连。如果无需电缆,就可以开展各种有趣的实验,并且其他实验的设计也会得到简化。为了消除对电缆的需求,我们开发了一种单通道无线电遥测系统,大鼠能够轻松携带该系统。此系统传输的信号可靠、高度精确,且在大于或等于20米的距离内都能被检测到。该系统的可移动部分有三个组件:(1)一个带有内置放大器的前置放大器,它可插入大鼠头部电极阵列的连接器;前置放大器还包含一个用于跟踪大鼠位置的发光二极管(LED);(2)一个背包,里面装有发射器和电池(2节N型电池);背包还能对单细胞信号进行额外放大;(3)一根连接前置放大器和背包的短电缆;该电缆为前置放大器和LED供电,并将生理信号从前置放大器传输到背包。通过使用差分放大器并在两个脑微电极之间进行记录,该系统能够从两个几乎独立的源传输动作电位活动。在未来的改进中,将使用两个不同频率的发射器同时遥测来自四个微电极的信号。

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