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首页> 外文期刊>Journal of Neuroscience Methods >A multi-channel telemetry system for brain microstimulation in freely roaming animals.
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A multi-channel telemetry system for brain microstimulation in freely roaming animals.

机译:多通道遥测系统,用于自由漫游动物的大脑微刺激。

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摘要

A system is described that enables an experimenter to remotely deliver electrical pulse train stimuli to multiple different locations in the brains of freely moving rats. The system consists of two separate components: a transmitter base station that is controlled by a PC operator, and a receiver-microprocessor integrated pack worn on the back of the animals and which connects to suitably implanted brain locations. The backpack is small and light so that small animal subjects can easily carry it. Under remote command from the PC the backpack can be configured to provide biphasic pulse trains of arbitrarily specified parameters. A feature of the system is that it generates precise brain-stimulation behavioral effects using the direct constant-voltage TTL output of the backpack microprocessor. The system performs with high fidelity even in complex environments over a distance of about 300 m. Rat self-stimulation tests showed that this system produced the same behavioral responses as a conventional constant-current stimulator. This system enables a variety of multi-channel brain stimulation experiments in freely moving animals. We have employed it to develop a new animal behavior model ("virtual" conditioning) for the neurophysiological study of spatial learning, in which a rat can be accurately guided to navigate various terrains.
机译:描述了一种系统,该系统使实验人员能够将电脉冲序列刺激远程传递到自由移动大鼠的大脑中的多个不同位置。该系统由两个独立的组件组成:一个由PC操作员控制的发射器基站,以及一个戴在动物背部并与适当植入的大脑位置相连的接收器与微处理器集成的组件。背包小巧轻便,因此小动物可以轻松携带。在来自PC的远程命令下,可以将背包配置为提供任意指定参数的双相脉冲序列。该系统的一个特点是,它使用背包微处理器的直接恒压TTL输出产生精确的大脑刺激行为效果。该系统即使在大约300 m的复杂环境中也能以高保真度运行。大鼠自我刺激测试表明,该系统产生的行为与常规恒流刺激器相同。该系统可以在自由移动的动物中进行多种多通道脑部刺激实验。我们已经使用它开发了一种新的动物行为模型(“虚拟”条件),用于空间学习的神经生理学研究,在该模型中,可以精确地引导大鼠导航各种地形。

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