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A User-Configurable Headstage for Multimodality Neuromonitoring in Freely Moving Rats

机译:在自由移动大鼠中用于多模式神经监测的用户可配置前端。

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摘要

Multimodal monitoring of brain activity, physiology, and neurochemistry is an important approach to gain insight into brain function, modulation, and pathology. With recent progress in micro- and nanotechnology, micro-nano-implants have become important catalysts in advancing brain research. However, to date, only a limited number of brain parameters have been measured simultaneously in awake animals in spite of significant recent progress in sensor technology. Here we have provided a cost and time effective approach to designing a headstage to conduct a multimodality brain monitoring in freely moving animals. To demonstrate this method, we have designed a user-configurable headstage for our micromachined multimodal neural probe. The headstage can reliably record direct-current electrocorticography (DC-ECoG), brain oxygen tension (PbrO2), cortical temperature, and regional cerebral blood flow (rCBF) simultaneously without significant signal crosstalk or movement artifacts for 72 h. Even in a noisy environment, it can record low-level neural signals with high quality. Moreover, it can easily interface with signal conditioning circuits that have high power consumption and are difficult to miniaturize. To the best of our knowledge, this is the first time where multiple physiological, biochemical, and electrophysiological cerebral variables have been simultaneously recorded from freely moving rats. We anticipate that the developed system will aid in gaining further insight into not only normal cerebral functioning but also pathophysiology of conditions such as epilepsy, stroke, and traumatic brain injury.
机译:对大脑活动,生理学和神经化学的多模式监测是了解大脑功能,调节和病理的重要方法。随着微技术和纳米技术的最新进展,微纳米植入物已成为推动大脑研究的重要催化剂。然而,迄今为止,尽管传感器技术最近有了重大进展,但在清醒动物中仅同时测量了有限数量的大脑参数。在这里,我们提供了一种节省成本和时间的有效方法,可以设计一个可以在自由移动的动物中进行多模式大脑监控的前端平台。为了演示该方法,我们为微加工多峰神经探针设计了一个用户可配置的探头。探头可以可靠地同时记录直流电皮层成像(DC-ECoG),脑氧张力(PbrO2),皮质温度和局部脑血流量(rCBF),并且在72小时内不会出现明显的信号串扰或运动伪影。即使在嘈杂的环境中,它也可以记录高质量的低级神经信号。而且,它可以容易地与具有高功耗并且难以小型化的信号调节电路接口。据我们所知,这是首次从自由移动的大鼠中同时记录了多个生理,生化和电生理脑变量。我们预计,开发的系统将不仅对正常的脑功能,而且对诸如癫痫,中风和脑外伤等病症的病理生理学有进一步的了解。

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