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Implications for a Wireless External Device System to Study Electrocorticography

机译:无线外部设备系统研究皮层皮质成像的意义

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摘要

Implantable neuronal interfaces to the brain are an important keystone for future medical applications. However, entering this field of research is difficult since such an implant requires components from many different areas of technology. Since the complete avoidance of wires is important due to the risk of infections and other long-term problems, means for wirelessly transmitting data and energy are a necessity which adds to the requirements. In recent literature, many high-tech components for such implants are presented with remarkable properties. However, these components are typically not freely available for such a system. Every group needs to re-develop their own solution. This raises the question if it is possible to create a reusable design for an implant and its external base-station, such that it allows other groups to use it as a starting point. In this article, we try to answer this question by presenting a design based exclusively on commercial off-the-shelf components and studying the properties of the resulting system. Following this idea, we present a fully wireless neuronal implant for simultaneously measuring electrocorticography signals at 128 locations from the surface of the brain. All design files are available as open source.
机译:植入大脑的神经元接口是未来医学应用的重要基石。但是,进入这种研究领域很困难,因为这种植入物需要来自许多不同技术领域的组件。由于由于感染的风险和其他长期问题,完全避免布线是很重要的,因此无线传输数据和能量的手段是必不可少的,这增加了要求。在最近的文献中,提出了用于此类植入物的许多高科技部件,它们具有非凡的性能。但是,这些组件通常不能免费用于此类系统。每个小组都需要重新开发自己的解决方案。这就提出了一个问题,即是否有可能为植入物及其外部基站创建可重复使用的设计,从而允许其他组织将其用作起点。在本文中,我们试图通过提出一种仅基于商业现货组件的设计并研究所得系统的性能来回答这个问题。遵循这个想法,我们提出了一种完全无线的神经元植入物,用于同时测量大脑表面128个位置的皮质电信号。所有设计文件都可以作为开源文件使用。

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