Development of low-power analog/RF mixed-signal circuits with flexible thin film devices for wireless BMI systems

I. Akita
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引用次数: 2

Abstract

To implement a true wirelessly connected brain-machine interface (BMI) system, we have to consider two main aspects: circuit design and device fabrication. The circuit should be designed so as to implement many functionalities including neural recording/stimulation and wireless connection with ultralow-power operation. The fabricated devices are passive elements such as a nano/micro electrode array and RF antenna devices with good biocompatibility. These aspects should be not be considered independently, but be done together from the viewpoint of the device assembly. This paper introduces a method to develop fully implantable devices with high-performance Si CMOS LSIs and many functionalities by employing flexible device technology.
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基于柔性薄膜器件的低功耗模拟/射频混合信号电路的研制
为了实现一个真正的无线连接脑机接口(BMI)系统,我们必须考虑两个主要方面:电路设计和器件制造。该电路应设计为实现许多功能,包括神经记录/刺激和超低功耗操作的无线连接。所制备的器件为无源元件,如纳米/微电极阵列和具有良好生物相容性的射频天线器件。这些方面不应该单独考虑,而应该从设备组装的角度一起考虑。本文介绍了一种利用柔性器件技术开发具有高性能CMOS lsi和多种功能的全植入式器件的方法。
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