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在医学植入通信服务频段开发无线可植入人体传感器网络。

Developing a wireless implantable body sensor network in MICS band.

作者信息

Fang Qiang, Lee Shuenn-Yuh, Permana Hans, Ghorbani Kamran, Cosic Irena

机构信息

School of Electrical and Computer Engineering, Royal Melbourne Institute of Technology University, Melbourne, Vic. 3000, Australia.

出版信息

IEEE Trans Inf Technol Biomed. 2011 Jul;15(4):567-76. doi: 10.1109/TITB.2011.2153865. Epub 2011 May 12.

Abstract

Through an integration of wireless communication and sensing technologies, the concept of a body sensor network (BSN) was initially proposed in the early decade with the aim to provide an essential technology for wearable, ambulatory, and pervasive health monitoring for elderly people and chronic patients. It has become a hot research area due to big opportunities as well as great challenges it presents. Though the idea of an implantable BSN was proposed in parallel with the on-body sensor network, the development in this area is relatively slow due to the complexity of human body, safety concerns, and some technological bottlenecks such as the design of ultralow-power implantable RF transceiver. This paper describes a new wireless implantable BSN that operates in medical implant communication service (MICS) frequency band. This system innovatively incorporates both sensing and actuation nodes to form a closed-control loop for physiological monitoring and drug delivery for critically ill patients. The sensing node, which is designed using system-on-chip technologies, takes advantage of the newly available ultralow-power Zarlink MICS transceiver for wireless data transmission. Finally, the specific absorption rate distribution of the proposed system was simulated to determine the in vivo electromagnetic field absorption and the power safety limits.

摘要

通过无线通信与传感技术的整合,人体传感器网络(BSN)的概念最初于本世纪初被提出,旨在为老年人和慢性病患者的可穿戴、移动及普及型健康监测提供一项关键技术。由于其带来的巨大机遇以及所呈现的严峻挑战,它已成为一个热门研究领域。尽管可植入式BSN的概念与体表传感器网络同时被提出,但由于人体的复杂性、安全问题以及一些技术瓶颈,如超低功耗可植入射频收发器的设计等,该领域的发展相对缓慢。本文介绍了一种在医疗植入通信服务(MICS)频段运行的新型无线可植入式BSN。该系统创新性地融合了传感和驱动节点,形成一个用于危重症患者生理监测和药物输送的闭环控制系统。采用片上系统技术设计的传感节点,利用新推出的超低功耗Zarlink MICS收发器进行无线数据传输。最后,对所提出系统的比吸收率分布进行了模拟,以确定体内电磁场吸收情况和功率安全限值。

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