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将人体建模为通信信道的尝试。

An attempt to model the human body as a communication channel.

作者信息

Wegmueller Marc Simon, Kuhn Andreas, Froehlich Juerg, Oberle Michael, Felber Norbert, Kuster Niels, Fichtner Wolfgang

机构信息

Integrated Systems Laboratory (IIS), (ETH), Hochstrasse 20, Zurich 8092, Switzerland.

出版信息

IEEE Trans Biomed Eng. 2007 Oct;54(10):1851-7. doi: 10.1109/TBME.2007.893498.

Abstract

Using the human body as a transmission medium for electrical signals offers novel data communication in biomedical monitoring systems. In this paper, galvanic coupling is presented as a promising approach for wireless intra-body communication between on-body sensors. The human body is characterized as a transmission medium for electrical current by means of numerical simulations and measurements. Properties of dedicated tissue layers and geometrical body variations are investigated, and different electrodes are compared. The new intra-body communication technology has shown its feasibility in clinical trials. Excellent transmission was achieved between locations on the thorax with a typical signal-to-noise ratio (SNR) of 20 dB while the attenuation increased along the extremities.

摘要

将人体用作电信号的传输介质为生物医学监测系统提供了新型数据通信方式。本文提出,电流耦合是一种很有前景的用于体表传感器之间的无线体内通信的方法。通过数值模拟和测量,将人体表征为电流的传输介质。研究了特定组织层的特性和身体几何形状的变化,并对不同电极进行了比较。这种新型体内通信技术已在临床试验中证明了其可行性。在胸部不同位置之间实现了良好的传输,典型信噪比(SNR)为20 dB,而沿四肢方向衰减增加。

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