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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Galvanically Coupled Intrabody Communications for Medical Implants: A Unified Analytic Model
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Galvanically Coupled Intrabody Communications for Medical Implants: A Unified Analytic Model

机译:电耦合的体内植入物的医用植入体通信:统一的分析模型

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摘要

Health-care monitoring and diagnostics technology continues to be of great interest in research due to an increasing trend in the number of people with chronic diseases. To improve accuracy and timeliness of diagnosis, electronic devices could be implanted inside human body to provide various real-time diagnostic information. However, effective technique for communicating the implant with outside world is still an open problem. Early efforts based on radio wave propagation are standardized as the medical implant communication services (MICSs) for 402–405-MHz frequency range, which was later adopted as medical device radiocommunication services for 401–406-MHz frequency range. Intrabody communication (IBC) is a relatively new technique that uses the human body as a channel with communication frequencies not exceeding several megahertz. In this paper, we propose a new analytical electromagnetic model that uses galvanically coupled IBC as an alternative to radio wave-based implant communication. The model is unified in the sense that it is based on multilayered ellipsoidal geometry that can be applied to any part of the body (i.e., head, torso, limbs, and so on). Our model effectively describes the influences of tissue layer thicknesses and electromagnetic properties, implant size and depth, and geometry of the body part. The model proves the security and low power consumption of IBC. The path loss characterization of IBC implants shows lower values compared with their MICS counterparts.
机译:由于慢性病患者人数的增长趋势,医疗保健监测和诊断技术继续对研究产生巨大兴趣。为了提高诊断的准确性和及时性,可以将电子设备植入人体内部以提供各种实时诊断信息。然而,用于将植入物与外界通信的有效技术仍然是一个悬而未决的问题。基于无线电波传播的早期工作已标准化为402-405-MHz频率范围的医疗植入物通信服务(MICS),后来被用作401-406-MHz频率范围的医疗设备无线电通信服务。体内通信(IBC)是一种相对较新的技术,它使用人体作为通信频率不超过几兆赫兹的信道。在本文中,我们提出了一种新的分析电磁模型,该模型使用电流耦合IBC作为基于无线电波的植入物通信的替代方法。该模型在某种意义上是统一的,因为它基于可应用于身体任何部位(即头部,躯干,四肢等)的多层椭圆形几何体。我们的模型有效地描述了组织层厚度和电磁特性,植入物尺寸和深度以及身体部位几何形状的影响。该模型证明了IBC的安全性和低功耗。与MICS同类产品相比,IBC植入物的路径损耗特性显示出较低的值。

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