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Radio propagation models for in-body sensors

机译:体内传感器的无线电传播模型

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摘要

Radio technology has the potential to enable real-time collection and monitoring of physiological signals for better healthcare. Implantable biomedical sensors transmitting continuously physiological information to an external unit can facilitate the personalized treatment of chronic diseases. Other in-body medical devices like the wireless capsule endoscope have been proven extremely useful as a diagnostic tool for diseases in the gastrointestinal tract. Nevertheless, the design of efficient wireless communication systems to transmit reliably the information collected inside the body to an external receiver for display and analysis requires accurate radio propagation models. Because of the impossibility to conduct in-body measurements with human subjects, research in this field has made use of measurements in phantoms and intricate computer simulations. This paper surveys the different propagation models for implant communication that have been presented in the literature for narrowband and ultra wideband signals. Research challenges and perspectives for the improvement of the path loss models are discussed too.
机译:无线电技术有可能进行实时收集和监测生理信号,以便更好地保健。可植入的生物医学传感器传输到外部单元的连续生理信息可以促进慢性疾病的个性化治疗。其他身体医疗器械如无线胶囊内窥镜,被证明是胃肠道疾病的诊断工具非常有用。然而,有效的无线通信系统的设计可靠地传输到用于显示和分析的外部接收器内部的主体内部收集的信息需要精确的无线电传播模型。由于对人类受试者进行体内测量的不可能性,在该领域的研究已经利用了幻像中的测量和复杂的计算机模拟。本文调查了在窄带和超宽带信号中呈现的植入通信的不同传播模型。讨论了改善路径损耗模型的研究挑战和观点。

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