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首页> 外文期刊>Proceedings of the IEEE >Remote Powered Medical Implants for Telemonitoring
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Remote Powered Medical Implants for Telemonitoring

机译:远程监控的远程医疗植入物

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摘要

Chronic diseases like diabetes mellitus often require a permanent monitoring of vital signs. Especially the use of telemedicine will increase the quality of life for affected patients. Therefore, novel systems are necessary which are able to permanently detect and provide health status information. But these systems must not control patient's life and should work autonomously. For this purpose, intelligent medical implants are well qualified. This work describes a system for wireless power supply and communication with medical implant applications. Monitoring vital signs will create a big amount of data. Therefore, high data rates are necessary provided by high operating frequencies which in turn lead to electromagnetic far-field conditions. In this case, high attenuation losses due to the permittivity of the human body have to be considered. Hence, high frequencies are not suitable for the transfer of energy into the human body. The presented concept is based on two different frequencies for power supply and data transmission. An independent development of both blocks is thereby possible. The power supply operates at a frequency of 13.56 MHz, using inductive coupling. Consequently, the human body does not affect the energy transfer. In contrast, the data transmission is operated at a frequency of the medical implant communication service (MICS) band. The elaborated system consists of a power supply unit, a data transmission unit, and a control unit. The implementation of the power supply and data transmission as well as associated theoretical basics are presented. Performed measurements demonstrate that the realized system is qualified for the use on human beings.
机译:诸如糖尿病之类的慢性疾病通常需要对生命体征进行永久性监测。尤其是远程医疗的使用将提高受影响患者的生活质量。因此,需要能够永久地检测并提供健康状况信息的新颖系统。但是这些系统不能控制患者的生活,应该自主工作。为此,智能医疗植入物非常合格。这项工作描述了一种用于无线电源和与医疗植入物应用通信的系统。监测生命体征将创建大量数据。因此,高工作频率必须提供高数据速率,这又会导致电磁远场条件。在这种情况下,必须考虑由于人体的介电常数引起的高衰减损耗。因此,高频不适合将能量传递到人体中。提出的概念基于两个不同的频率用于电源和数据传输。由此可以独立开发两个模块。使用感应耦合,电源以13.56 MHz的频率工作。因此,人体不影响能量传递。相反,数据传输以医疗植入物通信服务(MICS)频带的频率进行操作。详细的系统由电源单元,数据传输单元和控制单元组成。介绍了电源和数据传输的实现以及相关的理论基础。进行的测量表明,所实现的系统适合在人类上使用。

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