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Wireless Implant Communications for Biomedical Monitoring Sensor Network

机译:用于生物医学监测传感器网络的无线植入通信

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Galvanic coupling provides a novel data transmission between sensor units for low frequency intra-body communication with electrodes attached to the human skin. In this work, that approach has been adapted to implantable miniaturized pills. A communication system for wireless data transmission in muscle tissue is developed capable of transmitting data on four channels concurrently with a throughput of 4.8kbit/s. The main focus is the future implantability of such a miniaturized system for medical long term surveillance of patients. To achieve this goal, circuit size, low power consumption and electrical safety have to be carefully considered. The implemented frequency division multiple access (FDMA) system works in the frequency range between 100 kHz and 250 kHz. Tests have been processed with 4 transmitters units. The system architecture features the possibility of migration into a single system-on-chip.
机译:电流耦合在传感器单元之间提供了一种新颖的数据传输方式,可实现与人体皮肤上附着的电极之间的低频体内通信。在这项工作中,该方法已适用于可植入的微型药丸。开发了用于在肌肉组织中进行无线数据传输的通信系统,该系统能够在四个通道上同时以4.8kbit / s的吞吐量传输数据。主要关注点是这种小型系统的未来可植入性,可用于对患者进行医疗长期监视。为了实现该目标,必须仔细考虑电路尺寸,低功耗和电气安全性。已实施的频分多址(FDMA)系统在100 kHz至250 kHz的频率范围内工作。测试已使用4个发射器单元进行了处理。该系统架构具有迁移到单个片上系统的可能性。

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