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Wireless Acoustic Communications and Power Supply for In-vivo Biomedical Devices

机译:体内生物医学设备的无线声通信和电源

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摘要

Pacemakers are common biomedical devices used in the treatment of specific cardiovascular problems. Current research in biomedical engineering is investigating the use of so called brain pacemakers to regulate conditions such as Parkinson\u27s and other neurological conditions. In this paper, we demonstrate the principle of acoustic communications and power harvesting, in vivo. The signals are intended to be used for fixed in vivo biomedical devices, such as pacemakers, were wired and wireless RF communications cannot be used. Results show the performance of the communications channel. The frequency response, transfer function and transient response (at resonance) of the communications channel were measured. Successful communication was achieved through the communications channel using phase shift keying. A data rate of 40kbps could be achieved. Preliminary results harvesting these acoustic signals to recharge the in vivo biomedical devices give a maximum AC power of 1.12mW.
机译:起搏器是用于治疗特定心血管问题的常见生物医学设备。生物医学工程方面的当前研究正在研究使用所谓的大脑起搏器来调节诸如帕金森氏症和其他神经系统疾病的条件。在本文中,我们演示了体内声音通信和功率收集的原理。该信号旨在用于固定的体内生物医学设备,例如起搏器,但不能使用有线和无线RF通信。结果显示了通信渠道的性能。测量了通信信道的频率响应,传递函数和瞬态响应(谐振)。通过使用相移键控的通信通道实现了成功的通信。可以达到40kbps的数据速率。收集这些声音信号以为体内生物医学设备充电的初步结果显示,最大交流功率为1.12mW。

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