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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Video-Capable Ultrasonic Wireless Communications Through Biological Tissues
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Video-Capable Ultrasonic Wireless Communications Through Biological Tissues

机译:通过生物组织的视频功能超声波无线通信

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The use of wireless implanted medical devices (IMDs) is growing because they facilitate monitoring of patients at home and during normal activities, reduce the discomfort of patients, and reduce the likelihood of infection associated with trailing wires. Currently, radio frequency (RF) electromagnetic waves are the most commonly used method for communicating wirelessly with IMDs. However, due to the restrictions on the available bandwidth and the employable power, data rates of RF-based IMDs are limited to 267 kb/s. Considering standard definition video streaming requires data rates of 1.2 Mb/s and high definition requires 3 Mb/s, it is not possible to use the RF electromagnetic communications for high data rate communication applications such as video streaming. In this work, an alternative method that utilizes ultrasonic waves to relay information at high data rates is introduced. An advanced quadrature amplitude modulation (QAM) modem with phase-compensating, sparse decision feedback equalizer (DFE) is tailored to realize the full potential of the ultrasonic channel through biological tissues. The proposed system is tested in a variety of scenarios, including both simulations with finite impulse response (FIR) channel models, and real physical transmission experiments with ex vivo beef liver and pork chop samples as well as in situ rabbit abdomen. Consequently, the simulations demonstrated that video-capable data rates can be achieved with millimeter-sized transducers. Real physical experiments confirmed data rates of 6.7, 4.4, 4, and 3.2 Mb/s through water, ex vivo beef liver, ex vivo pork chop, and in situ rabbit abdomen, respectively.
机译:使用无线植入的医疗器械(IMD)正在增长,因为它们促进了在家中的患者和正常活动期间的监测,减少患者的不适,并降低与尾部有关的感染的可能性。目前,射频(RF)电磁波是用于与IMD无线通信的最常用的方法。但是,由于对可用带宽和可采用电源的限制,基于RF的IMD的数据速率限制为267 kb / s。考虑到标准定义视频流需要1.2 MB / s的数据速率,高清晰度需要3 MB / s,因此不可能使用RF电磁通信进行高数据速率通信应用,例如视频流。在这项工作中,引入了一种替代方法,其利用超声波以高数据速率中继信息的中继信息。具有相位补偿,稀疏判定反馈均衡器(DFE)的高级正交幅度调制(QAM)调制解调器被定制以实现通过生物组织的超声波通道的全部电位。所提出的系统在各种情况下测试,包括具有有限脉冲响应(FIR)频道模型的模拟,以及与前体内牛肉肝脏和猪排样品以及原位兔腹部的真实物理传输实验。因此,模拟表明,可以通过毫米尺寸的换能器实现视频能力的数据速率。实际物理实验证实了通过水,离体牛肉,前体内猪排和原位兔腹部水分,前体内牛肉肝脏的数据速率为6.7,4.4,4和3.2 Mb / s。

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