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A wireless batteryless deep-seated implantable ultrasonic pulser-receiver powered by magnetic coupling

机译:磁耦合供电的无电池无线深层可植入超声脉冲接收器

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摘要

This study tests a deep-seated implantable ultrasonic pulser-receiver, powered wirelessly by magnetic coupling. A 30-cm energy-transmitting coil was designed to wrap around the body, and was driven by a current of 1.2 A rms at a frequency of 5.7 MHz to generate a magnetic field. A 2-cm receiving coil was positioned at the center of the primary coil for receiving the magnetic energy and powering the implantable device. A capacitor-diode voltage multiplier in the implantable circuit was used to step-up the receiving coil voltage from 12.5 to 50 V to operate an ultrasonic pulser. FEA magnetic field simulations, bench-top, and ex vivo rabbit measurements showed that the magnetic energy absorption in body tissue is negligible and that the magnetic coupling is not sensitive to receiving coil placement. The receiving coil and the power conditioning circuits in the implantable device do not contain ferromagnetic material, so a magnetic-resonance-compatible device can be achieved. A 5-MHz ultrasound transducer was used to test the implantable circuit, operating in pulse-echo mode. The received echo was amplified, envelope-detected, frequency-modulated, and transmitted out of the rabbit body by a radio wave. The modulated echo envelope signal was received by an external receiver located about 10 cm away from the primary coil. The study concludes that operation of a batteryless and wireless deep-seated implantable ultrasonic pulser-receiver powered by coplanar magnetic coupling is feasible.
机译:这项研究测试了一种深层可植入超声脉冲接收器,该接收器通过磁耦合无线供电。设计了一个30厘米的能量传输线圈,可以缠绕在身体周围,并由1.2 A rms的电流以5.7 MHz的频率驱动以产生磁场。 2厘米的接收线圈位于初级线圈的中心,用于接收磁能并为可植入设备供电。植入式电路中的电容器-二极管电压倍增器用于将接收线圈电压从12.5 V升压至50 V,以操作超声脉冲发生器。 FEA磁场模拟,台式和离体兔子的测量表明,人体组织中的磁能吸收可以忽略不计,并且磁耦合对接收线圈的放置不敏感。植入式设备中的接收线圈和功率调节电路不包含铁磁材料,因此可以实现磁共振兼容的设备。使用5 MHz超声换能器测试以脉冲回波模式工作的可植入电路。接收到的回波被放大,被包络检测,被调频,并通过无线电波从兔体内发射出去。调制的回波包络信号由距离初级线圈约10 cm的外部接收器接收。研究得出结论,由共面磁耦合供电的无电池和无线深层可植入超声脉冲接收器的操作是可行的。

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