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Transcutaneous Energy Transfer System Performance Evaluation

机译:经皮能量传输系统性能评估

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Abstract:A transcutaneous energy transfer (TET) system has been developed to power implantable devices such as artificial hearts, defibrillators, and electrical stimulators. Transcutaneous coupling of power to these implanted de‐vices remains a favorable alternative as percutaneous lines are avoided in order to eliminate the potential of infection and allow patient mobility. In vitro, in vivo, ex vivo, and human cadaver studies of the electrohydraulic ventricular assist device TET have demonstrated that power can be transmitted over a range of skin thicknesses of 3–15 mm and can tolerate radial misalignments of up to 20 mm. Sensitivity to coil separation and radial misalignment variations has been addressed by the development of an auto‐tuning TET. The system has only a 10 attenuation in secondary coil voltage when metallic objects are in contact with the primary coil. The system has demonstrated a power transfer efficiency of 60–80 for power demands from 5 to 70 W. The TET secondary coil will provide an output voltage of 10–25 V for current demands from 0.5 to 4.0 A. TET chronic studies in porcine models have demonstrated no adverse effect to the tissue when up to 40 W of power can be delivered to an implanted load without the tissue‐contacting surface of the coil exceeding 42°C. In conclusion, the TET is a feasible alternative for tether‐free powe
机译:摘要:一种经皮能量转移(TET)系统已经开发出来,用于为人工心脏、除颤器和电刺激器等植入式设备提供动力。经皮将动力耦合到这些植入装置仍然是一种有利的选择,因为避免了经皮导管,以消除感染的可能性并允许患者活动。电液心室辅助装置 TET 的体外、体内、离体和人体尸体研究表明,功率可以在 3-15 毫米的皮肤厚度范围内传输,并且可以容忍高达 20 毫米的径向错位。通过开发自动调谐 TET 解决了对线圈分离和径向错位变化的敏感性。当金属物体与初级线圈接触时,该系统的次级线圈电压仅衰减 10%。该系统已证明,对于 5 至 70 W 的功率需求,功率传输效率为 60–80%。TET 次级线圈将提供 10–25 V 的输出电压,以满足 0.5 至 4.0 A 的电流需求。 猪模型中的 TET 慢性研究表明,当高达 40 W 的功率可以输送到植入负载时,线圈的组织接触表面不会超过 42°C。 总之,TET 是无系绳电源的可行替代方案

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