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Pulsed Transmission Waveform to Mitigate Tissue Thermal Effects in Transcutaneous Wireless Energy Supply Systems for High-Power Rated Medical Implants

机译:脉冲传输波形,以减轻经皮无线能量供应系统的组织热效应,用于高功率额定医疗植入物

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Therapeutic options in end stage heart failure include cardiac transplantation or mechanical circulatory support: Left Ventricular Assist Device (LVAD) or Total Artificial Heart (TAH). These devices have relatively high power requirements (5-80 W). Existing power supplies to LVAD and TAH are via percutaneous drivelines with a high frequency of complications including infection. We have developed a wireless Transcutaneous Energy Transmission (TET) waveform protocol and system technology which address the major clinical drawbacks of existing systems: skin tissue thermal effect and system durability. Conventional single-channel TET solutions have significant limitations, including inefficient energy transfer characteristics and high energy density levels producing tissue thermal effects. A reduced lifetime of the internal rechargeable battery is an additional drawback. In the proposed novel system, a multi-channel, time-space multiplexed and pulsed RF transmission waveform transcutaneous power delivery approach, is presented for sustained internal energy supply to high-power rated implantable devices. The bench system prototype performance evaluation results, revealed excellent high-energy transfer efficiency and safer management of lower energy density levels. In conclusion, the proposed pulsed transmission waveform protocol and multi-channel concepts can be configured for individual high-power rated LVAD devices to effectively mitigate tissue thermal effects and to prolong backup battery lifetime.
机译:结束阶段心力衰竭的治疗选择包括心脏移植或机械循环支持:左心室辅助装置(LVAD)或全人造心脏(TAH)。这些器件具有相对高的功率要求(5-80 W)。对于LVAD和TAH的现有电源是经皮滴虫,其具有高频率的并发症,包括感染。我们开发了一种无线经皮能量传输(TET)波形协议和系统技术,用于解决现有系统的主要临床缺点:皮肤组织热效应和系统耐用性。传统的单通道TET溶液具有显着的限制,包括能量传递特性和高能量密度水平产生组织热效应的效率。内部可充电电池的寿命减少是额外的缺点。在所提出的新颖系统中,为高功率额定植入装置的持续内部能量供应呈现多通道,时空复用和脉冲RF传输波形经皮输送方法。台式系统原型性能评估结果,揭示了较低的高能量转移效率和更安全的较低能量密度水平的管理。总之,可以为各个高功率额定LVAD设备配置所提出的脉冲传输波形协议和多通道概念,以有效地减轻组织热效应并延长备用电池寿命。

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