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Using the body to self-cool a 10 W transcutaneous energy transfer system

机译:利用身体自我冷却10 W透皮能量传输系统

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Transcutaneous energy transfer (TET) using inductive power transfer is a promising technology for powering implantable medical devices without the need for percutaneous power cables, removing a long-term infection risk. Compared to a driveline, a TET system will produce more heat. The dominant contribution to body heating is ohmic losses in skin contacting and implanted components. This paper reports on using the body’s thermoregulation mechanisms to dissipate the heat of a TET system. The ohmic losses in the primary coil of a TET system were replicated with a DC source. The coil was fixed to human participants and the temperature at the skin was measured with the coil exposed to air, and when insulation covered the coil. The highest temperature recorded was 39 °C, 2 °C lower than the regulatory limit of 41 °C. These results are supportive of using the body to dissipate heat from a TET system.
机译:使用感应式功率传输的经皮能量传输(TET)是一种有前途的技术,可为可植入医疗设备供电,而无需使用经皮电源线,从而消除了长期感染的风险。与传动系统相比,TET系统将产生更多的热量。人体加热的主要贡献是皮肤接触和植入组件中的欧姆损耗。本文报道了利用人体的温度调节机制来消散TET系统的热量。用直流电源复制TET系统初级线圈中的欧姆损耗。将线圈固定在人体上,并在线圈暴露于空气中以及绝缘层覆盖线圈的情况下测量皮肤的温度。记录的最高温度为39°C,比41°C的调节极限低2°C。这些结果支持使用人体消散TET系统的热量。

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