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A Wireless Optical Power System For Medical Implants Using Low Power Near-IR Laser

机译:一种用于使用低功率接近IR激光的医疗植入物的无线光学电力系统

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An alternative method of transcutaneous wireless optical energy supply to an artificial cardiac pacemaker has been conceived, thereby negating the possibility of electromagnetic interference. In this research, a comparative analysis is made between two distinct arrays of photovoltaic cells, consisting of two different geometries. Being powered by a 5 mW 750 nm laser, that has a different spot size for each topology; both models are tested by their ability to charge a 150 mAh rechargeable LiPo battery, while being embedded underneath a layer of skin tissue. This system in turn, regulates the power supplied to a low power medical implant (< 10 mW), in the place of conventional batteries. For a charging period of 60 minutes, results indicate that a pacemaker utilizing this system can sustain operation for nearly 85 hours, without any noticeable side-effects or changes in temperature.
机译:已经构思了对人造心脏起搏器的经皮无线光能供应的替代方法,从而否定了电磁干扰的可能性。在该研究中,在两个不同的几何形状组成的两个不同的光伏电池阵列之间进行比较分析。由5 MW 750 NM激光器供电,对每个拓扑具有不同的光斑尺寸;两种型号通过它们充电的能力来测试150 mAh可充电的Lipo电池,同时嵌入在一层皮肤组织下方。该系统又调节到低功耗医疗植入物(<10 mW)的电源,代替传统电池。对于60分钟的充电期,结果表明利用该系统的起搏器可以在没有任何明显的副作用或温度变化的情况下维持近85小时的运行。

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