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In vivo demonstration of ultrasound power delivery to charge implanted medical devices via acute and survival porcine studies

机译:通过急性和存活猪研究的体内超声能量传输为植入的医疗设备充电

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摘要

Animal studies are an important step in proving the utility and safety of an ultrasound based implanted battery recharging system. To this end an Ultrasound Electrical Recharging System (USER) was developed and tested. Experiments in vitro demonstrated power deliveries at the battery of up to 600 mW through 10 – 15 mm of tissue, 50 mW of power available at tissue depths of up to 50 mm, and the feasibility of using transducers bonded to titanium as used in medical implants. Acute in vivo studies in a porcine model were used to test reliability of power delivery, temperature excursions, and cooling techniques. The culminating five-week survival study involved repeated battery charging, a total of 10.5 hours of ultrasound exposure of the intervening living tissue, with an average RF input to electrical charging efficiency of 20%. This study was potentially the first long term cumulative living-tissue exposure using transcutaneous ultrasound power transmission to an implanted receiver in situ. Histology of the exposed tissue showed changes attributable primarily due to surgical implantation of the prototype device, and no damage due to the ultrasound exposure. The in vivo results are indicative of the potential safe delivery of ultrasound energy for a defined set of source conditions for charging batteries within implants.
机译:动物研究是证明基于超声波的植入式电池充电系统实用性和安全性的重要一步。为此,开发并测试了超声波充电系统(USER )。体外实验表明,通过10 – 15 mm的组织,电池可提供高达600 mW的功率,在组织深度达50 mm时,可提供50 mW的功率,以及在医疗植入物中使用结合钛的换能器的可行性。在猪模型中进行的急性体内研究用于测试电力输送,温度漂移和冷却技术的可靠性。最终的为期五周的生存研究涉及到反复的电池充电,总共对介入的生物组织进行了10.5个小时的超声波暴露,平均射频输入的充电效率为20%。这项研究可能是首次使用经皮超声功率传输到原位植入接收器的长期累积活体组织暴露。暴露组织的组织学显示变化主要归因于原型设备的外科手术植入,并且没有由于超声暴露引起的损害。体内结果表明,对于用于给植入物内的电池充电的限定的一组源条件,超声能量的潜在安全递送。

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