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Design, Fabrication, and Application of Bio-Implantable Acoustic Power Transmission

机译:可植入生物声功率传输的设计,制作与应用

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摘要

Fully packaged acoustic power receivers are introduced. They can provide electronic energy to other implanted devices by receiving an external acoustic wave generated from the skin surface of the subcutaneous tissue. Piezoelectric ceramics make the internal devices of the receivers, and they are directly charged, converting pressure into an extractable electrical energy. Moreover, cohesive gel is used to package the internal devices, and the packages are biocompatible and sufficiently soft to absorb the incident wave that is generated at the skin surface. Additionally, the effects of the shape of the scattering package and ratio of the stiffness of the package to that of the tissue are considered in designing the receivers. The dominant frequencies and the energy efficiency of the receivers are measured in the very streaky pork, which is used to simulate human subcutaneous tissue. The results indicate that the spherical packaging is preferable to the cubic packaging when buried in the muscular layer. The maximum efficiency of the power transmission is found to be $-$ 48.2 dB, using the spherical package in the muscular layer of the streaky pork. $hfill$[2009-0160]
机译:介绍了完全包装的声功率接收器。它们可以通过接收从皮下组织的皮肤表面产生的外部声波,向其他植入设备提供电能。压电陶瓷构成接收器的内部设备,它们直接充电,将压力转换成可提取的电能。而且,粘性凝胶用于包装内部装置,并且包装是生物相容的并且足够柔软以吸收在皮肤表面产生的入射波。另外,在设计接收器时,考虑了散射包装的形状的影响以及包装的刚度与组织的刚度之比。接收器的主频和能量效率是在非常五花肉的猪肉中测量的,该猪肉用于模拟人体皮下组织。结果表明,当包裹在肌肉层中时,球形包装优于立方包装。使用五花肉肌肉层中的球形包装,发现动力传输的最大效率为48.2 dB。 $ hfill $ [2009-0160]

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