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RF communication with implantable wireless device: effects of beating heart on performance of miniature antenna

机译:与植入式无线设备的RF通信:心脏跳动对微型天线性能的影响

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The frequency response of an implantable antenna is key to the performance of a wireless implantable sensor. If the antenna detunes significantly, there are substantial power losses resulting in loss of accuracy. One reason for detuning is because of a change in the surrounding environment of an antenna. The pulsating anatomy of the human heart constitutes such a changing environment, so detuning is expected but this has not been quantified dynamically before. Four miniature implantable antennas are presented (two different geometries) along with which are placed within the heart of living swine the dynamic reflection coefficients. These antennas are designed to operate in the short range devices frequency band (863–870 MHz) and are compatible with a deeply implanted cardiovascular pressure sensor. The measurements recorded over 27 seconds capture the effects of the beating heart on the frequency tuning of the implantable antennas. When looked at in the time domain, these effects are clearly physiological and a combination of numerical study and posthumous autopsy proves this to be the case, while retrospective simulation confirms this hypothesis. The impact of pulsating anatomy on antenna design and the need for wideband implantable antennas is highlighted.
机译:植入式天线的频率响应是无线植入式传感器性能的关键。如果天线严重失谐,则将导致大量功率损耗,从而导致精度损失。失谐的原因之一是由于天线周围环境的变化。人的心脏的搏动解剖结构构成了这样一个不断变化的环境,因此预计会出现失谐,但之前尚未对其进行动态量化。提出了四个微型植入式天线(两个不同的几何形状),并将它们放置在活猪的心脏内,并具有动态反射系数。这些天线设计用于在短距离设备频带(863–870 MHz)中工作,并且与深度植入的心血管压力传感器兼容。在27秒内记录的测量结果记录了跳动的心脏对可植入天线的频率调谐的影响。当在时域上观察时,这些影响显然是生理上的,并且数值研究和死后尸检的结合证明了这种情况,而回顾性模拟证实了这一假设。强调了脉动解剖结构对天线设计的影响以及对宽带植入式天线的需求。

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