论文标题
反应性近场损失的大约表达式体内植入天线
Approximate Expressions to the Reactive Near-Field Losses of Body-Implanted Antennas
论文作者
论文摘要
可植入的生物电子学通常依靠RF-Wireless链接来进行通信和/或远程电源。通过生物学培养基的传播非常有损,先前的工作表明,这些损失可以分为三个部分:传播场所产生的损失,媒体界面的反射以及反应性近场和有损体的耦合。前两个是不可避免的,但是巧妙的天线设计可以最大程度地减少近场损失。因此,对这种特殊损失现象的良好身体理解是非常可取的。不幸的是,以前的工作没有考虑到植入深度,因此仅适用于深植入物。在这项贡献中,我们提出了考虑封装大小,频率,宿主培养基的特征和植入深度的生物寄主中植入天线的近场损失的近似表达式。它们是使用球形波扩展获得的,对于逼真的植入情景很有用。首先比较使用这些表达式获得的结果与对两个规范幻影的严格计算获得的结果证明了这一点:球形幻像和平面幻影。最后,在胶囊形植入天线的实际实现中说明了获得的表达式的有用性。
Implantable bioelectronics often relies on an RF-wireless link for communication and/or remote powering. Propagation through biological media is very lossy, and previous work has shown that these losses can be separated into three parts: the losses incurred by the propagating fields, the reflections at media interfaces, and the coupling of the reactive near field and the lossy body. The first two are unavoidable, but a clever antenna design can minimize the near-field losses. A good physical understanding of this particular loss phenomenon is thus very desirable. Unfortunately, previous work does not take the implantation depth into account and is thus valid only for deep implants. In this contribution, we propose approximate expressions to the near field losses of antennas implanted in biological hosts considering the encapsulation size, the frequency, the characteristics of the host medium, and the implantation depth. They are obtained using a spherical wave expansion, and are useful for realistic implantation scenarios. This is demonstrated by first comparing the results obtained using these expressions with rigorous computations for two canonical phantoms: a spherical phantom and a planar phantom. Finally, the usefulness of the obtained expressions is illustrated in the practical realization of a capsule-shaped implanted antenna.