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植入小动物体内的射频无线设备的辐射方向图:由于身体共振导致的意外变形。

Radiation Patterns of RF Wireless Devices Implanted in Small Animals: Unexpected Deformations Due to Body Resonance.

作者信息

Gao Mingxiang, Rosenthal James D, Wu Kangling, Ramirez German A, Sipus Zvonimir, Lacour Stephanie P, Skrivervik Anja K

出版信息

IEEE Trans Biomed Circuits Syst. 2024 Feb;18(1):27-38. doi: 10.1109/TBCAS.2023.3300649. Epub 2024 Jan 26.

Abstract

One challenge in designing RF wireless bioelectronic devices is the impact of the interaction between electromagnetic waves and host body tissues on far-field wireless performance. In this article, we investigate a peculiar phenomenon of implantable RF wireless devices within a small-scale host body related to the deformation of the directivity pattern. Radiation measurements of subcutaneously implanted antennas within rodent cadavers show that the direction of maximum radiation is not always identical with the direction to the closest body-air interface, as one would expect in larger-scale host bodies. For an implanted antenna in the back of a mouse, we observed the maximum directivity in the ventral direction with 4.6 dB greater gain compared to the nearest body-air interface direction. Analytic analysis within small-scale spherical body phantoms identifies two main factors for these results: the limited absorption losses due to the small body size relative to the operating wavelength and the high permittivity of the biological tissues of the host body. Due to these effects, the entire body acts as a dielectric resonator antenna, leading to deformations of the directivity pattern. These results are confirmed with the practical example of a wirelessly powered 2.4-GHz optogenetic implant, demonstrating the significance of the judicious placement of external antennas to take advantage of the deformation of the implanted antenna pattern. These findings emphasize the importance of carefully designing implantable RF wireless devices based on their placements and relative electrical dimensions in small-scale animal models.

摘要

设计射频无线生物电子设备面临的一个挑战是电磁波与宿主身体组织之间的相互作用对远场无线性能的影响。在本文中,我们研究了小型宿主体内可植入射频无线设备的一种特殊现象,该现象与方向图的变形有关。对啮齿动物尸体皮下植入天线的辐射测量表明,最大辐射方向并不总是与最接近身体 - 空气界面的方向一致,而在较大规模的宿主体内人们可能会有这样的预期。对于植入小鼠背部的天线,我们观察到在腹侧方向具有最大方向性,与最接近身体 - 空气界面方向相比增益高4.6 dB。在小型球体模型内的分析表明,这些结果有两个主要因素:相对于工作波长而言较小的身体尺寸导致的有限吸收损耗以及宿主体内生物组织的高介电常数。由于这些效应,整个身体充当一个介质谐振天线,导致方向图变形。通过无线供电的2.4 GHz光遗传学植入物的实际例子证实了这些结果,这表明明智地放置外部天线以利用植入天线方向图变形的重要性。这些发现强调了根据小型动物模型中可植入射频无线设备的放置位置和相对电气尺寸进行精心设计的重要性。

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