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Implantable High-Gain Dental Antennas for Minimally Invasive Biomedical Devices

机译:用于微创生物医学设备的可植入式高增益牙科天线

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摘要

This paper proposes a novel antenna for dental implants. The proposed antenna can be attached to minimally invasive biomedical devices to monitor health conditions. Based on a combination of Archimedean spirals and a Hilbert-based curve, this 3D folded antenna was embedded on a ceramic denture $({rm ZrO}_{2})$, and operates within the medical radio (MedRadio) band. An omnidirectional radiation pattern was obtained from simulations of human models to eliminate specific orientation dependence. A realistic measurement of an oral cavity was also performed under the Institutional Review Board (IRB) protocol to evaluate its practical biomedical effects. A miniature antenna with a total area of less than 245 ${rm mm}^{2}$ was designed and implemented. The measured performance achieved an antenna gain of $-$6.78 dBi, and had an impedance bandwidth of approximately 60 MHz. Therefore, a compact high-gain antenna with a large bandwidth was achieved.
机译:本文提出了一种新型的牙科植入物天线。所建议的天线可以连接到微创生物医学设备上,以监视健康状况。基于阿基米德螺旋线和基于希尔伯特曲线的组合,此3D折叠天线嵌入到陶瓷义齿上 $({rm ZrO} _ {2} )$ ,并在医疗广播(MedRadio)频段内运行。从人体模型的仿真中获得了全向辐射方向图,以消除特定的方向依赖性。还根据机构审查委员会(IRB)协议对口腔进行了实际测量,以评估其实际的生物医学效果。设计并实现了一种总面积小于245的微型天线。 $ {rm mm} ^ {2} $ 。测得的性能实现了6.87 dBi的天线增益,为<=公式,该阻抗带宽约为60 MHz。因此,实现了具有大带宽的紧凑型高增益天线。

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