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Wireless Capsule Endoscopy Using Backscatter Communication

机译:使用反向散射通信的无线胶囊内窥镜检查

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A small and efficient antenna is designed and manufactured for operating inside the human intestine. The antenna is used for radio frequency (RF) backscatter communication in which the antenna radar cross section (RCS) is altered using an active micro-watt switch. The switching mechanism modulates the incident wave transmitted from an external reader system, and the capsule data is transferred to the reader. Thus the active transmitter is removed from the implant and several 10s of mW power is saved. The power saving can realize real-time, and high data rate video streaming for improved visualization of the gastrointestinal tract.The implanted antenna is a conformal meander line with capacitive feed mechanism and provides dual-polar radiation to compensate for the capsule orientations in the gastric tract. The antenna design considers the specific environment of the biological tissues and provides a self-resonant geometry for high reflectivity. Bi-static backscatter method is used for the on-body reader antennas in the UHF band. The backscatter communication feasibility is demonstrated using numerical computations and experimentally validated in a liquid phantom and in-vivo animal experiments.
机译:设计并制造了一种小型高效的天线,用于在人体肠道内部进行操作。该天线用于射频(RF)反向散射通信,其中使用有源微瓦开关更改天线雷达横截面(RCS)。开关机构调制从外部读取器系统发送的入射波,并将胶囊数据传输到读取器。因此,将有源发射器从植入物中移除,并节省了数十秒的mW功率。节能功能可实现实时,高数据率的视频流传输,以改善胃肠道的可视化。植入天线是具有电容性馈电机制的共形曲折线,并提供双极辐射以补偿胃中的胶囊方向道。天线设计考虑了生物组织的特定环境,并提供了自谐振的几何形状以实现高反射率。双静态反向散射方法用于UHF频段的人体读取器天线。使用数值计算证明了反向散射通信的可行性,并在液体体模和体内动物实验中进行了实验验证。

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