IEEE Trans Biomed Circuits Syst. 2018 Feb;12(1):95-105. doi: 10.1109/TBCAS.2017.2759254.
This paper describes the design, fabrication, packaging, and performance characterization of a conformal helix antenna created on the outside of a capsule endoscope designed to operate at a carrier frequency of 433 MHz within human tissue. Wireless data transfer was established between the integrated capsule system and an external receiver. The telemetry system was tested within a tissue phantom and in vivo porcine models. Two different types of transmission modes were tested. The first mode, replicating normal operating conditions, used data packets at a steady power level of 0 dBm, while the capsule was being withdrawn at a steady rate from the small intestine. The second mode, replicating the worst-case clinical scenario of capsule retention within the small bowel, sent data with stepwise increasing power levels of -10, 0, 6, and 10 dBm, with the capsule fixed in position. The temperature of the tissue surrounding the external antenna was monitored at all times using thermistors embedded within the capsule shell to observe potential safety issues. The recorded data showed, for both modes of operation, a low error transmission of 10 packet error rate and 10 bit error rate and no temperature increase of the tissue according to IEEE standards.
本文描述了一种在胶囊内窥镜外部制造的共形螺旋天线的设计、制造、封装和性能表征,该天线旨在在人体组织内 433MHz 的载波频率下工作。在集成的胶囊系统和外部接收器之间建立了无线数据传输。该遥测系统在组织体模和活体猪模型中进行了测试。测试了两种不同类型的传输模式。第一种模式复制了正常工作条件,使用数据包在 0dBm 的稳定功率水平下,而胶囊以稳定的速度从小肠中撤出。第二种模式复制了胶囊在小肠内滞留的最坏临床情况,以逐步增加的功率水平-10、0、6 和 10dBm 发送数据,胶囊固定在位置。使用嵌入在胶囊外壳中的热敏电阻始终监测周围组织的温度,以观察潜在的安全问题。根据 IEEE 标准,记录的数据显示,对于两种操作模式,低错误传输率为 10 分组错误率和 10 位错误率,并且组织温度没有升高。