Microwave and Antenna Laboratory, School of Electrical and Electronic Engineering, Yonsei University, Seoul, Korea.
IEEE Trans Biomed Eng. 2011 Jun;58(6):1734-41. doi: 10.1109/TBME.2011.2112659. Epub 2011 Feb 10.
This paper presents the design of a wideband spiral antenna for ingestible capsule endoscope systems and a comparison between the experimental results in a human phantom and a pig under general anesthesia. As wireless capsule endoscope systems transmit real-time internal biological image data at a high resolution to external receivers and because they operate in the human body, a small wideband antenna is required. To incorporate these properties, a thick-arm spiral structure is applied to the designed antenna. To make practical and efficient use of antennas inside the human body, which is composed of a high dielectric and lossy material, the resonance characteristics and radiation patterns were evaluated through a measurement setup using a liquid human phantom. The total height of the designed antenna is 5 mm and the diameter is 10 mm. The fractional bandwidth of the fabricated antenna is about 21% with a voltage standing-wave ratio of less than 2, and it has an isotropic radiation pattern. These characteristics are suitable for wideband capsule endoscope systems. Moreover, the received power level was measured using the proposed antenna, a circular polarized receiver antenna, and a pig under general anesthesia. Finally, endoscopic capsule images in the stomach and large intestine were captured using an on-off keying transceiver system.
本文提出了一种用于可摄入胶囊内窥镜系统的宽带螺旋天线的设计,并对在人体模拟和普通麻醉下的猪体内进行的实验结果进行了比较。由于无线胶囊内窥镜系统以高分辨率将实时内部生物图像数据传输到外部接收器,并且由于它们在人体中运行,因此需要小的宽带天线。为了采用这些特性,将厚臂螺旋结构应用于设计的天线。为了在由高介电常数和损耗材料组成的人体内部实际有效地利用天线,通过使用液体人体模拟的测量设置评估了共振特性和辐射模式。设计天线的总高度为 5 毫米,直径为 10 毫米。制造天线的分数带宽约为 21%,电压驻波比小于 2,并且具有各向同性的辐射模式。这些特性适用于宽带胶囊内窥镜系统。此外,使用所提出的天线、圆极化接收天线和普通麻醉下的猪测量了接收功率电平。最后,使用开关键控收发器系统捕获了胃和大肠中的内窥镜胶囊图像。