Department of Electronics and Communication Engineering, Karunya Institute of Technology and Sciences , Coimbatore, India.
Department of Computer Science and Engineering, Karunya Institute of Technology and Sciences , Coimbatore, India.
Electromagn Biol Med. 2020 Oct 1;39(4):387-402. doi: 10.1080/15368378.2020.1821707. Epub 2020 Sep 29.
Research interest in ingestible Wireless Capsule Endoscopy (WCE) studies in humans showed better results than conventional invasive probe endoscopy methods. Because of the structure and the position of the small intestine, proper scanning cannot be done in the area using traditional endoscopic methods. For patient comfort, continuous developments have been suggested in capsule endoscopy designs in terms of the quality of images transmitted, capsule orientation, positioning of the capsule from outside the body, link budget analysis, impedance matching and capsule miniaturization. To improve the image quality, transmission efficiency of the antenna has to be improved. This has led to the development of many antenna structures in an ingestible capsule system. Literatures have identified Med Radio and ISM (Industrial, Scientific and Medical) band as operation bands for the WCE systems. This review aims to highlight: (1) design considerations for various antenna types, (2) miniaturization techniques, (3) operating bands, specifications and various design challenges and (4) research gap, advanced design technologies and targets of ingestible antenna system. The main aim of this paper is to tutorial the up-to-date information on the recent antenna designing techniques and challenges for ingestible system.
人们对可食用无线胶囊内窥镜 (WCE) 研究的兴趣表明,其结果优于传统的侵入性探头内窥镜方法。由于小肠的结构和位置,传统的内窥镜方法无法对该区域进行适当的扫描。为了提高患者的舒适度,在胶囊内窥镜设计方面,不断提出了一些改进建议,例如传输图像的质量、胶囊的方向、从体外定位胶囊、链路预算分析、阻抗匹配和胶囊小型化等方面。为了提高图像质量,必须提高天线的传输效率。这导致了许多可食用胶囊系统中的天线结构的发展。文献已经确定 Med Radio 和 ISM(工业、科学和医学)频段为 WCE 系统的工作频段。本综述旨在强调:(1)各种天线类型的设计考虑因素,(2)小型化技术,(3)工作频段、规格和各种设计挑战,以及(4)研究差距、先进的设计技术和可食用天线系统的目标。本文的主要目的是介绍最新的可食用系统天线设计技术和挑战的相关信息。