Department of Electrical, Electronic & Systems Engineering, Universiti Kebangsaan Malaysia, Bangi, Selangor 43600, Malaysia.
Department of Electrical Engineering, Qatar University, Doha 2713, Qatar.
Sensors (Basel). 2021 May 2;21(9):3163. doi: 10.3390/s21093163.
Implantable antennas are mandatory to transfer data from implants to the external world wirelessly. Smart implants can be used to monitor and diagnose the medical conditions of the patient. The dispersion of the dielectric constant of the tissues and variability of organ structures of the human body absorb most of the antenna radiation. Consequently, implanting an antenna inside the human body is a very challenging task. The design of the antenna is required to fulfill several conditions, such as miniaturization of the antenna dimension, biocompatibility, the satisfaction of the Specific Absorption Rate (SAR), and efficient radiation characteristics. The asymmetric hostile human body environment makes implant antenna technology even more challenging. This paper aims to summarize the recent implantable antenna technologies for medical applications and highlight the major research challenges. Also, it highlights the required technology and the frequency band, and the factors that can affect the radio frequency propagation through human body tissue. It includes a demonstration of a parametric literature investigation of the implantable antennas developed. Furthermore, fabrication and implantation methods of the antenna inside the human body are summarized elaborately. This extensive summary of the medical implantable antenna technology will help in understanding the prospects and challenges of this technology.
植入式天线是将数据从植入物无线传输到外部世界的必备条件。智能植入物可用于监测和诊断患者的医疗状况。组织介电常数的分散和人体器官结构的可变性会吸收天线辐射的大部分能量。因此,将天线植入人体内部是一项极具挑战性的任务。天线的设计需要满足几个条件,例如天线尺寸的小型化、生物相容性、满足比吸收率 (SAR) 和高效辐射特性。不对称的恶劣人体环境使得植入式天线技术更加具有挑战性。本文旨在总结用于医疗应用的最新植入式天线技术,并重点介绍主要的研究挑战。此外,它还强调了所需的技术和频段,以及可能影响射频通过人体组织传播的因素。本文还展示了对已开发的植入式天线的参数文献调查。此外,还详细总结了天线在人体内的制造和植入方法。对医疗植入式天线技术的广泛总结将有助于理解该技术的前景和挑战。