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可植入式天线在生物医学中的应用:系统综述。

Implantable antennas for biomedical applications: a systematic review.

机构信息

School of Electronics Engineering, Vellore Institute of Technology, Chennai, Tamilnadu, India.

出版信息

Biomed Eng Online. 2024 Aug 29;23(1):87. doi: 10.1186/s12938-024-01277-1.

Abstract

This review presents an in-depth examination of implantable antennas for various biomedical purposes. The development of implantable antennas, including their designs, materials, and operating principles, are introduced at the beginning of the discussion. An overview of the many kinds of implantable antennas utilized in implantable medical devices (IMDs) are presented in this study. The article then discusses the important factors to consider when developing implantable antennas for biomedical purposes, including implant placement, frequency range, and power needs. This investigation additionally examines the challenges and limitations encountered with implantable antennas, including the limited space available within the human body, the requirement for biocompatible materials, the impact of surrounding tissue on antenna performance, tissue attenuation, and signal interference. This review also emphasizes the most recent advances in implanted antenna technology, such as wireless power transmission, multiband operation, and miniaturization. Furthermore, it offers illustrations of several biomedical uses for implantable antennas, including pacemaker, capsule endoscopy, intracranial pressure monitoring, retinal prostheses, and bone implants. This paper concludes with a discussion of the future of implantable antennas and their possible use in bioelectronic medicine and novel medical implants. Overall, this survey offers a thorough analysis of implantable antennas in biomedical applications, emphasizing their importance in the development of implantable medical technology.

摘要

这篇综述深入探讨了各种生物医学应用的植入式天线。讨论伊始,便介绍了植入式天线的发展历程,包括其设计、材料和工作原理。本研究还概述了植入式医疗设备(IMD)中使用的多种植入式天线。然后,文章讨论了为生物医学目的开发植入式天线时需要考虑的重要因素,包括植入位置、频率范围和功率需求。本研究还进一步研究了植入式天线所面临的挑战和限制,包括人体内部可用空间有限、对生物相容性材料的要求、周围组织对天线性能的影响、组织衰减和信号干扰。本综述还强调了植入式天线技术的最新进展,例如无线功率传输、多频操作和小型化。此外,还介绍了植入式天线在几个生物医学应用中的实例,包括心脏起搏器、胶囊内窥镜、颅内压监测、视网膜假体和骨植入物。本文最后讨论了植入式天线的未来及其在生物电子医学和新型医疗植入物中的可能应用。总的来说,本综述全面分析了生物医学应用中的植入式天线,强调了它们在植入式医疗技术发展中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f570/11361053/613d0952cc7c/12938_2024_1277_Fig1_HTML.jpg

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