Elmore Family School of Electrical and Computer Engineering and Center for Internet of Bodies (C-IoB), Purdue University, West Lafayette, Indiana, USA; email:
Department of Electrical and Computer Engineering, University of Florida, Gainesville, Florida, USA.
Annu Rev Biomed Eng. 2023 Jun 8;25:101-129. doi: 10.1146/annurev-bioeng-110220-112448. Epub 2023 Mar 13.
Energy-efficient sensing with physically secure communication for biosensors on, around, and within the human body is a major area of research for the development of low-cost health care devices, enabling continuous monitoring and/or secure perpetual operation. When used as a network of nodes, these devices form the Internet of Bodies, which poses challenges including stringent resource constraints, simultaneous sensing and communication, and security vulnerabilities. Another major challenge is to find an efficient on-body energy-harvesting method to support the sensing, communication, and security submodules. Due to limitations in the amount of energy harvested, we require a reduction in energy consumed per unit information, making the use of in-sensor analytics and processing imperative. In this article, we review the challenges and opportunities of low-power sensing, processing, and communication with possible powering modalities for future biosensor nodes. Specifically, we analyze, compare, and contrast () different sensing mechanisms such as voltage/current domain versus time domain, () low-power, secure communication modalities including wireless techniques and human body communication, and () different powering techniques for wearable devices and implants.
用于人体内部、周围和表面的生物传感器的节能感测和物理安全通信是低成本医疗设备开发的一个主要研究领域,能够实现连续监测和/或安全的永久运行。当这些设备用作节点网络时,它们构成了物联网,这带来了包括严格的资源限制、同时进行感测和通信以及安全漏洞在内的挑战。另一个主要挑战是找到一种有效的体上能量收集方法来支持感测、通信和安全子模块。由于收集到的能量有限,我们需要降低每个信息单位的能耗,这使得在传感器内进行分析和处理变得至关重要。在本文中,我们回顾了低功耗感测、处理和通信的挑战和机遇,并探讨了未来生物传感器节点的可能供电方式。具体来说,我们分析、比较和对比了(1)不同的感测机制,如电压/电流域与时间域,(2)包括无线技术和人体通信在内的低功耗、安全通信方式,以及(3)用于可穿戴设备和植入物的不同供电技术。