Reliable sensing with unreliable sensors: Rethinking the theoretical foundation of field-deployed wearable/implantable/environmental sensors

IF 2.4 Q2 ENGINEERING, MULTIDISCIPLINARY
M. Alam, Ajanta Saha, Marco Fratus
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引用次数: 3

Abstract

There is a widely shared and potentially well-justified enthusiasm for autonomous field-deployed (FD) wearable, implantable, and environmental sensors for the continuous monitoring of a variety of chronic conditions, such as diabetes, depression, irritable bowel syndrome, and soil nitrate depletion. These FD sensors are often viewed as miniaturized versions of laboratory-based or point-of-care (POC) biosensors, with the primary focus being on material development and mechanical form factor challenges (e.g., stretchability, flexibility, and biocompatibility). In this article, we highlight that the FD sensors are fundamentally different compared to lab-based or POC sensors. We borrow concepts from biology (e.g., bacteria) to quantify the fundamental challenges inherent to such sensors and strategies to overcome them.
不可靠传感器的可靠传感:重新思考现场部署的可穿戴/可植入/环境传感器的理论基础
对于自主现场部署(FD)的可穿戴、可植入和环境传感器,人们有着广泛的共享和潜在的充分理由,这些传感器可用于持续监测各种慢性疾病,如糖尿病、抑郁症、肠易激综合征和土壤硝酸盐消耗。这些FD传感器通常被视为基于实验室或护理点(POC)生物传感器的小型化版本,主要关注材料开发和机械形状因素挑战(例如,可拉伸性,灵活性和生物相容性)。在本文中,我们强调了FD传感器与基于实验室或POC传感器的根本不同。我们借用生物学的概念(如细菌)来量化这些传感器固有的基本挑战和克服它们的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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