Bennett Aviya, Beiderman Yevgeny, Agdarov Sergey, Beiderman Yafim, Hendel Rotem, Straussman Barak, Zalevsky Zeev
Opt Express. 2020 Jul 6;28(14):20830-20844. doi: 10.1364/OE.384423.
Continuous noninvasive measurement of vital bio-signs, such as cardiovascular parameters, is an important tool in evaluation of the patient's physiological condition and health monitoring. Based on new enabling technologies, continuous monitoring of heart and respiration rate, pulse wave velocity and blood pressure have been investigated, advanced and reflected in numerous papers published in recent years. In this paper, we introduce a new technique for noninvasive sensing of vital bio-signs based on a multimode optical fiber sensor that can be integrated into a fabric. The sensor consists of a laser, optical fiber, video camera and computer. Its operation is based on tracking of point-wise intensity variations on speckle patterns caused by interference of the light modes within the fiber subjected to deformation. The paper contains theoretical analysis and experimental validation of the proposed scheme. The main goal is to advance a simple low-cost sensor embedded in a cloth fabric to track changes in the cardiovascular condition of the wearer.
连续无创测量重要生命体征,如心血管参数,是评估患者生理状况和健康监测的重要工具。基于新的使能技术,近年来已有众多论文对心率、呼吸率、脉搏波速度和血压的连续监测进行了研究、改进和阐述。在本文中,我们介绍了一种基于多模光纤传感器的无创生命体征传感新技术,该传感器可集成到织物中。该传感器由激光器、光纤、摄像机和计算机组成。其工作原理是跟踪光纤内受变形影响的光模式干涉所产生的散斑图案上逐点强度变化。本文包含了所提方案的理论分析和实验验证。主要目标是开发一种嵌入布料的简单低成本传感器,以跟踪穿戴者心血管状况的变化。