Massaroni Carlo, Saccomandi Paola, Schena Emiliano
Center for Integrated Research, Università campus Bio-Medico, Alvaro del Portillo, 21, Rome 00128, Italy.
J Funct Biomater. 2015 Apr 13;6(2):204-21. doi: 10.3390/jfb6020204.
The growing interest in the development of smart textiles for medical applications is driven by the aim to increase the mobility of patients who need a continuous monitoring of such physiological parameters. At the same time, the use of fiber optic sensors (FOSs) is gaining large acceptance as an alternative to traditional electrical and mechanical sensors for the monitoring of thermal and mechanical parameters. The potential impact of FOSs is related to their good metrological properties, their small size and their flexibility, as well as to their immunity from electromagnetic field. Their main advantage is the possibility to use textile based on fiber optic in a magnetic resonance imaging environment, where standard electronic sensors cannot be employed. This last feature makes FOSs suitable for monitoring biological parameters (e.g., respiratory and heartbeat monitoring) during magnetic resonance procedures. Research interest in combining FOSs and textiles into a single structure to develop wearable sensors is rapidly growing. In this review we provide an overview of the state-of-the-art of textiles, which use FOSs for monitoring of mechanical parameters of physiological interest. In particular we briefly describe the working principle of FOSs employed in this field and their relevant advantages and disadvantages. Also reviewed are their applications for the monitoring of mechanical parameters of physiological interest.
对用于医疗应用的智能纺织品开发的兴趣日益浓厚,其驱动力在于提高那些需要持续监测此类生理参数的患者的行动能力。与此同时,作为监测热参数和机械参数的传统电气和机械传感器的替代品,光纤传感器(FOS)正获得广泛认可。FOS的潜在影响与其良好的计量特性、小尺寸、灵活性以及对电磁场的免疫性有关。其主要优势在于能够在磁共振成像环境中使用基于光纤的纺织品,而在该环境中无法使用标准电子传感器。这一特性使FOS适用于在磁共振检查过程中监测生物参数(如呼吸和心跳监测)。将FOS与纺织品结合成单一结构以开发可穿戴传感器的研究兴趣正在迅速增长。在本综述中,我们概述了使用FOS监测生理相关机械参数的纺织品的最新技术。特别是,我们简要描述了该领域中使用的FOS的工作原理及其相关优缺点。还回顾了它们在监测生理相关机械参数方面的应用。