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用于医学诊断、健康监测和光疗的光波导和集成光器件。

Optical Waveguides and Integrated Optical Devices for Medical Diagnosis, Health Monitoring and Light Therapies.

机构信息

Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 215163, China.

Department of Electronic Engineering and Information Science, University of Science and Technology of China, Hefei 230026, China.

出版信息

Sensors (Basel). 2020 Jul 17;20(14):3981. doi: 10.3390/s20143981.

Abstract

Optical waveguides and integrated optical devices are promising solutions for many applications, such as medical diagnosis, health monitoring and light therapies. Despite the many existing reviews focusing on the materials that these devices are made from, a systematic review that relates these devices to the various materials, fabrication processes, sensing methods and medical applications is still seldom seen. This work is intended to link these multidisciplinary fields, and to provide a comprehensive review of the recent advances of these devices. Firstly, the optical and mechanical properties of optical waveguides based on glass, polymers and heterogeneous materials and fabricated via various processes are thoroughly discussed, together with their applications for medical purposes. Then, the fabrication processes and medical implementations of integrated passive and active optical devices with sensing modules are introduced, which can be used in many medical fields such as drug delivery and cardiovascular healthcare. Thirdly, wearable optical sensing devices based on light sensing methods such as colorimetry, fluorescence and luminescence are discussed. Additionally, the wearable optical devices for light therapies are introduced. The review concludes with a comprehensive summary of these optical devices, in terms of their forms, materials, light sources and applications.

摘要

光波导和集成光学器件是许多应用的有前途的解决方案,例如医学诊断、健康监测和光疗。尽管已经有许多现有评论侧重于这些设备所使用的材料,但很少有系统地将这些设备与各种材料、制造工艺、传感方法和医学应用联系起来的综述。这项工作旨在将这些多学科领域联系起来,并对这些设备的最新进展进行全面综述。首先,彻底讨论了基于玻璃、聚合物和异质材料的光波导的光学和机械性能以及通过各种工艺制造的光波导,以及它们在医学用途上的应用。然后,介绍了具有传感模块的集成无源和有源光学器件的制造工艺和医学应用,这些器件可用于药物输送和心血管保健等许多医学领域。接下来,讨论了基于比色法、荧光和发光等光传感方法的可穿戴光学传感设备。此外,还介绍了用于光疗的可穿戴光学设备。最后,从这些光学设备的形式、材料、光源和应用等方面对其进行了全面总结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5030/7411870/12416a2a3774/sensors-20-03981-g001.jpg

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