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使用固态探测器的时间分辨漫射光学光谱与成像:特性、现状及研究挑战

Time-Resolved Diffuse Optical Spectroscopy and Imaging Using Solid-State Detectors: Characteristics, Present Status, and Research Challenges.

作者信息

Alayed Mrwan, Deen M Jamal

机构信息

School of Biomedical Engineering, McMaster University, Hamilton, ON L8S 4L8, Canada.

National Nanotechnology Center, King Abdul Aziz City for Science and Technology (KACST), Riyadh 11442, Saudi Arabia.

出版信息

Sensors (Basel). 2017 Sep 14;17(9):2115. doi: 10.3390/s17092115.

Abstract

Diffuse optical spectroscopy (DOS) and diffuse optical imaging (DOI) are emerging non-invasive imaging modalities that have wide spread potential applications in many fields, particularly for structural and functional imaging in medicine. In this article, we review time-resolved diffuse optical imaging (TR-DOI) systems using solid-state detectors with a special focus on Single-Photon Avalanche Diodes (SPADs) and Silicon Photomultipliers (SiPMs). These TR-DOI systems can be categorized into two types based on the operation mode of the detector (free-running or time-gated). For the TR-DOI prototypes, the physical concepts, main components, figures-of-merit of detectors, and evaluation parameters are described. The performance of TR-DOI prototypes is evaluated according to the parameters used in common protocols to test DOI systems particularly basic instrumental performance (BIP). In addition, the potential features of SPADs and SiPMs to improve TR-DOI systems and expand their applications in the foreseeable future are discussed. Lastly, research challenges and future developments for TR-DOI are discussed for each component in the prototype separately and also for the entire system.

摘要

漫射光学光谱(DOS)和漫射光学成像(DOI)是新兴的非侵入性成像方式,在许多领域具有广泛的潜在应用,特别是在医学中的结构和功能成像方面。在本文中,我们回顾了使用固态探测器的时间分辨漫射光学成像(TR-DOI)系统,特别关注单光子雪崩二极管(SPAD)和硅光电倍增管(SiPM)。这些TR-DOI系统可根据探测器的操作模式(自由运行或时间选通)分为两类。对于TR-DOI原型,描述了其物理概念、主要组件、探测器的品质因数以及评估参数。根据用于测试DOI系统的常见协议中使用的参数,特别是基本仪器性能(BIP),对TR-DOI原型的性能进行评估。此外,还讨论了SPAD和SiPM在可预见的未来改善TR-DOI系统并扩展其应用的潜在特性。最后,分别针对原型中的每个组件以及整个系统讨论了TR-DOI的研究挑战和未来发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8691/5621067/2bcb2f281038/sensors-17-02115-g001.jpg

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