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频域近红外光谱技术的最新进展综述[特邀]

Review of recent advances in frequency-domain near-infrared spectroscopy technologies [Invited].

作者信息

Zhou Xinkai, Xia Yunjia, Uchitel Julie, Collins-Jones Liam, Yang Shufan, Loureiro Rui, Cooper Robert J, Zhao Hubin

机构信息

HUB of Intelligent Neuro-engineering (HUBIN), Aspire CREATe, IOMS, Division of Surgery and Interventional Science, University College London (UCL), London, HA7 4LP, UK.

DOT-HUB, Department of Medical Physics & Biomedical Engineering, UCL, London, WC1E 6BT, UK.

出版信息

Biomed Opt Express. 2023 Jun 12;14(7):3234-3258. doi: 10.1364/BOE.484044. eCollection 2023 Jul 1.

Abstract

Over the past several decades, near-infrared spectroscopy (NIRS) has become a popular research and clinical tool for non-invasively measuring the oxygenation of biological tissues, with particular emphasis on applications to the human brain. In most cases, NIRS studies are performed using continuous-wave NIRS (CW-NIRS), which can only provide information on relative changes in chromophore concentrations, such as oxygenated and deoxygenated hemoglobin, as well as estimates of tissue oxygen saturation. Another type of NIRS known as frequency-domain NIRS (FD-NIRS) has significant advantages: it can directly measure optical pathlength and thus quantify the scattering and absorption coefficients of sampled tissues and provide direct measurements of absolute chromophore concentrations. This review describes the current status of FD-NIRS technologies, their performance, their advantages, and their limitations as compared to other NIRS methods. Significant landmarks of technological progress include the development of both benchtop and portable/wearable FD-NIRS technologies, sensitive front-end photonic components, and high-frequency phase measurements. Clinical applications of FD-NIRS technologies are discussed to provide context on current applications and needed areas of improvement. The review concludes by providing a roadmap toward the next generation of fully wearable, low-cost FD-NIRS systems.

摘要

在过去几十年里,近红外光谱技术(NIRS)已成为一种用于非侵入性测量生物组织氧合情况的热门研究和临床工具,尤其侧重于在人脑方面的应用。在大多数情况下,NIRS研究是使用连续波近红外光谱技术(CW-NIRS)进行的,该技术只能提供关于生色团浓度相对变化的信息,如生氧血红蛋白和脱氧血红蛋白,以及组织氧饱和度的估计值。另一种被称为频域近红外光谱技术(FD-NIRS)的NIRS具有显著优势:它可以直接测量光程长度,从而量化采样组织的散射和吸收系数,并提供生色团绝对浓度的直接测量值。本综述描述了FD-NIRS技术的现状、其性能、优势以及与其他NIRS方法相比的局限性。技术进步的重要里程碑包括台式和便携式/可穿戴FD-NIRS技术的发展、灵敏的前端光子组件以及高频相位测量。文中讨论了FD-NIRS技术的临床应用,以说明当前的应用情况和需要改进的领域。综述最后给出了下一代完全可穿戴、低成本FD-NIRS系统的发展路线图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4acf/10368025/42227e91c93c/boe-14-7-3234-g001.jpg

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