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用于非接触式近红外扩散相关断层扫描的准直微透镜光纤阵列

Collimating micro-lens fiber array for noncontact near-infrared diffuse correlation tomography.

作者信息

Feng Shijie, Gui Zhiguo, Zhang Xiaojuan, Shang Yu

机构信息

Shanxi Provincial Key Laboratory for Biomedical Imaging and Big Data, North University of China, No. 3 Xueyuan Road, Taiyuan 030051, China.

出版信息

Biomed Opt Express. 2021 Feb 17;12(3):1467-1481. doi: 10.1364/BOE.413734. eCollection 2021 Mar 1.

Abstract

Near-infrared diffuse correlation spectroscopy/tomography (DCS/DCT) has recently emerged as a noninvasive measurement/imaging technology for tissue blood flow. In DCT studies, the high-dense collection of light temporal autocorrelation curves ( ()) via fiber array are critical for image reconstruction of blood flow. Previously, the camera-based fiber array limits the field of view (FOV), precluding its applications on large-size human tissues. The line-shape fiber probe based on lens combination, which is predominantly used in current DCT studies, requires rotated-scanning over the surface of target tissue, substantially prolonging the measurement time and increasing the system instability. In this study, we design a noncontact optical probe for DCT based on collimating micro-lens fiber array, termed as FA-nc-DCT system. For each source/detector fiber, a single optical path was collimated by coupling with one micro-lens in the fiber array that is integrated in a square-shape base. Additionally, an 8×8 optical switch is used to share the hardware laser and detectors without spatial scanning. The FA-nc approach for the precise collection of () curves was validated through a speed-varied phantom experiment and the human experiments of cuff occlusion, from which the expected value of the blood flow index (BFI) was obtained. Furthermore, the flow anomaly in the phantom and the ischemic muscle in human were accurately reconstructed from the FA-nc-DCT system, which is combined with the imaging framework based on the Nth-order linear algorithm that we recently created. Those outcomes demonstrated the great potential of FA-nc-DCT technology for fast and robust imaging of various diseases such as human breast cancers.

摘要

近红外漫散射相关光谱/断层扫描(DCS/DCT)最近已成为一种用于组织血流的非侵入性测量/成像技术。在DCT研究中,通过光纤阵列高密度采集光时域自相关曲线(())对于血流图像重建至关重要。此前,基于相机的光纤阵列限制了视野(FOV),使其无法应用于大型人体组织。当前DCT研究中主要使用的基于透镜组合的线形光纤探头需要在目标组织表面进行旋转扫描,这大大延长了测量时间并增加了系统不稳定性。在本研究中,我们设计了一种基于准直微透镜光纤阵列的用于DCT的非接触式光学探头,称为FA-nc-DCT系统。对于每个源/探测器光纤,单个光路通过与集成在方形基座中的光纤阵列中的一个微透镜耦合而被准直。此外,使用一个8×8光开关来共享硬件激光器和探测器,无需空间扫描。通过变速体模实验和袖带阻断人体实验验证了FA-nc方法用于精确采集()曲线,从中获得了血流指数(BFI)的预期值。此外,结合我们最近创建的基于N阶线性算法的成像框架,从FA-nc-DCT系统中准确重建了体模中的血流异常和人体缺血肌肉。这些结果证明了FA-nc-DCT技术在快速、稳健地成像各种疾病(如人类乳腺癌)方面的巨大潜力。

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本文引用的文献

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Approaches to denoise the diffuse optical signals for tissue blood flow measurement.用于组织血流测量的漫射光信号去噪方法。
Biomed Opt Express. 2018 Nov 12;9(12):6170-6185. doi: 10.1364/BOE.9.006170. eCollection 2018 Dec 1.
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Nth-order linear algorithm for diffuse correlation tomography.用于扩散相关断层扫描的N阶线性算法。
Biomed Opt Express. 2018 Apr 26;9(5):2365-2382. doi: 10.1364/BOE.9.002365. eCollection 2018 May 1.

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