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通过次摆线扫描实现单光纤探头多距离扩散光学光谱技术。

Multi-distance diffuse optical spectroscopy with a single optode via hypotrochoidal scanning.

作者信息

Applegate Matthew B, Roblyer Darren

出版信息

Opt Lett. 2018 Feb 15;43(4):747-750. doi: 10.1364/OL.43.000747.

Abstract

Frequency-domain diffuse optical spectroscopy (FD-DOS) is an established technique capable of determining optical properties and chromophore concentrations in biological tissue. Most FD-DOS systems use either manually positioned, handheld probes or complex arrays of source and detector fibers to acquire data from many tissue locations, allowing for the generation of 2D or 3D maps of tissue. Here, we present a new method to rapidly acquire a wide range of source-detector (SD) separations by mechanically scanning a single SD pair. The source and detector fibers are mounted on a scan head that traces a hypotrochoidal pattern over the sample that, when coupled with a high-speed FD-DOS system, enables the rapid collection of dozens of SD separations for depth-resolved imaging. We demonstrate that this system has an average error of 4±2.6% in absorption and 2±1.8% in scattering across all SD separations. Additionally, by linearly translating the device, the size and location of an absorbing inhomogeneity can be determined through the generation of B-scan images in a manner conceptually analogous to ultrasound imaging. This work demonstrates the potential of single optode diffuse optical scanning for depth resolved visualization of heterogeneous biological tissues at near real-time rates.

摘要

频域漫射光学光谱(FD-DOS)是一种成熟的技术,能够测定生物组织中的光学特性和发色团浓度。大多数FD-DOS系统使用手动定位的手持探头或复杂的源光纤和探测器光纤阵列,从多个组织位置获取数据,从而生成组织的二维或三维图谱。在此,我们提出一种新方法,通过机械扫描单个源-探测器(SD)对来快速获取广泛的源-探测器间距。源光纤和探测器光纤安装在一个扫描头上,该扫描头在样品上描绘出一个次摆线图案,当与高速FD-DOS系统结合使用时,能够快速收集数十个源-探测器间距的数据用于深度分辨成像。我们证明,该系统在所有源-探测器间距下的吸收平均误差为4±2.6%,散射平均误差为2±1.8%。此外,通过线性移动该设备,可以通过生成B扫描图像来确定吸收不均匀性的大小和位置,其方式在概念上类似于超声成像。这项工作展示了单光极漫射光学扫描以近实时速率对异质生物组织进行深度分辨可视化的潜力。

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