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Visible-light OCT spectrometer for microvascular oximetry

机译:可见光OCT光谱仪用于微血管血氧饱和度测定

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We describe a visible-light spectroscopic OCT system designed to obtain localized measurements of hemoglobin oxygenation in the superficial microcirculation and also to obtain localized measurements of optical properties at visible wavelengths. The device is based on a supercontinuum source emitting in the 450-600 nm spectral range, which overlaps the visible absorption band of hemoglobin. The OCT detection system uses a spectral domain set-up using a linear CCD and home-built spectrometer and is implemented in single-mode fiber. Multi-spectral OCT images can be acquired at eight wavelengths simultaneously each with 256 axial pixels, and multi-linear regression processing can be applied at a line-rate of 1 kHz. The dynamic range of the system is characterized and found to be limited by excess noise in the supercontinuum source. The wavelength-dependence of scatter is determined for Intralipid using a single-scatter model. Coherent back-scatter from whole blood is detected in the visible spectrum and used to infer the total attenuation coefficient at 470 nm. The feasibility of obtaining oximetry data over volumes of blood as thin as 20 microns is demonstrated. The work describes first steps towards assessment of hemoglobin oxygenation in the superficial microcirculation with picoliter resolution.
机译:我们描述了一种可见光光谱OCT系统,该系统设计用于在浅表微循环中获得血红蛋白氧合的局部测量结果,还用于在可见波长处获得光学特性的局部测量结果。该设备基于在450-600 nm光谱范围内发射的超连续谱光源,该光源与血红蛋白的可见吸收带重叠。 OCT检测系统使用通过线性CCD和自制光谱仪建立的光谱域设置,并在单模光纤中实现。可以同时在八个波长和256个轴向像素同时获取多光谱OCT图像,并且可以以1 kHz的线速应用多线性回归处理。该系统的动态范围的特征在于超连续谱源中的过量噪声所限制。使用单散射模型确定脂质体内散射的波长依赖性。在可见光谱中检测到全血的相干反向散射,并用于推断470 nm处的总衰减系数。证明了在细到20微米的血液中获取血氧饱和度数据的可行性。这项工作描述了以皮升分辨率评估浅表微循环中血红蛋白氧合的第一步。

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