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Multi-spectral imaging of oxygen saturation

机译:氧饱和度的多光谱成像

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The system of multi-spectral imaging of oxygen saturation is an instrument that can record both spectral and spatial information about a sample. In this project, the spectral imaging technique is used for monitoring of oxygen saturation of hemoglobin in human tissues. This system can be used for monitoring spatial distribution of oxygen saturation in photodynamic therapy, surgery or sports medicine. Diffuse reflectance spectroscopy in the visible range is an effective and extensively used technique for the non-invasive study and characterization of various biological tissues. In this article, a short review of modeling techniques being currently in use for diffuse reflection from semi-infinite turbid media is presented. A simple and practical model for use with a real-time imaging system is proposed. This model is based on linear approximation of the dependence of the diffuse reflectance coefficient on relation between absorbance and reduced scattering coefficient. This dependence was obtained with the Monte Carlo simulation of photon propagation in turbid media. Spectra of the oxygenated and deoxygenated forms of hemoglobin differ mostly in the red area (520 — 600 nm) and have several characteristic points there. Thus four band-pass filters were used for multi-spectral imaging. After having measured the reflectance, the data obtained are used for fitting the concentration of oxygenated and free hemoglobin, and hemoglobin oxygen saturation.
机译:氧饱和度的多光谱成像系统是可以记录关于样本的光谱和空间信息的仪器。在该项目中,光谱成像技术用于监测人组织中血红蛋白的氧饱和度。该系统可用于监测光动力疗法,手术或运动医学中的氧饱和度的空间分布。可见范围中的漫反射光谱是一种有效且广泛使用的技术,用于非侵入性研究和各种生物组织的表征。在本文中,提出了对当前用于从半无限浑浊介质漫射反射的模型技术的简短审查。提出了一种简单实用的模型,用于实时成像系统。该模型基于漫反射系数依赖性对吸光度和降低散射系数之间的依赖性的线性近似。利用浑浊介质中的光子繁殖的蒙特卡罗模拟获得了这种依赖性。氧化和脱氧形式的血红蛋白的光谱主要在红色区域(520-600nm)中不同,并且在那里具有若干特征点。因此,使用四个带通滤波器用于多光谱成像。在测量反射率之后,所获得的数据用于拟合含氧和游离血红蛋白的浓度,以及血红蛋白氧饱和度。

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