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Double-layer estimation of intra- and extracerebral hemoglobin concentration with a time-resolved system

机译:用时间分辨系统双层估算脑内和脑外血红蛋白浓度

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摘要

We present in vivo measurements of baseline physiology from five subjects with a four-wavelength (690, 750, 800, and 850 nm) time-resolved optical system. The measurements were taken at four distances: 10, 15, 25, and 30 mm. All distances were fit simultaneously with a two-layered analytical model for the absorption and reduced scattering coefficient of both layers. The thickness of the first layer, comprising the skin, scalp, and cerebrospinal fluid, was obtained from anatomical magnetic resonance images. The fitting procedure was first tested with simulations before being applied to in vivo measurements and verified that this procedure permits accurate characterization of the hemoglobin concentrations in the extra- and intracerebral tissues. Baseline oxyhemoglobin, deoxyhemoglobin, and total hemoglobin concentrations and oxygen saturation were recovered from in vivo measurements and compared to the literature. We observed a noticeable intersubject variability of the hemoglobin concentrations, but constant values for the cerebral hemoglobin oxygen saturation.
机译:我们介绍了五个波长为四波长(690、750、800和850 nm)的时间分辨光学系统对五名受试者的基线生理学的体内测量结果。在四个距离处进行测量:10、15、25和30 mm。两层分析模型同时拟合所有距离,以吸收和减小两层的散射系数。从解剖磁共振图像获得包括皮肤,头皮和脑脊髓液的第一层的厚度。该拟合过程首先通过模拟进行测试,然后再应用于体内测量,并验证了该过程可以准确表征脑外和脑内组织中的血红蛋白浓度。从体内测量中回收基线氧合血红蛋白,脱氧血红蛋白,总血红蛋白浓度和氧饱和度,并与文献进行比较。我们观察到血红蛋白浓度存在明显的受试者间变异性,但脑血红蛋白氧饱和度的值恒定。

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