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首页> 外文期刊>Physics in medicine and biology. >In vivo optical characterization of human tissues from 610 to 1010 nm by time-resolved reflectance spectroscopy.
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In vivo optical characterization of human tissues from 610 to 1010 nm by time-resolved reflectance spectroscopy.

机译:通过时间分辨反射光谱对610至1010 nm的人体组织进行体内光学表征。

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摘要

A fully automated system for time-resolved reflectance spectroscopy based on tunable mode-locked laser sources and on time-correlated single-photon counting for the detection of time-resolved reflectance data was applied to the evaluation of the optical properties of biological tissues (arm, abdomen and forehead) in vivo from 610 to 1010 nm. The scattering decreases progressively with increasing wavelength, while the absorption line shapes show the typical spectral features of the principal tissue components (haemoglobin, water and lipid), with different weights depending on the tissue type. The best fit of the absorption spectra measured in vivo with the spectra of the pure constituents yielded information on the percentage composition of the different tissues. The interpretation of transport scattering spectra with Mie theory provided information on tissue structure.
机译:将基于可调锁模激光源和时间相关单光子计数的时间分辨反射光谱的全自动系统用于检测时间分辨反射率数据,该系统用于评估生物组织(手臂)的光学特性,腹部和前额)从610到1010 nm。散射随着波长的增加而逐渐减小,而吸收线的形状则显示出主要组织成分(血红蛋白,水和脂质)的典型光谱特征,其权重取决于组织类型。体内测得的吸收光谱与纯成分光谱的最佳拟合产生了有关不同组织的百分比组成的信息。用米氏理论解释传输散射光谱提供了有关组织结构的信息。

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