首页> 外文期刊>International journal of biomedical imaging >In Vitro Assessment of Optical Properties of Blood by Applying the Extended Huygens-Fresnel Principle to Time-Domain Optical Coherence Tomography Signal at 1300 nm
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In Vitro Assessment of Optical Properties of Blood by Applying the Extended Huygens-Fresnel Principle to Time-Domain Optical Coherence Tomography Signal at 1300 nm

机译:通过将扩展的惠更斯-菲涅耳原理应用于1300 nm时域光学相干断层扫描信号,体外评估血液的光学特性

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摘要

A direct method for the measurement of the optical attenuation coefficient and the scattering anisotropy parameter based on applying the extended Huygens-Fresnel principle to optical coherence tomography images of blood is demonstrated. The images are acquired with a low-power probing beam at the wavelength of 1300 nm. Values of 12.15 mm−1and 0.95 are found for the total attenuation coefficient and the scattering anisotropy factor, respectively. Also, as a preliminary step, the optical refraction index is determined with a precision of two decimal numbers directly from optical coherence images. The total attenuation coefficient and the scattering anisotropy factor are determined with precisions within experimental error margins of 5% and 2%, respectively. Readable OCT signal is obtained for a maximum propagation of light into blood of 0.25 mm. At the maximum probed depth, the measured signal is almost103smaller than its initial intensity when entering the sample.
机译:阐述了将扩展的惠更斯-菲涅耳原理应用到血液的光学相干断层扫描图像上的直接测量光学衰减系数和散射各向异性参数的方法。用低功率探测光束在1300 nm的波长下采集图像。总衰减系数和散射各向异性因子分别为12.15 mm-1和0.95。而且,作为预备步骤,直接从光学相干图像以两个十进制数的精度确定光学折射率。总衰减系数和散射各向异性因子分别在5%和2%的实验误差范围内以精度确定。获得了可读的OCT信号,以使最大量的光传播到血液中达到0.25mm。在最大探测深度处,当进入样品时,测得的信号几乎比其初始强度小103。

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