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通过双峰光谱法同时表征颈动脉的光学和流变学特性:实验与模拟结果

Simultaneous characterization of optical and rheological properties of carotid arteries via bimodal spectroscopy: experimental and simulation results.

作者信息

Péry Emilie, Blondel Walter C P M, Didelon Jacques, Leroux Agnés, Guillemin François

机构信息

Health Engineering Group, Automatic Control Research Center, Nancy University, F-54516 Vandoeuvre-lés-Nancy, France.

出版信息

IEEE Trans Biomed Eng. 2009 May;56(5):1267-76. doi: 10.1109/TBME.2009.2013719. Epub 2009 Jan 23.

Abstract

This study aimed at identifying potential correlations between rheological and optical properties of carotid artery rings before and after cryopreservation at different mechanical deformations using experimental and simulation results. Therefore, a uniaxial mechanical test bench was coupled to fibered optical spectroscopes measuring 410 nm excited autofluorescence and 650-850 nm elastically backscattered intensity spectra. Furthermore, we developed a statistical simulation program of light transport and fluorescence adapted to our specific experimental configuration. Both spectroscopies gave intensity spectra with higher amplitude for the cryopreserved samples. These observations are to be related to histological modifications affecting the arterial wall of postcryopreserved samples. We also observed significant spectral amplitude variations (increasing autofluorescence intensity and decreasing diffuse reflectance) as a function of the circumferential strains (0%-60%). Due to simulation, we identified values of absorption, diffusion, and anisotropy coefficients, and their variations as a function of state (fresh-cryopreserved), strains (0, 30%, 60%), and wavelengths (700, 740, 780 nm). The media and the adventice are, respectively, less and more absorbing for postcryopreserved rings, and it is the opposite for the fresh ones at higher wavelengths. Absorption and diffusion coefficients are slightly higher, whatever the wavelengths and strains, for the fresh than for the cryopreserved samples.

摘要

本研究旨在利用实验和模拟结果,确定在不同机械变形下颈动脉环冷冻保存前后流变学特性与光学特性之间的潜在相关性。因此,将单轴机械试验台与测量410 nm激发的自发荧光以及650 - 850 nm弹性后向散射强度光谱的光纤光谱仪相耦合。此外,我们开发了一个适用于我们特定实验配置的光传输和荧光统计模拟程序。两种光谱学方法均显示,冷冻保存后的样品强度光谱具有更高的幅度。这些观察结果与影响冷冻保存后样品动脉壁的组织学改变有关。我们还观察到,随着周向应变(0% - 60%)的变化,光谱幅度存在显著变化(自发荧光强度增加,漫反射率降低)。通过模拟,我们确定了吸收系数、扩散系数和各向异性系数的值,以及它们随状态(新鲜 - 冷冻保存)、应变(0、30%、60%)和波长(700、740、780 nm)的变化情况。对于冷冻保存后的环,中膜和外膜的吸收分别较少和较多,而在较高波长下新鲜环的情况则相反。无论波长和应变如何,新鲜样品的吸收系数和扩散系数都略高于冷冻保存后的样品。

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