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阐明瑞利散射对静脉呈现蓝色外观的贡献。

Elucidating the contribution of Rayleigh scattering to the bluish appearance of veins.

机构信息

University of Waterloo, Natural Phenomena Simulation Group, School of Computer Science, Waterloo, Canada.

出版信息

J Biomed Opt. 2018 Feb;23(2):1-17. doi: 10.1117/1.JBO.23.2.025001.

Abstract

The bluish appearance of veins located immediately beneath the skin has long been a topic of interest for biomedical optics researchers. Despite this interest, a thorough identification of the specific optical processes responsible for this phenomenon remains to be achieved. We employ controlled in silico experiments to address this enduring open problem. Our experiments, which are supported by measured data available in the scientific literature, are performed using first-principles models of light interaction with human skin and blood. Using this investigation approach, we quantitatively demonstrate that Rayleigh scattering caused by collagen fibrils present in the papillary dermis, a sublayer of the skin, can play a pivotal role in the bluish appearance of veins as suggested by previous works in this area. Moreover, also taking color perception aspects into account, we systematically assess the effects of variations in fibril radius and papillary dermis thickness on the coloration of veins under different illuminants. Notably, this assessment indicates that Rayleigh scattering elicited by reticulin fibrils, another type of fibril found in the papillary dermis, is unlikely to significantly contribute to the bluish appearance of veins. By strengthening the current understanding of light attenuation mechanisms affecting the appearance of skin and blood, our investigation contributes to the development of more effective technologies aimed at the noninvasive measurement of the physiological properties of these tissues.

摘要

静脉在皮肤下的蓝色外观一直是生物医学光学研究人员感兴趣的话题。尽管有这种兴趣,但对于导致这种现象的具体光学过程还需要进行彻底的识别。我们采用控制的计算机模拟实验来解决这个长期存在的开放性问题。我们的实验基于科学文献中可获得的测量数据,使用与人皮肤和血液相互作用的第一性原理模型进行。使用这种研究方法,我们定量地证明了以前该领域的研究工作所提出的,真皮乳头层(皮肤的一个亚层)中存在的胶原纤维的瑞利散射可以在静脉的蓝色外观中发挥关键作用。此外,还考虑到颜色感知方面,我们系统地评估了纤维半径和真皮乳头层厚度的变化对不同光源下静脉颜色的影响。值得注意的是,这种评估表明,真皮乳头层中另一种纤维——网状纤维的瑞利散射不太可能对静脉的蓝色外观产生显著影响。通过加强对影响皮肤和血液外观的光衰减机制的理解,我们的研究有助于开发更有效的技术,旨在实现对这些组织的生理特性的非侵入性测量。

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