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用退偏检测提高皮肤双折射结构散射光共焦成像对比度。

Contrast improvement in scattered light confocal imaging of skin birefringent structures by depolarization detection.

机构信息

Care and Health Applications Group, Philips Research Europe, High Tech Campus 34, 5656 AE Eindhoven, The Netherlands.

出版信息

J Biophotonics. 2011 Nov;4(11-12):850-8. doi: 10.1002/jbio.201100063. Epub 2011 Oct 20.

Abstract

Here we describe a method for enhancing the contrast in imaging skin birefringent structures. The method relies on polarization-dependent optical properties and is implemented using cross polarized confocal microscopy. The experimental data obtained using ex-vivo and in-vivo measurements on human scalp hairs and human skin demonstrate a significant dependence of the change in polarization of light that interacted with the birefringent hair on the orientation of the incident polarization. The polarization dependent contrast, defined as the ratio of intensity measured for different orientations of the incident polarization when observed using cross polarized confocal microscopy furthermore depends on the hair type/degree of pigmentation and on the focusing depth inside the hair. No such dependence was observed for the upper skin layers, including the stratum corneum and epidermis. We propose a new method for enhancing the contrast between the skin and the birefringent hair by the use of cross polarized confocal microscopy combined with the variation of the polarization of the incoming light. Potential applications of this method include imaging of hairs for assessing the efficacy of hair removal methods and measurement of skin birefringence. The underestimation of the birefringence content resulting from the orientation related effects associated with the use of linearly polarized light for imaging tissues containing wavy birefringent structures could be minimized by this method.

摘要

我们在此描述了一种增强皮肤双折射结构成像对比度的方法。该方法依赖于偏振相关的光学特性,并通过正交偏振共焦显微镜来实现。通过对人体头皮毛发和皮肤的离体和在体测量获得的实验数据表明,与双折射毛发相互作用的光的偏振变化与入射偏振的方向有很大的依赖性。偏振相关对比度定义为当使用正交偏振共焦显微镜观察时,不同入射偏振方向测量的强度比,此外还取决于毛发类型/色素沉着程度以及毛发内部的聚焦深度。在上层皮肤(包括角质层和表皮)中则没有观察到这种依赖性。我们提出了一种新的方法,通过使用正交偏振共焦显微镜结合入射光偏振的变化来增强皮肤和双折射毛发之间的对比度。该方法的潜在应用包括用于评估除毛方法效果的毛发成像以及皮肤双折射的测量。这种方法可以最小化由于使用线偏振光对包含波浪形双折射结构的组织进行成像而导致的与取向相关的影响所引起的双折射含量的低估。

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