首页> 外文会议>Optical Coherence Tomography and Coherence Techniques III; Progress in Biomedical Optics and Imaging; vol.8 no.40; Proceedings of SPIE-The International Society for Optical Engineering; vol.6627 >Depth-resolved simplified characterization of collagen depletion in dermis with polarization sensitive optical coherence tomography applicable to non-laboratory conditions
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Depth-resolved simplified characterization of collagen depletion in dermis with polarization sensitive optical coherence tomography applicable to non-laboratory conditions

机译:适用于非实验室条件的偏振敏感光学相干断层扫描技术深度解析地简化了真皮中胶原蛋白的消耗

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A further insight into the prior concept of polarization sensitive optical coherence tomography system intended for non-laboratory conditions is brought forward and an experimental proof-of-concept is presented. A phenomenological model is adopted from the theory of light depolarization in crystalline polymers and modified to yield a simplified algorithm for mapping depolarization ratio in dermis. The algorithm could distinguish between dermal layers with depleted collagen content and normal dermis of normal perilesional skin. Dermis is simulated by bireringent lamellae of collagen arranged chaotically in multiple layers parallel to the skin surface. Both the design concept and the model imply the sub-millimeter tumor thickness as a proofed prognostic factor and an important criterion for complementary functional diagnostics of skin cancers at their early phase of vertical growth. Choice of the model is inspired by similarity of structural and optical properties between liquid-crystal collagen fibers in dermis and birefringent crystalline lamellae in polymer materials. The numerical computation based on the model allowing for real characteristics of dermis gives plausible interpreting of depolarization peculiarities caused by collagen depletion. Feasibility is discussed of exploiting fiber optic analogs of achromatic retarders. Fabrication of the fiber retarders is shown to be realistic by making use of the photonics technology possessed by the authors.
机译:提出了针对非实验室条件的偏振敏感光学相干断层扫描系统现有概念的进一步见解,并提出了实验性的概念验证。从结晶聚合物中的光去极化理论中采用了一种现象学模型,并将其进行了改进,以简化用于绘制真皮中去极化率的算法。该算法可以区分出胶原蛋白含量低的真皮层和正常的病灶周围皮肤的正常真皮。真皮是通过双折射的胶原片层模拟的,该层片平行于皮肤表面以多层混乱地排列。设计概念和模型均暗示亚毫米级肿瘤厚度是证实的预后因素,也是皮肤癌垂直生长早期互补功能诊断的重要标准。模型的选择受到真皮中液晶胶原纤维和聚合物材料中双折射晶体薄片结构和光学特性相似性的启发。基于该模型的数值计算考虑了真皮的真实特征,从而合理地解释了由胶原蛋白耗竭引起的去极化特性。讨论了开发消色差延迟器的光纤类似物的可行性。通过使用作者拥有的光子学技术,显示出光纤延迟器的制造是现实的。

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