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Enhance light penetration in tissue for high-resolution optical imaging techniques by the use of biocompatible chemical agents

机译:通过使用生物相容性化学试剂增强用于高分辨率光学成像技术的组织的光渗透

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The highly scattering nature of human tissue limits light penetration depth in the near infrared range, which prevents the deeper microstructures from imaging. In order to enhance the imaging depth for the current high resolution optical imaging techniques, the light scattering in tissue must be reduced. This paper demonstrates that the light scattering of tissue can be effectively reduced by the topical applications of the biocompatible chemical agents. In this study the propylene glycol and glucose solutions were chosen for the demonstrations through topical applications and intra-dermis injection, respectively. The experiments were performed in vitro and in vivo by the use of the optical coherence tomography system. The results clearly show that the OCT imaging depth and contrast are dramatically improved after the topical applications of propylene glycol solution. Such improvement was discussed on the basis of refractive index matching environment created by the chemical agents, which effectively reduces the light scattering of tissue. Rayleigh-Gans approximation of light scattering was also used to show theoretically how the increase of refractive index of background medium would have effect on the reduced scattering coefficient of tissue. The theoretical and experimental results were qualitatively consistent.
机译:人体组织的高度散射性质限制了近红外范围内的光渗透深度,这可以防止较深的微观结构从成像。为了提高电流高分辨率光学成像技术的成像深度,必须减少组织中的光散射。本文表明,通过生物相容性化学试剂的局部应用,可以有效地减少组织的光散射。本研究分别选择丙二醇和葡萄糖溶液,通过局部应用和真皮内注射来选择示威性。通过使用光学相干断层扫描系统在体外和体内进行实验。结果清楚地表明,在丙二醇溶液的局部应用后,OCT成像深度和对比度显着改善。基于由化学试剂产生的折射率匹配环境讨论了这种改进,这有效地减少了组织的光散射。 Rayleigh-Gans近似光散射还用于理论上用于显示背景介质的折射率的增加对组织的降低散射系数的影响。理论和实验结果是定性的。

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