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Lateral scattered light used to study laser light propagation in turbid media phantoms

机译:横向散射光用于研究激光在混浊介质体模中的传播

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Understanding laser light propagation in soft tissue is important because of the growing biomedical applications of lasers and the need to optically characterize the biological media. Following previous developments of our group, we have developed low cost models, Phantoms, of soft tissue. The process was developed in a clean room to avoid the medium contamination. Each model was characterized by measuring its refractive index, and spectral reflectance and transmittance. To study the laser light propagation, each phantom was illuminated with a clean beam of laser light, using sources such as He-Ne (632nm) and DPSSL (473 nm). Laterally scattered light was imaged and these images were digitally processed. We analyzed the intensity distribution of the scattered radiation in order to obtain details of the beam evolution in the medium. Line profiles taken from the intensity distribution surface allow measurement of the beam spread, and expressions for the longitudinal (along the beam incident direction) and transverse (across the beam incident direction) intensities distributions were found. From these behaviors, the radiation penetration depth and the total coefficient of extinction have been determined. The multiple scattering effects were remarkable, especially for the low wavelength laser beam.
机译:了解激光在软组织中的传播非常重要,因为激光在生物医学中的应用不断增长,并且需要对生物介质进行光学表征。继我们小组以前的发展之后,我们开发了低成本的软组织模型Phantoms。该工艺是在洁净室中开发的,以避免介质污染。每个模型的特征在于测量其折射率,光谱反射率和透射率。为了研究激光的传播,使用诸如He-Ne(632nm)和DPSSL(473 nm)的光源,用干净的激光束照射每个体模。对横向散射的光进行成像,并对这些图像进行数字处理。我们分析了散射辐射的强度分布,以便获得介质中光束演化的详细信息。从强度分布表面获取的线轮廓可以测量光束的散布,并且找到了纵向(沿光束入射方向)和横向(沿光束入射方向)强度分布的表达式。从这些行为,已经确定了辐射穿透深度和总消光系数。多重散射效应是显着的,特别是对于低波长激光束。

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