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A simple color separation technique for solar tissue photocoagulation

机译:一种简单的分色技术,用于太阳光组织的光凝

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摘要

Aiming at studying solar photocoagulation in biological tissue with both low energy and high energy portions of solar spectrum, a simple color separation technique is proposed. The chromatic aberration characteristic of Fresnel lens is exploited to achieve color separation by a plane mirror with a large central elliptical hole, reflecting the solar radiation above 600nm to one fused silica light guide, while allowing the passage of the remaining radiation to another guide. ZEMAX™ ray-tracing code is used to optimize the performance of each optical component. To attain a stable solar coagulation, the prototype is tested on a two-axis solar tracker. The ex vivo measurement is performed on chicken breasts at the solar power level of 30W and the exposure time of 60 seconds, attaining a uniform coagulation over a large area of 15mm x 15mm. A strong dependence of the penetration depth on wavelength is observed. Our cost effective solar photocoagulation prototype produces the same type and extent of tissue coagulation ordinarily achieved with surgical laser equipment
机译:为了研究具有低能量和高能量光谱的生物组织中的太阳光凝结,提出了一种简单的分色技术。菲涅耳透镜的色差特性可通过具有较大中央椭圆孔的平面镜实现分色,将600nm以上的太阳辐射反射到一个熔融石英光导上,同时将剩余的辐射传递到另一个光导上。 ZEMAX™光线跟踪代码用于优化每个光学组件的性能。为了获得稳定的太阳凝结,在两轴太阳跟踪器上对原型进行了测试。在太阳能功率为30W,暴露时间为60秒的情况下,对鸡胸进行离体测量,从而在15mm x 15mm的大面积上获得均匀的凝结。观察到穿透深度对波长的强烈依赖性。我们具有成本效益的太阳光凝结原型可以产生通常用外科激光设备实现的相同类型和程度的组织凝结

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