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Optics and thermodynamics of titanium-containing optothermal fiber converter and vein wall during endovasal laser coagulation

机译:含钛的光学热纤维转换器和静脉壁在腹膜激光凝固过程中的光学和热力学

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摘要

The possibility of endovenous laser coagulation using Ti-containing optothermal fiber converters (TOTFC) is discussed. Optical and thermal models have been developed to estimate the distribution of radiation and temperature in the vein during endovenous laser coagulation when using TOTFC for 532 nm, 810 nm, 980 nm, 1064 nm, 1310 nm, 1470 nm, 1910 nm and 2100 nm wavelengths. Radiation intensity distributions around the TOTFC and on the vessel wall were obtained and evaluated. The absorbance efficiency of laser energy with different wavelengths for TOTFC has been calculated. As a result of the thermal calculation, for different wavelengths, average laser power from 8 to 15 W with traction speed from 1 to 7 mm/s, the thermodynamics of the blood vessel wall and TOTFC was determined. During endovenous laser coagulation temperature inside TOTFC exceeds 500°C. The optimal combinations of average laser power and titanium-containing converter traction speed are defined for coagulation of the vein wall.
机译:讨论了使用含Ti的光学热纤维转换器(TOTFC)的统治激光凝结的可能性。已经开发出光学和热模型以估计静脉激光凝固期间静脉辐射和温度分布,当使用Totfc时使用Totfc,810nm,980nm,1064nm,1310nm,1470nm,1910nm和2100nm波长。获得并评估TOTFC周围和血管壁上的辐射强度分布。计算了具有不同波长的激光能量的吸光度效率。作为热量计算的结果,对于不同波长,从8至15W的平均激光功率从1到7mm / s的牵引速度,测定血管壁的热力学和Totfc。在统治激光凝固温度期间,Totfc内部超过500℃。平均激光功率和含钛转换器牵引速度的最佳组合被定义用于静脉壁的凝结。

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