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Heating and structural alterations in cartilage under laser radiation

机译:激光辐射下软骨的发热和结构改变

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The authors have developed a theoretical model to calculate the temperature field and the spatial distribution of modified cartilage following laser irradiation. The model incorporates both thermal and mass transfer in a tissue with bulk absorption of laser radiation, water evaporation from the surfaces of a slab, and temperature dependence of the diffusion coefficient. The authors propose that water undergoes a bound-to-free phase transition in cartilage heated to about 70/spl deg/C and the mobility of proteoglycan units in the cartilage matrix increases. Movement of the proteoglycan units takes place only when the temperature exceeds 70/spl deg/C and results in tissue denaturation. Using their model, the authors show: (1) the maximal temperature is reached not on the surface irradiated but rather at some distance below; (2) surface temperature reaches its asymptotic value quicker than the maximal temperature; and (3) the depth of the denatured tissue volume strongly depends on laser fluency, wavelength, exposure time, and cartilage thickness. The model allows for the prediction and control of temperature and depth of structural alterations during the course of laser reshaping and treatment of cartilage.
机译:作者已经开发出理论模型来计算激光辐照后的温度场和修饰软骨的空间分布。该模型将组织中的热传递和质量传递结合在一起,同时大量吸收激光辐射,水从平板表面蒸发以及扩散系数的温度依赖性。作者提出,水在加热至约70 / spl deg / C的软骨中会经历束缚到自由的相变,并且软骨基质中蛋白聚糖单元的迁移率会增加。仅当温度超过70 / spl deg / C时才发生蛋白聚糖单位的运动,并导致组织变性。使用他们的模型,作者表明:(1)达到最高温度不是在被照射的表面上,而是在下面的某个距离处; (2)表面温度比最高温度更快地达到其渐近值; (3)变性组织体积的深度在很大程度上取决于激光的流利度,波长,暴露时间和软骨厚度。该模型可以预测和控制激光整形和软骨治疗过程中结构变化的温度和深度。

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