首页> 外文期刊>Ultrasound in Medicine and Biology >COMPUTATION OF THE TEMPERATURE RISE AT THE CORNEAL ENDOTHELIUM DURING CATARACT SURGERY BY MODELING OF HEAT GENERATION INSIDE THE ANTERIOR CHAMBER
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COMPUTATION OF THE TEMPERATURE RISE AT THE CORNEAL ENDOTHELIUM DURING CATARACT SURGERY BY MODELING OF HEAT GENERATION INSIDE THE ANTERIOR CHAMBER

机译:白内障手术中热量产生的模拟计算白内障手术中角膜内皮温度的升高。

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摘要

The corneal endothelium sustaining the transparency of the cornea is a vulnerable cell layer. Thermal exposure during phacoemulsification is considered to be a potential cause of post-operative cell loss. Knowledge of the temperature rise and particularly of its dependence on region and system settings could deliver useful information about a potential correlation with cell damage. However, there exists a lack of understanding of the process and location of heat generation. Analytical calculations and experiments enabled the quantification of different mechanisms acting as heat sources during phacoemulsification. Heat generation caused by viscous friction was estimated using both an analytical approach and a numerical simulation. In contrast to absorption of sound and self-heating of the probe, this effect was ascertained to be the main heat source. Calorimetric measurement of the power input verified this modeling. On the basis of these results, the local temperature distribution inside a porcine eye was computed time dependency using the finite-element method. Two different amplitude settings were compared with respect to the temperature increase at the corneal endothelium. Various conclusions on the mitigation of thermal exposure during treatment can be drawn from this finite-element simulation.
机译:维持角膜透明性的角膜内皮是脆弱的细胞层。超声乳化术期间的热暴露被认为是术后细胞丢失的潜在原因。了解温度升高,尤其是其对区域和系统设置的依赖性,可以提供有关与细胞损伤的潜在关联的有用信息。然而,缺乏对热产生的过程和位置的理解。通过分析计算和实验,可以量化超声乳化期间用作热源的不同机制。使用分析方法和数值模拟来估算由粘滞摩擦引起的热量产生。与声音的吸收和探头的自热相反,这种作用被确定为主要的热源。功率输入的量热测量验证了该模型。基于这些结果,使用有限元方法计算了猪眼内的局部温度分布与时间的关系。对于角膜内皮的温度升高,比较了两种不同的振幅设置。可以从这种有限元模拟中得出有关缓解治疗期间热暴露的各种结论。

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