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EFFECTS OF LARGE BLOOD VESSELS ON TEMPERATURE DISTRIBUTIONS DURING SIMULATED CRYOSURGERY

机译:大型血管对模拟冷冻胶水温度分布的影响

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Large blood vessels can produce steep temperature gradients in frozen tissues resulting in inadequate cooling temperatures during cryosurgery. In addition, arresting of blood vessels and bleeding due to rupture of large blood vessels by the iceball may cause undesired damage to healthy tissues. However, such important issues received few attentions up to now. In this article, several typical vascular models are applied to study the effects of large blood vessels to the tissue temperature distributions during cryosurgery. The thermal model combines the Pennes bioheat transfer equation describing for perfused tissues and the energy equation for blood vessels. A finite difference algorithm based on the effective heat capacity method is used to solve this complex heat transfer problems. In the algorithm, the tissues are treated as nonideal materials, freezing over a temperature range. Numerical analyses are then performed to study the influences of the blood vessels to the temperature distributions of tissues. The results indicate that different vascular models produce significantly different temperature responses for a given freezing pattern.
机译:大型血管可以在冷冻组织中产生陡峭的温度梯度,导致冷冻机期间的冷却温度不足。此外,由于冰球破裂导致的血管和出血的阻止可能对健康组织造成不希望的损害。但是,这类重要问题几乎没有达到的注意事项。在本文中,应用了几种典型的血管模型来研究大血管在冷冻胶中的组织温度分布对组织温度分布的影响。热模型结合了描述灌注组织的彭尼生物发热方程和血管的能量方程。基于有效热容量方法的有限差分算法用于解决这种复杂的传热问题。在该算法中,组织被视为非膜材料,在温度范围内冷冻。然后进行数值分析以研究血管对组织温度分布的影响。结果表明,不同的血管模型对给定的冷冻模式产生显着不同的温度响应。

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