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首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >Comparison of pulmonary arterial flow phenomena in spiral and Lecompte models by computational fluid dynamics.
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Comparison of pulmonary arterial flow phenomena in spiral and Lecompte models by computational fluid dynamics.

机译:通过计算流体动力学比较螺旋模型和Lecompte模型中的肺动脉流动现象。

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OBJECTIVES: The transposed great arteries are simply reversed by means of a conventional arterial switch operation with the Lecompte maneuver without resumption of their spiral relationship. We seek to clarify the functional implications of the spiral relationship of the great arteries by means of mathematic modeling. METHODS: Computational fluid dynamics is used to compare flow phenomena of the spiral and Lecompte (nonspiral) models under various body surface areas. RESULTS: The velocity profile and wall-shear stress distribution are more uniform for the spiral than for the Lecompte model. The pressure drop and power loss ratio are smaller for the spiral than the Lecompte model for all the body surface areas investigated. The power loss ratio increases abruptly starting from 0.43 m2 of body surface area for the Lecompte model. At that specific stage, after arterial switch operation with the Lecompte maneuver, suprapulmonary stenoses occur most frequently. CONCLUSIONS: Reconstructing the great arteries in spiral fashion might be recommended because the blood flow patterns are more streamlined than those of the Lecompte maneuver. Initiation of stenosis might be minimized to some extent.
机译:目的:通过Lecompte动作通过常规的动脉切换操作简单地扭转移位的大动脉,而无需恢复它们的螺旋关系。我们力求通过数学建模来阐明大动脉螺旋关系的功能含义。方法:使用计算流体动力学来比较螺旋体和Lecompte(非螺旋体)模型在不同体表面积下的流动现象。结果:与Lecompte模型相比,螺旋的速度分布和壁剪应力分布更为均匀。对于所有研究的人体表面积,螺旋的压降和功率损耗比均小于Lecompte模型。对于Lecompte模型,从0.43 m2的车身表面积开始,功率损耗比突然增加。在该特定阶段,在使用Lecompte机动进行动脉切换操作后,肺上狭窄症最常发生。结论:可能建议采用螺旋方式重建大动脉,因为其血流模式比Lecompte动作更流线型。狭窄的开始可能在某种程度上被最小化。

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