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Simulated annealing approach to vascular structure with application to the coronary arteries

机译:模拟退火方法的血管结构及其在冠状动脉中的应用

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摘要

Do the complex processes of angiogenesis during organism development ultimately lead to a near optimal coronary vasculature in the organs of adult mammals? We examine this hypothesis using a powerful and universal method, built on physical and physiological principles, for the determination of globally energetically optimal arterial trees. The method is based on simulated annealing, and can be used to examine arteries in hollow organs with arbitrary tissue geometries. We demonstrate that the approach can generate in silico vasculatures which closely match porcine anatomical data for the coronary arteries on all length scales, and that the optimized arterial trees improve systematically as computational time increases. The method presented here is general, and could in principle be used to examine the arteries of other organs. Potential applications include improvement of medical imaging analysis and the design of vascular trees for artificial organs.
机译:生物体发育过程中复杂的血管生成过程最终会导致成年哺乳动物器官中接近最佳的冠状脉管系统吗?我们使用一种强大且通用的方法(基于物理和生理原理)来检验此假设,以确定全局能量最佳的动脉树。该方法基于模拟退火,可用于检查具有任意组织几何形状的中空器官中的动脉。我们证明了该方法可以生成与所有长度尺度上的冠状动脉的猪解剖数据非常匹配的计算机脉管系统,并且随着计算时间的增加,优化的动脉树系统地改善。这里介绍的方法是通用的,原则上可以用来检查其他器官的动脉。潜在的应用包括医学成像分析的改进和人造器官的血管树的设计。

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