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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Species-specific pulmonary arterial asymmetry determines species differences in regional pulmonary perfusion.
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Species-specific pulmonary arterial asymmetry determines species differences in regional pulmonary perfusion.

机译:特定于物种的肺动脉不对称性决定了区域肺灌注中的物种差异。

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摘要

The functional significance of differences in pulmonary vascular branching and diameter asymmetry between the human and quadruped lung has not previously been addressed. To evaluate the contribution of branching asymmetry to observable species differences in blood flow gradients, computed distributions of blood flow were compared in structure-based models of the human and ovine pulmonary arteries. The models were derived using a combination of computed tomography and a volume-filling algorithm. Pressure, flow, and deformed vessel diameter were calculated in both species models using equations representing conservation of mass and momentum, and a pressure-diameter relationship. The major difference between the human and ovine results was the presence of a large region of "zone 4" flow and higher mean flows in the central region of the ovine lung compared to that in the human. Heterogeneity in tissue perfusion and the contribution of gravity were similar in both species models; however, the gravitationally directed gradients of perfusion in the human and ovine models were different and each consistent with human and quadruped measurements, respectively. The results suggest that measured species differences in pulmonary perfusion gradients are largely determined by differences in branching asymmetry.
机译:先前尚未解决人与四足动物肺之间肺血管分支和直径不对称差异的功能意义。为了评估分支不对称对血流梯度中可观察到的物种差异的贡献,在基于结构的人和羊肺动脉模型中比较了血流的计算分布。这些模型是使用计算机断层扫描和体积填充算法的组合得出的。在两个物种模型中使用代表质量和动量守恒以及压力-直径关系的方程式,计算了压力,流量和变形的容器直径。人类和绵羊的结果之间的主要区别是,与人类相比,绵羊肺中部存在较大的“ 4区”流量区域和较高的平均流量。在两种物种模型中,组织灌注的异质性和重力的贡献相似。然而,在人类和绵羊模型中,在重力作用下的灌注梯度是不同的,并且分别与人类和四足动物的测量结果一致。结果表明,肺灌注梯度中测得的物种差异在很大程度上取决于分支不对称性的差异。

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