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Blood flow shapes intravascular pillar geometry in the chick chorioallantoic membrane

机译:血流塑造鸡绒膜尿囊膜中血管内柱的几何形状

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The relative contribution of blood flow to vessel structure remains a fundamental question in biology. To define the influence of intravascular flow fields, we studied tissue islands--here defined as intravascular pillars--in the chick chorioallantoic membrane. Pillars comprised 0.02 to 0.5% of the vascular system in 2-dimensional projection and were predominantly observed at vessel bifurcations. The bifurcation angle was generally inversely related to the length of the pillar (R = -0.47, P .05). 3-dimensional computational flow simulations indicated that the intravascular pillars were located in regions of low shear stress. Both wide-angle and acute-angle models mapped the pillars to regions with shear less than 1 dyn/cm2. Further, flow modeling indicated that the pillars were spatially constrained by regions of higher wall shear stress. Finally, the shear maps indicated that the development of new pillars was limited to regions of low shear stress. We conclude that mechanical forces produced by blood flow have both a limiting and permissive influence on pillar development in the chick chorioallantoic membrane.
机译:血流对血管结构的相对贡献仍然是生物学中的一个基本问题。为了定义血管内流场的影响,我们研究了鸡绒膜尿囊膜中的组织岛(此处定义为血管内支柱)。在二维投影中,柱子占血管系统的0.02%至0.5%,并且主要在血管分叉处观察到。分叉角通常与支柱的长度成反比(R = -0.47,P .05)。 3维计算流动模拟表明,血管内柱位于低切应力区域。广角模型和锐角模型都将支柱映射到剪切力小于1 dyn / cm 2 的区域。此外,流动建模表明,柱在空间上受到较高壁切应力区域的约束。最后,剪切图表明,新支柱的发展仅限于低剪切应力区域。我们得出的结论是,由血流产生的机械力对鸡绒膜尿囊膜的支柱发育既有限制作用,又有允许作用。

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