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Form and function of arterial bifurcations in various parts of the animal body

机译:动物身体各个部位的动脉分叉的形式和功能

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Branching patterns of arterial networks might influence vascular resistance and allow control of blood supply to peripheral tissues. Arterial casts from the brain, kidneys, and earlobes of cats and the chorioallantoic arteries of chick embryos were used for microscopic measurements of arterial geometry. From the measured diameters of parent and two daughter vessels at arterial bifurcations, we calculated the diameter exponent m. By applying the minimum work concept to blood flow through a cylindrical vessel, an optimal value m = 3 has been derived (Murray's cubic law). The measured values of the diameter exponent were 2.59, 2.54, 2.58, and 2.49 for the brain, kidneys, earlobes, and chick embryos, respectively, exhibiting significant deviation from Murray's law. The physiological implication of the m values is discussed here.
机译:动脉网络的分支方式可能会影响血管阻力,并控制对周围组织的血液供应。猫的大脑,肾脏和耳垂以及雏鸡胚胎的绒毛囊性动脉的动脉铸模用于显微测量动脉的几何形状。根据在动脉分叉处测得的母血管和两个子血管的直径,我们计算出直径指数m。通过将最小工作原理应用于通过圆柱血管的血流,得出了最佳值m = 3(Murray立方定律)。大脑,肾脏,耳垂和鸡胚的直径指数的测量值分别为2.59、2.54、2.58和2.49,与Murray定律有显着偏差。在此讨论m值的生理含义。

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