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小动脉通过扩散以及对流为毛细血管供应氧气。

Arterioles supply oxygen to capillaries by diffusion as well as by convection.

作者信息

Ellsworth M L, Pittman R N

机构信息

Department of Physiology, Medical College of Virginia, Richmond 23298-0551.

出版信息

Am J Physiol. 1990 Apr;258(4 Pt 2):H1240-3. doi: 10.1152/ajpheart.1990.258.4.H1240.

Abstract

In the early part of this century, August Krogh proposed a model of oxygen transport in capillaries that assumes that all oxygen is delivered to the capillaries by convection from small terminal arterioles and lost from these capillaries by diffusion. This model and its consequences have been used extensively to interpret whole organ oxygen transport data in terms of diffusion between capillaries and tissues and to relate changes in microvascular hemodynamics to alterations in oxygen transport. We evaluated the appropriateness of such extrapolation by measuring oxygen saturation at discrete locations along the lengths of individual capillaries in the hamster cheek pouch retractor muscle. Our results indicate that the amount of oxygen lost from individual capillaries can be markedly affected by the presence of larger microvessels that frequently cross the capillary path. These larger vessels act either as a diffusive supply of oxygen for the red blood cells within the capillary or as an additional sink for the oxygen depending on the direction of the oxygen tension gradient. This transfer of oxygen between larger microvessels and capillaries attenuates the importance of capillary hemodynamics in oxygen exchange. Therefore, conclusions about local oxygen exchange that utilize only hemodynamic data from whole organ or microvascular experiments and the Krogh model will generally be invalid and should be viewed with caution.

摘要

在本世纪初,奥古斯特·克罗格提出了一种毛细血管中氧气运输的模型,该模型假定所有氧气都是通过小终末小动脉的对流输送到毛细血管,并通过扩散从这些毛细血管中流失。这个模型及其推论已被广泛用于根据毛细血管与组织之间的扩散来解释整个器官的氧气运输数据,并将微血管血流动力学的变化与氧气运输的改变联系起来。我们通过测量仓鼠颊囊牵张肌中单个毛细血管长度上离散位置的氧饱和度,评估了这种外推法的适用性。我们的结果表明,单个毛细血管中氧气的流失量会受到经常横穿毛细血管路径的较大微血管的显著影响。这些较大的血管根据氧分压梯度的方向,要么作为毛细血管内红细胞的氧气扩散供应源,要么作为氧气的额外汇。较大微血管与毛细血管之间的这种氧气转移削弱了毛细血管血流动力学在氧气交换中的重要性。因此,仅利用来自整个器官或微血管实验的血流动力学数据以及克罗格模型得出的关于局部氧气交换的结论通常是无效的,应谨慎看待。

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