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血管运动对毛细血管网络氧输送影响的计算研究。

A computational study of the effect of vasomotion on oxygen transport from capillary networks.

作者信息

Goldman D, Popel A S

机构信息

Department of Biomedical Engineering and Center for Computational Medicine and Biology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

J Theor Biol. 2001 Mar 21;209(2):189-99. doi: 10.1006/jtbi.2000.2254.

Abstract

The objective of this study was to investigate the effect of arteriolar vasomotion on oxygen transport from capillary networks. A computational model was used to calculate blood flow and oxygen transport from a simulated network of striated muscle capillaries. For varying tissue oxygen consumption rates, the importance of the frequency and amplitude of vasomotion-induced blood flow oscillations was studied. The effect of myoglobin on oxygen delivery during vasomotion was also examined. In the absence of myoglobin, it was found that when consumption is high enough to produce regions of hypoxia under steady flow conditions, vasomotion-induced flow oscillations can significantly increase tissue oxygenation and decrease oxygen transport heterogeneity. The largest effect was seen for low-frequency, high-amplitude oscillations (1.5-3 cycles min(-1), 90% of steady-state velocity). By contrast, at physiological tissue myoglobin concentrations, vasomotion did not improve tissue oxygenation. This unexpected finding is due to the buffering effect of myoglobin, suggesting that in highly aerobic muscles short-term storage of oxygen is more important than the possibility of increasing transport through vasomotion.

摘要

本研究的目的是调查小动脉血管运动对从毛细血管网络进行氧运输的影响。使用一个计算模型来计算来自模拟的横纹肌毛细血管网络的血流和氧运输。对于不同的组织氧消耗率,研究了血管运动诱导的血流振荡的频率和幅度的重要性。还检查了肌红蛋白在血管运动期间对氧输送的影响。在没有肌红蛋白的情况下,发现当消耗足够高以至于在稳定血流条件下产生缺氧区域时,血管运动诱导的血流振荡可显著增加组织氧合并降低氧运输异质性。对于低频、高幅度振荡(1.5 - 3个周期·分钟⁻¹,稳态速度的90%)观察到最大的效果。相比之下,在生理组织肌红蛋白浓度下,血管运动并未改善组织氧合。这一意外发现归因于肌红蛋白的缓冲作用,表明在高需氧肌肉中,氧的短期储存比通过血管运动增加运输的可能性更重要。

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