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一种易于使用的红肌氧气供应模型。假设的有效性,对数据误差的敏感性。

An easy-to-use model for O2 supply to red muscle. Validity of assumptions, sensitivity to errors in data.

作者信息

Groebe K

机构信息

Institut für Physiologie und Pathophysiologie, Johannes Gutenberg-Universität Mainz, Germany.

出版信息

Biophys J. 1995 Apr;68(4):1246-69. doi: 10.1016/S0006-3495(95)80300-0.

Abstract

An easy-to-use capillary cylinder model of O2 supply to muscle is presented that considers all those factors that are known to be most important for realistic results: (1) red blood cell (RBC) O2 unloading along the capillary, (2) effects of the particulate nature of blood, (3) free and hemoglobin-facilitated O2 diffusion and reaction kinetics inside RBCs, (4) free and myoglobin-facilitated O2 diffusion inside the muscle cell, and (5) carrier-free region separating RBC and tissue. In a first approach, a highly simplified yet reasonably accurate treatment of the complex three-dimensional oxygen diffusion field in and next to capillaries is employed. As an alternative, a more realistic description using RBC/capillary diffusing capacity has been included. Model development proceeds step by step and is designed to be easily comprehensible for a broad readership. In spite of the number of features accounted for, the model is simple to apply, even for scientists not specialized in the field of modeling. PO2 distributions calculated by the model are in good qualitative agreement with experimental data and with former modelling results. By means of suitable extensions to the model that are also developed it is shown for a wide range of muscle performances that quite generally the following complication may be neglected safely: (1) complexity of O2 diffusion field near capillaries, (2) deviations of capillary domain cross sections from the circular shape, (3) O2 diffusion parallel to the capillary direction, and (4) PO2 dependence of O2 consumption rate. Finally, a sensitivity analysis is performed in which propagation of errors in the input data into the results is investigated. The interpretation of the calculated sensitivities gives insights in the specific dependencies of muscular O2 supply on the various input parameters. Moreover, basic interrelations governing carrier-facilitated diffusional O2 transport to muscle become apparent and are discussed.

摘要

本文提出了一种易于使用的肌肉氧气供应毛细血管圆柱体模型,该模型考虑了所有已知对获得实际结果最为重要的因素:(1)红细胞(RBC)沿毛细血管的氧气卸载;(2)血液颗粒性质的影响;(3)红细胞内自由和血红蛋白促进的氧气扩散及反应动力学;(4)肌肉细胞内自由和肌红蛋白促进的氧气扩散;(5)分隔红细胞和组织的无载体区域。在第一种方法中,采用了对毛细血管内及旁边复杂三维氧气扩散场的高度简化但合理准确的处理。作为替代方案,还纳入了使用红细胞/毛细血管扩散能力的更实际描述。模型开发逐步进行,旨在让广大读者易于理解。尽管考虑了众多特征,但该模型易于应用,即使对于非建模领域的科学家也是如此。由该模型计算出的氧分压分布在定性上与实验数据以及先前的建模结果相符。通过对模型进行适当扩展(这些扩展也已开发)表明,对于广泛的肌肉性能而言,通常可以安全地忽略以下复杂情况:(1)毛细血管附近氧气扩散场的复杂性;(2)毛细血管区域横截面偏离圆形的情况;(3)氧气沿毛细血管方向的扩散;(4)氧耗速率对氧分压的依赖性。最后,进行了敏感性分析,研究了输入数据中的误差向结果的传播。对计算出的敏感性的解释揭示了肌肉氧气供应对各种输入参数的具体依赖性。此外,控制载体促进的氧气向肌肉扩散运输的基本相互关系变得明显并得到了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f99a/1282022/086eb47de247/biophysj00063-0047-a.jpg

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