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血液缓冲系统“代谢指标”的理论分析

Theoretical analysis of "metabolic indices" of blood buffer system.

作者信息

Sato T, Ikeda N, Tsuruta H, Shirataka M

出版信息

Am J Physiol. 1983 Apr;244(4):R492-9. doi: 10.1152/ajpregu.1983.244.4.R492.

Abstract

The well-known base excess (BE) and buffer base (BB) curves of Siggaard-Andersen's nomogram are based on their empirical finding that the blood buffer lines in the pH-log PCO2 coordinates with the same BE (or BB) always pass through a single point irrespective of the hemoglobin concentration. We have analytically derived the BE and BB curves on the assumption of a two-compartmental model of blood buffer system comprised of plasma and red blood cells. These hyperbolic functions of BE and BB curves fitted the Siggaard-Andersen's observation very well. The simple formulas derived from the buffer equation with the parameters obtained on the least-square basis were shown to estimate "metabolic indices" of blood as accurately as the computer reading of the nomographic curves. These results seem to indicate that the buffer equation based on the two-compartmental model describes the acid-base status of blood satisfactorily, and that it can entirely replace the Siggaard-Andersen's nomogram.

摘要

西格gaard - 安德森列线图中著名的碱剩余(BE)和缓冲碱(BB)曲线是基于他们的经验发现,即在pH - log PCO2坐标中,具有相同BE(或BB)的血液缓冲线无论血红蛋白浓度如何,总是通过一个单点。我们在假设血液缓冲系统由血浆和红细胞组成的双室模型的基础上,通过分析得出了BE和BB曲线。这些BE和BB曲线的双曲线函数与西格gaard - 安德森的观察结果非常吻合。从缓冲方程推导出来的简单公式,利用最小二乘法得到的参数,被证明能够像列线图曲线的计算机读数一样准确地估计血液的“代谢指标”。这些结果似乎表明,基于双室模型的缓冲方程能够令人满意地描述血液的酸碱状态,并且它可以完全取代西格gaard - 安德森列线图。

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