首页> 外文期刊>The Veterinary Journal >Calculation of bovine haemoglobin oxygen saturation by algorithms integrating age, haemoglobin content, blood pH, partial pressures of oxygen and carbon dioxide in the blood, and temperature
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Calculation of bovine haemoglobin oxygen saturation by algorithms integrating age, haemoglobin content, blood pH, partial pressures of oxygen and carbon dioxide in the blood, and temperature

机译:通过对年龄,血红蛋白含量,血液pH,血液中氧气和二氧化碳的分压以及温度进行积分的算法来计算牛血红蛋白的氧饱和度

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摘要

In human and veterinary medicine, arterial and venous haemoglobin oxygen saturations are often used to estimate the severity of a disease and to guide therapeutic decisions. In veterinary medicine, haemoglobin oxygen saturation (SO2) is usually calculated using a blood gas analyser and algorithms developed for humans. It is possible, therefore, that the values obtained in animals may be distorted, particularly in animals with a high haemoglobin oxygen affinity, like young calves. In order to verify this hypothesis, we compared the arterial (SaO(2)) and venous (SvO(2)) haemoglobin oxygen saturations calculated using three different algorithms, and the oxygen exchange fraction (OEF) at the tissue level, which is the degree of haemoglobin desaturation between arterial and venous blood (SaO(2)-SvO(2)), with the values obtained from the whole bovine oxygen equilibrium curve (OEC) determined by a reference method.
机译:在人类和兽医学中,经常使用动脉和静脉血红蛋白氧饱和度来估计疾病的严重程度并指导治疗决策。在兽药中,血红蛋白氧饱和度(SO2)通常是使用血气分析仪和为人类开发的算法来计算的。因此,在动物中获得的值可能会失真,特别是在血红蛋白氧亲和力较高的动物(如小牛)中。为了验证此假设,我们比较了使用三种不同算法计算出的动脉血(SaO(2))和静脉血(SvO(2))血红蛋白的氧饱和度,以及组织水平的氧交换分数(OEF)。动脉和静脉血液之间的血红蛋白饱和度(SaO(2)-SvO(2))的程度,其值通过参考方法从整个牛氧平衡曲线(OEC)获得。

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