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首页> 外文期刊>Experimental Physiology >Whole blood viscosity, plasma viscosity and erythrocyte aggregation in nine mammalian species: reference values and comparison of data.
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Whole blood viscosity, plasma viscosity and erythrocyte aggregation in nine mammalian species: reference values and comparison of data.

机译:9种哺乳动物的全血粘度,血浆粘度和红细胞聚集:参考值和数据比较。

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摘要

In this study species-specific values for whole blood viscosity (WBV), plasma viscosity (PV) and erythrocyte aggregation (EA) were determined in a total of 360 animals. We used 40 individual adult animals of nine mammalian species: horse, pig, dog, cat, rat, cattle, sheep, rabbit and mouse. WBV measurements were carried out using a LS30 viscometer, PV was measured using OCR-D and EA was measured using a Myrenne aggregometer and the LS30 (aggregation index at low shear rate). At low shear rates (0.7 s(-1) and 2.4 s(-1)) haematocrit (Hct)-standardized (40 % Hct) samples showed a higher value of WBV and EA in horse, pig, dog and cat. In cattle, sheep, rabbit and mouse, EA and WBV were markedly decreased and EA was almost undetectable, although the plasma fibrinogen concentration was higher in these animals. Rats showed the highest WBV at low shear rate in native blood and WBV was not different from horse in Hct-standardized blood; however, EA was very low in the rat, a result that might be explained by mechanical or geometrical properties of the red blood cell. EA correlated with the plasma protein concentration in each species except dog and mouse. In horse, cattle and pig, EA correlated with the plasma fibrinogen concentration. At high shear rate (94 s(-1)), WBV was higher in cattle than cat and rat, and dog had higher values than horse, suggesting specific interspecies differences depending on low shear and high shear values of WBV, as a result of mechanisms that influence RBC flexibility. PV was highest in cattle and lowest in rabbit and mouse and did not correlate with WBV. Haemorheological parameters differed between the species. Each species has its own rheological fingerprint. The physiological significance of these variations among mammalian species has not yet been established. Viscosity contributes to endothelial cell shear stress. While haemorheological parameters differ across the species it may be postulated that factors influencing flow-mediated endothelial cell signal transduction are different among the species. Experimental Physiology (2003) 88.3, 431-440.
机译:在这项研究中,确定了总共360只动物的全血粘度(WBV),血浆粘度(PV)和红细胞聚集(EA)的物种特异性值。我们使用了9种哺乳动物的40种成年个体:马,猪,狗,猫,大鼠,牛,绵羊,兔和小鼠。使用LS30粘度计进行WBV测量,使用OCR-D测量PV,使用Myrenne凝集计和LS30(低剪切速率下的聚集指数)测量EA。在低剪切速率(0.7 s(-1)和2.4 s(-1))下,血细胞比容(Hct)标准化(40%Hct)样品在马,猪,狗和猫中显示出更高的WBV和EA值。在牛,绵羊,兔和小鼠中,尽管这些动物的血浆纤维蛋白原浓度较高,但EA和WBV明显降低,而EA几乎未检出。大鼠在自然血液中在低剪切速率下显示出最高的WBV,而在Hct标准化血液中,WBV与马没有差异。然而,大鼠的EA含量很低,其结果可能是由红细胞的机械或几何特性引起的。 EA与除狗和小鼠以外的每个物种的血浆蛋白浓度相关。在马,牛和猪中,EA与血浆纤维蛋白原浓度相关。在高剪切速率下(94 s(-1)),牛的WBV高于猫和大鼠,而狗的WBV高于马,这表明特定的种间差异取决于WBV的低剪切和高剪切值。影响RBC灵活性的机制。 PV在牛中最高,在兔子和小鼠中最低,并且与WBV不相关。物种之间的血液流变学参数有所不同。每个物种都有自己的流变指纹。这些变异在哺乳动物中的生理意义尚未确定。粘度有助于内皮细胞的剪切应力。尽管物种的血液流变学参数不同,但可以推测影响血流介导的内皮细胞信号转导的因素在物种之间是不同的。实验生理学(2003)88.3,431-440。

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