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Whole blood of mammalian species in the oscillating shear field: influence of erythrocyte aggregation

机译:振荡剪切场中哺乳动物种类的全血:红细胞聚集的影响

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This is the rheologicalanalysis of mammalian blood of species with a high (horse), medium (man), and low (sheep) erythrocyte (RBC) aggregability by small amplitude oscillation technique. Amplitude and frequency sweep tests in linear mode were performed with blood from healthy adult volunteers, horses, and sheep in CSS-mode. Blood samples were hematocrit (HCT) adjusted (40%, 50%, 60%) and tested at 7°C, 22°C, and 37°C. Storage modulus (G') increased with HCT and decreased with temperature in each species, but the gradient of this increase was species-specific. The lower dependency of G' on the equine HCT value could be a benefit during physical performance when high numbers of RBCs are released from the spleen in the horse. In sheep, a HCT-threshold had to be overcome before elasticity of the blood sample could be measured, suggesting that the cohesive forces between RBCs, and between RBCs and plasma molecules must be very low. The frequencies for tests under quasi-staticcondition were in a narrow range around the physiologic heart rate of the species. In horse, time-dependent influences concurred at frequencies lower than 3 rad.s"1 probably due to sedimentation of RBC aggregates. In conclusion, elasticity of blood depends not only on the amount of blood cells, but also on their mechanical and functional properties.
机译:这是通过小幅度振荡技术具有高(马),中(人)和低(羊)红细胞(RBC)可聚合的物种哺乳动物血液分析。用来自CSS模式的健康成人志愿者,马匹和绵羊的血液进行线性模式的幅度和频率扫描测试。血液样品是血细胞比容(HCT)调节(40%,50%,60%)并在7℃,22℃和37℃下测试。储存模量(g')随HCT增加并随着每种物种的温度降低,但这种增加的梯度是特异性的。 G'对马HCT值的较低依赖性可能是在从马中的脾脏释放的高位RBC时物理性能期间的益处。在绵羊中,在测量血液样品的弹性之前必须克服HCT阈值,表明RBC在RBC和RBC和血浆分子之间的内聚力必须非常低。在Quasi-staticcondition下测试的频率围绕物种的生理心率率狭窄。在马的情况下,在低于3 rad的频率上同时调节的时间依赖性影响“1可能是由于RBC聚集体的沉降。总之,血液的弹性不仅取决于血细胞的量,还取决于其机械和功能性。

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