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Viscoelasticity of packed erythrocyte suspensions subjected to low amplitude oscillatory deformation.

机译:填充的红细胞悬液的粘弹性经历低振幅振荡变形。

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摘要

Concentrated adult erythrocyte suspensions were subjected to low amplitude oscillatory shear in a Weissenberg rheogoniometer equipped with a cone-and-plate assembly. The dynamic viscoelastic properties of the suspension were measured over a broad range of frequency by a numerical solution that accounted for fluid inertia. Variation of shear amplitude and cell volume percent, and comparison of buffered saline, plasma, and dextran as suspending media showed that the cellular elements had undergone small bending and shearing deformations. Studies of normal adult erythrocytes, hypotonically swollen cells, temperature-altered cells, and erythrocyte ghosts suggested that the method was evaluating membrane material properties. The normal membrane was found to exhibit a shear rate dependent elastic modulus that increased by more than a factor of 20 over a frequency range from 0.0076 Hz to 60 Hz. The membrane viscosity showed a substantial drop with frequency indicative of a frequency thinning phenomenon. At high frequency of deformation the viscous response of normal erythrocytes was no longer indicative of a membrane property due to the dominant influence of the internal hemoglobin solution. The studies generally supported the ability of the method to quantify relative membrane material properties and detect changes in membrane structure.
机译:将浓缩的成人红细胞悬液在配有锥板组件的Weissenberg流变仪中进行低振幅振荡剪切。通过考虑流体惯性的数值解,在很宽的频率范围内测量了悬浮液的动态粘弹性质。剪切振幅和细胞体积百分比的变化以及缓冲液,血浆和右旋糖酐作为悬浮介质的比较表明,细胞元件经历了小的弯曲和剪切变形。对正常成人红细胞,低渗性肿胀细胞,温度改变的细胞和红细胞鬼影的研究表明,该方法正在评估膜材料的性能。发现正常膜在0.0076 Hz至60 Hz的频率范围内显示出与剪切速率有关的弹性模量,其增加了20倍以上。膜粘度随频率显着下降,表明频率变稀现象。在高频率变形下,由于内部血红蛋白溶液的主要影响,正常红细胞的粘性反应不再指示膜的性质。这些研究通常支持该方法量化相对膜材料特性并检测膜结构变化的能力。

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