粘弹性
流变学
光学镊子
材料科学
微流变学
显微镜
弹性模量
光学显微镜
剪切模量
光学
显微术
弹性(物理)
显微镜
缩放比例
生物系统
复合材料
物理
数学
几何学
扫描电子显微镜
细胞生物学
生物
作者
Lucas Barreto,Fran Gomez,Pedro S. Lourenço,Douglas G. Freitas,Juliana Coatrini Soares,Clemilson Berto-Júnior,Ubirajara Agero,Nathan B. Viana,Bruno Pontes
摘要
The viscoelastic properties of erythrocytes have been investigated by a range of techniques. However, the reported experimental data vary. This is not only attributed to the normal variability of cells, but also to the differences in methods and models of cell response. Here, an integrated protocol using optical tweezers and defocusing microscopy is employed to obtain the rheological features of red blood cells in the frequency range of 1 Hz to 35 Hz. While optical tweezers are utilized to measure the erythrocyte-complex elastic constant, defocusing microscopy is able to obtain the cell height profile, volume, and its form factor a parameter that allows conversion of complex elastic constant into complex shear modulus. Moreover, applying a soft glassy rheology model, the scaling exponent for both moduli can be obtained. The developed methodology allows to explore the mechanical behavior of red blood cells, characterizing their viscoelastic parameters, obtained under well-defined experimental conditions, for several physiological and pathological conditions.
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