Analyzing and modeling rheological behavior of liver fibrosis in rats using shear viscoelastic moduli利用剪切黏弹性模量对大鼠肝纤维化流变特性进行分析和建模

被引:0
|
作者
Ying Zhu
Yi Zheng
Yuan-yuan Shen
Xin Chen
Xin-yu Zhang
Hao-ming Lin
Yan-rong Guo
Tian-fu Wang
Si-ping Chen
机构
[1] Shenzhen University,National
[2] St. Cloud State University,Regional Key Technology Engineering Laboratory for Medical Ultrasound, Department of Biomedical Engineering, School of Medicine
来源
Journal of Zhejiang University SCIENCE B | 2014年 / 15卷
关键词
Biological mechanics; Rheological properties; Liver fibrosis; Viscoelasticity; Shear modulus; Elasticity; Viscosity; Zener model; Voigt model; Q66; R318.01; R333.4; 生物力学; 流变属性; 肝纤维化; 黏弹性; 剪切模量; 弹性; 黏性; Zener 模型; Voigt 模型;
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学科分类号
摘要
The process of liver fibrosis changes the rheological properties of liver tissue. This study characterizes and compares liver fibrosis stages from F0 to F4 in rats in terms of shear viscoelastic moduli. Here two viscoelastic models, the Zener model and Voigt model, were applied to experimental data of rheometer tests and then values of elasticity and viscosity were estimated for each fibrosis stage. The results demonstrate that moderate fibrosis (≤F2) has a good correlation with liver viscoelasticity. The mean Zener elasticity E1 increases from (0.452±0.094) kPa (F0) to (1.311±0.717) kPa (F2), while the mean Voigt elasticity E increases from (0.618±0.089) kPa (F0) to (1.701±0.844) kPa (F2). The mean Zener viscosity increases from (3.499±0.186) Pa·s (F0) to (4.947±1.811) Pa·s (F2) and the mean Voigt viscosity increases from (3.379±0.316) Pa·s (F0) to (4.625±1.296) Pa·s (F2). Compared with viscosity, the elasticity shows smaller variations at stages F1 and F2 no matter what viscoelastic model is used. Therefore, the estimated elasticity is more effective than viscosity for differentiating the fibrosis stages from F0 to F2.
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页码:375 / 381
页数:6
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    Zhu, Ying
    Zheng, Yi
    Shen, Yuan-yuan
    Chen, Xin
    Zhang, Xin-yu
    Lin, Hao-ming
    Guo, Yan-rong
    Wang, Tian-fu
    Chen, Si-ping
    JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE B, 2014, 15 (04): : 375 - 381