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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Analysis of Red Blood Cell Deformation under Fast Shear Flow for Better Estimation of Hemolysis
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Analysis of Red Blood Cell Deformation under Fast Shear Flow for Better Estimation of Hemolysis

机译:快速剪切流下的红细胞变形分析,以更好地估计溶血

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摘要

We examined the deformation behavior of a red blood cell (RBC) in various flow fields to determine whether the extent of RBC deformation is correlated with the shear stress used as a hemolysis index. The RBC model was introduced to a simple shear flow (Couette flow) and to slightly complex flows (unsteady shear flows and stenosed flows). The RBC deformation was assessed by the maximum first principal strain over the RBC membrane and compared with the shear stress. Although the results were consistent under steady Couette flow, this was not the case under unsteady Couette flow or stenosed flow due to the viscoelastic nature of the RBC deformation caused by fluid forces. These results suggest that there is a limitation in accurately estimating the mechanical damage of RBCs solely from a macroscopic flow field, indicating the necessity of taking into account the dynamic deformation of RBCs to provide a better estimation of hemolysis.
机译:我们检查了各种流场中的红细胞(RBC)的变形行为,以确定RBC变形的程度是否与用作溶血指数的剪切应力相关。 RBC模型引入了简单的剪切流(库埃特流)和稍微复杂的流(不稳定的剪切流和狭窄的流)。通过在RBC膜上的最大第一主应变评估RBC变形,并将其与剪切应力进行比较。尽管在稳定的库埃特流量下结果是一致的,但由于流体力引起的RBC变形的粘弹性质,在不稳定的库埃特流量或狭窄的流量下情况并非如此。这些结果表明仅从宏观流场中准确估计红细胞的机械损伤是有局限性的,这表明必须考虑红细胞的动态变形以提供更好的溶血估计。

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