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On the Significance of Exposure Time in Computational Blood Damage Estimation

机译:论计算血液损伤估算中的暴露时间的重要性

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The reliability of common stress-based power law models for hemolysis estimations in blood pumps is still not satisfying. Stress-based models are based on an instantaneous shear stress measure. Therefore, such models implicitly assume that red blood cells deform immediately due to the action of forces. In contrast, a strain-based model considers the entire deformation history of the cells. By applying a viscoelastic tensor equation for the stress computation, the effect of exposure time is represented as a biophysical phenomenon. Comparisons of stress-based and strain-based hemolysis models in a centrifugal blood pump show very significant differences. Stress peaks with short exposure time contribute to the overall hemolysis in the stress-based model, whereas regions with increased shear and long exposure time are responsible for damage in the strain-based model.
机译:血液泵中血液溶解估计的常用应力的电力法模型的可靠性仍然不满足。基于应力的模型基于瞬时剪切应力测量。因此,这种模型隐含地假设红细胞因力的作用而立即变形。相反,基于应变的模型考虑了细胞的整个变形历史。通过对应力计算施加粘弹性张量方程,曝光时间的效果表示为生物物理现象。离心血泵中基于应力和基于应变的血泡模型的比较显着差异。曝光时间短的应力峰有助于基于应力的模型中的整体溶血,而具有增加的剪切和长曝光时间的区域是对基于应变的模型中的损坏负责。

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