Yeow Y Leong, Wickramasinghe S Ranil, Leong Yee-Kwong, Han Binbing
Department of Chemical Engineering, The University of Melbourne, Melbourne, Victoria, Australia.
Biotechnol Prog. 2002 Sep-Oct;18(5):1068-75. doi: 10.1021/bp025558k.
This paper describes a procedure, based on Tikhonov regularization, for obtaining the shear rate function or equivalently the viscosity function of blood from Couette viscometry data. For data sets that include points where the sample in the annulus is partially sheared the yield stress of blood will also be obtained. For data sets that do not contain partially sheared points, provided the shear stress is sufficiently low, a different method of estimating the yield stress is proposed. Both the shear rate function and yield stress obtained in this investigation are independent of any rheological model of blood. This procedure is applied to a large set of Couette viscometer data taken from the literature. Results in the form of shear rate and viscosity functions and yield stress are presented for a wide range of hematocrits and are compared against those reported by the originators of the data and against independently measured shear properties of blood.
本文描述了一种基于蒂霍诺夫正则化的程序,用于从库埃特粘度计数据中获取血液的剪切速率函数或等效的粘度函数。对于包含环形空间中的样品部分被剪切的点的数据集,还将获得血液的屈服应力。对于不包含部分被剪切点的数据集,只要剪切应力足够低,就提出了一种不同的估计屈服应力的方法。本研究中获得的剪切速率函数和屈服应力均独立于任何血液流变模型。该程序应用于从文献中获取的大量库埃特粘度计数据。给出了一系列血细胞比容下的剪切速率和粘度函数以及屈服应力的结果,并与数据的原始作者报告的结果以及独立测量的血液剪切特性进行了比较。