Galach Magda, Ciechanowska Anna, Sabalińska Stanislawa, Waniewski Jacek, Wójcicki Jan, Weryńskis Andrzej
Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, ul. Trojdena 4, 02-109 Warsaw, Poland.
J Artif Organs. 2003;6(1):42-8. doi: 10.1007/s100470300007.
The results of predictions of three mathematical models used to describe the impact of convective flow on dialyzer clearance are presented. These models are based on the ordinary differential equations, which describe changes of solute concentration and solute and fluid flows along the module length. One of the models takes into consideration the existence of the boundary layers on both sides of the membrane wall, by including in the equations two parameters kB and kD, which describe mass transport coefficients in blood and dialysate, respectively. In the second model, the boundary layers are included in one lumped membrane permeability parameter. The diffusive membrane permeability was calculated from pure diffusive clearance, which was taken from experimental results. In the third model, a linear dependence of transmittance coefficient and ultrafiltration flow was proposed. The theoretical results were compared with data obtained in experiments carried out in vitro with four types of high-flux hollow-fiber dialyzers. The comparisons demonstrate that the first two models are of similar accuracy and the third model is not suitable for small solutes.
本文展示了用于描述对流对透析器清除率影响的三种数学模型的预测结果。这些模型基于常微分方程,该方程描述了溶质浓度以及溶质和流体沿透析器长度方向的流动变化。其中一个模型通过在方程中纳入两个参数(k_B)和(k_D)来考虑膜壁两侧边界层的存在,这两个参数分别描述血液和透析液中的质量传递系数。在第二个模型中,边界层被纳入一个总的膜通透性参数中。扩散膜通透性是根据从实验结果中获取的纯扩散清除率计算得出的。在第三个模型中,提出了透过系数与超滤流量之间的线性关系。理论结果与使用四种高通量中空纤维透析器进行的体外实验所获得的数据进行了比较。比较结果表明,前两个模型的准确性相似,而第三个模型不适用于小分子溶质。