Perelson A S, Wiegel F W
Biophys J. 1982 Feb;37(2):515-22. doi: 10.1016/S0006-3495(82)84697-3.
Rouleaux are formed by the aggregation of red blood cells in the presence of macromolecules that bridge the membranes of adherent erythrocytes. We compute the size and degree of branching of rouleaux for macroscopic systems in thermal equilibrium in the absence of fluid flow. Using techniques from statistical mechanics, analytical expressions are derived for (a) the average number of rouleaux consisting of n cells and having m branch points; (b) the average number of cells per rouleau; (c) the average number of branch points per rouleau; and (d) the number of rouleaux with n cells, n = 1, 2, ..., in a system containing a total of N cells. We also present the results of numerical evaluations to establish the validity of asymptotic expressions that simplify our formal analytic results.
红细胞缗钱状聚集是在大分子存在的情况下发生的,这些大分子桥接了黏附红细胞的膜。我们计算了在没有流体流动的热平衡宏观系统中缗钱状聚集物的大小和分支程度。利用统计力学技术,推导了以下各项的解析表达式:(a) 由n个细胞组成且有m个分支点的缗钱状聚集物的平均数量;(b) 每个缗钱状聚集物的平均细胞数量;(c) 每个缗钱状聚集物的平均分支点数;以及(d) 在一个总共包含N个细胞的系统中,具有n个细胞(n = 1, 2, ...)的缗钱状聚集物的数量。我们还给出了数值评估结果,以确定简化我们形式分析结果的渐近表达式的有效性。