Levin S W, Levin R L, Solomon A K, Pandiscio A, Kirkwood D H
J Biochem Biophys Methods. 1980 Nov;3(5):255-72. doi: 10.1016/0165-022x(80)90007-x.
An improved stop-flow apparatus has been designed and constructed to measure the permeability characteristics of human red cells, which can be inferred from the time course of red cell volume changes following a sudden change in cellular environment produced by a raped mixing device. The improved apparatus is directly coupled to a computer which automates the subtraction and averaging procedures that have been developed to minimize the noise generated in the system by the cessation of red cell forward motion when the flow is suddenly stopped. Real time data acquisition also makes it possible to increase the number of data points by an order of magnitude, thus improving accuracy significantly. The apparatus has been tested by measurements of the human red cell hydraulic permeability coefficient. Data are presented to validate the subtraction procedure. Experiments have also been carried out on red cell ghosts which indicate that the hydraulic conductivity of the ghost is similar to that of the undisturbed red cell.
设计并构建了一种改进的停流装置,用于测量人类红细胞的渗透特性,该特性可从快速混合装置使细胞环境突然变化后红细胞体积变化的时间进程中推断出来。改进后的装置直接与计算机相连,计算机可自动执行减法和平均程序,这些程序旨在将流动突然停止时红细胞向前运动停止在系统中产生的噪声降至最低。实时数据采集还使得数据点数量能够增加一个数量级,从而显著提高了准确性。该装置已通过测量人类红细胞水力渗透系数进行了测试。给出了验证减法程序的数据。还对红细胞血影进行了实验,结果表明血影的水力传导率与未受干扰的红细胞相似。