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作为一种估算红细胞聚集的方法,人体血液电导率的时间依赖性变化

Time dependent variation of human blood conductivity as a method for an estimation of RBC aggregation.

作者信息

Antonova Nadia, Riha Pavel, Ivanov Ivan

机构信息

Institute of Mechanics, Bulgarian Academy of Sciences, Sofia, Bulgaria.

出版信息

Clin Hemorheol Microcirc. 2008;39(1-4):69-78.

Abstract

Time variation of whole human blood conductivity and shear stresses were investigated at rectangular and trapezium-shaped Couette viscometric flow under electric field of 2 kHz. The kinetics of conductivity signals were recorded both under transient flow and after the complete stoppage of shearing at shear rates from 0.94 to 94.5 s(-1) and temperatures T=25 degrees C and 37 degrees C. Contraves Low Shear 30 rotational viscometer as a base unit and a concurrent measuring system, including a device, developed by the conductometric method with a software for measurement of conductivity of biological fluids (data acquisition system), previously described (IFMBE Proceedings Series, Vol. 11, 2005, pp. 4247-4252; Clin. Hemorheol. Microcirc. 35(1/2) (2006), 19-29), were used for the experiments. The obtained experimental relationships show that the human blood conductivity is time, shear rate, hematocrit and temperature dependent under transient flow. It is also dependent on the regime of the applied shear rates. Non-linear curve approximation of the growth and relaxation curves is done. The results show that valuable information could be received about the kinetics of "rouleaux formation" and the time dependences of the blood conductivity follow the structural transformations of RBC aggregates during the aggregation-disaggregation processes. The results suggest that this technique may be used to clarify the mechanism of dynamics of RBC aggregates.

摘要

在2 kHz电场下,研究了矩形和梯形库埃特粘度计流动中全血电导率和剪切应力随时间的变化。在剪切速率为0.94至94.5 s⁻¹、温度T = 25℃和37℃的情况下,记录了瞬态流动期间以及剪切完全停止后的电导率信号动力学。以Contraves Low Shear 30旋转粘度计作为基本单元,并使用一个同时测量系统,该系统包括一个通过电导法开发的设备以及用于测量生物流体电导率的软件(数据采集系统),该系统已在之前描述过(《国际医学与生物工程联合会会议录系列》,第11卷,2005年,第4247 - 4252页;《临床血液流变学与微循环》,35(1/2) (2006),第19 - 29页),用于进行实验。所获得的实验关系表明,在瞬态流动下,人体血液电导率与时间、剪切速率、血细胞比容和温度有关。它还取决于所施加剪切速率的状态。对增长和松弛曲线进行了非线性曲线拟合。结果表明,可以获得有关“缗钱状聚集形成”动力学的有价值信息,并且血液电导率的时间依赖性遵循红细胞聚集物在聚集 - 解聚过程中的结构转变。结果表明,该技术可用于阐明红细胞聚集物的动力学机制。

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