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正常血液与糖尿病血液在不同流变条件下的聚集和凝血评估的电分析

Electrical Analysis Of Normal And Diabetic Blood For Evaluation Of Aggregation And Coagulation Under Different Rheological Conditions.

作者信息

Elblbesy Mohamed A

机构信息

Department of Medical Biophysics, Medical Research Institute, Alexandria University, Alexandria, Egypt.

出版信息

Med Devices (Auckl). 2019 Oct 18;12:435-442. doi: 10.2147/MDER.S223794. eCollection 2019.

Abstract

INTRODUCTION

Erythrocyte aggregation and blood coagulation are of great interest and are still under investigation by many researchers. Erythrocytes have a direct effect on hemorheological properties. Real-time in vitro studies on blood coagulation and aggregation provide a chance to understand their mechanisms in normal and pathological conditions. Additionally, this method offers control over the physical and chemical conditions during the study.

OBJECTIVE

The present study introduced a simple in vitro technique to study blood aggregation and coagulation under controlled conditions.

METHODS

The technique used in this study is based on the measurement of the electrical properties of blood. A simple flow chamber was made from two cylinders with a gap between them. The outer cylinder remains stationary, and the inner cylinder rotates about its axis. The inner cylinder velocity is controlled by a stepper motor. Blood samples are introduced in the gap between the two cylinders. Capacitance and impedance of blood samples were recorded by two electrodes attached to the outer cylinders and in direct contact with blood.

RESULTS

Quantitative parameters were extracted from the capacitance and impedance time courses. These parameters were used to describe the aggregation and coagulation processes under different shear rates. Strong correlations between the aggregation index and shear rate were found for normal and diabetic blood samples. Additionally, strong negative correlations of coagulation time were found for normal and diabetic blood samples. In conclusion, the electrical analysis of blood reflects well the interactions between internal blood contents.

CONCLUSION

The parameters extracted from this technique can be used in the quantitative description of hemorheological processes under different physical conditions.

摘要

引言

红细胞聚集和血液凝固备受关注,许多研究人员仍在对其进行研究。红细胞对血液流变学特性有直接影响。对血液凝固和聚集进行实时体外研究为了解其在正常和病理条件下的机制提供了机会。此外,该方法能够在研究过程中控制物理和化学条件。

目的

本研究介绍了一种简单的体外技术,用于在可控条件下研究血液聚集和凝固。

方法

本研究中使用的技术基于对血液电学特性的测量。一个简单的流动腔由两个圆柱体组成,它们之间有一个间隙。外圆柱体保持静止,内圆柱体绕其轴旋转。内圆柱体的速度由步进电机控制。将血液样本引入两个圆柱体之间的间隙中。通过连接到外圆柱体并与血液直接接触的两个电极记录血液样本的电容和阻抗。

结果

从电容和阻抗随时间变化的过程中提取了定量参数。这些参数用于描述不同剪切速率下的聚集和凝固过程。在正常和糖尿病血液样本中,聚集指数与剪切速率之间存在强相关性。此外,在正常和糖尿病血液样本中,凝固时间存在强负相关性。总之,血液的电学分析很好地反映了血液内部成分之间的相互作用。

结论

从该技术中提取的参数可用于定量描述不同物理条件下的血液流变学过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/933b/6805249/296bdf9efd04/MDER-12-435-g0001.jpg

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