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Risk Analysis and Detection of Thrombosis by Measurement of Electrical Resistivity of Blood

机译:通过测量血液电阻率血栓形成风险分析与血栓形成

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Monitoring of thrombogenic process is very important in ventricular assistance devices (VADs) used as temporary or permanent measures in patients with advanced heart failure. Currently, there is a lack of a system which can perform a real-time monitoring of thrombogenic activity. Electrical signals vary according to the change in concentration of coagulation factors as well as the distribution of blood cells, and thus have potential to detect the thrombogenic process in an early stage. In the present work, we have made an assessment of an instrumentation system exploiting the electrical properties of blood. The experiments were conducted using bovine blood. Electrical resistance tomography with eight-electrode sensor was used to monitor the spatio-temporal change in electrical resistivity of blood in thrombogenic and non-thrombogenic condition. Under non-thrombogenic condition, the resistivity was uniform across the cross-section and average resistivity monotonically decreased with time before remaining almost flat. In contrary, under thrombogenic condition, there was non-uniform distribution across the cross-section, and average resistivity fluctuated with time.
机译:监测血栓形成过程在心室辅助装置(VAD)中非常重要,用作晚期心力衰竭患者的暂时性或永久措施。目前,缺乏一种系统可以进行对血栓形成活性的实时监测。电信号根据凝血因子浓度的变化而变化,以及血细胞分布,因此有可能在早期阶段检测血栓形成过程。在本工作中,我们对利用血液电性能的仪器系统进行了评估。使用牛血进行实验。使用八个电极传感器的电阻断层扫描用于监测血栓形成和非血栓形成条件的血液电阻率的时空变化。在非血栓形成条件下,在横截面上的电阻率均匀,平均电阻率随着时间的时间而单调地减少,然后仍然持平。相反,在血栓形成条件下,横截面上存在不均匀的分布,并且随着时间的推移平均电阻率波动。

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