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Introduction of a new model for time-continuous and non-contact investigations of in-vitro thrombolysis under physiological flow conditions

机译:引入新模型用于在生理流动条件下进行体外溶栓的时间连续和非接触式研究

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Background Thrombolysis is a dynamic and time-dependent process influenced by the haemodynamic conditions. Currently there is no model that allows for time-continuous, non-contact measurements under physiological flow conditions. The aim of this work was to introduce such a model. Methods The model is based on a computer-controlled pump providing variable constant or pulsatile flows in a tube system filled with blood substitute. Clots can be fixed in a custom-built clot carrier within the tube system. The pressure decline at the clot carrier is measured as a novel way to measure lysis of the clot. With different experiments the hydrodynamic properties and reliability of the model were analyzed. Finally, the lysis rate of clots generated from human platelet rich plasma (PRP) was measured during a one hour combined application of diagnostic ultrasound (2 MHz, 0.179 W/cm2) and a thrombolytic agent (rt-PA) as it is commonly used for clinical sonothrombolysis treatments. Results All hydrodynamic parameters can be adjusted and measured with high accuracy. First experiments with sonothrombolysis demonstrated the feasibility of the model despite low lysis rates. Conclusions The model allows to adjust accurately all hydrodynamic parameters affecting thrombolysis under physiological flow conditions and for non-contact, time-continuous measurements. Low lysis rates of first sonothrombolysis experiments are primarily attributable to the high stability of the used PRP-clots.
机译:背景溶栓是受血流动力学条件影响的动态且随时间变化的过程。当前,没有模型允许在生理流动条件下进行时间连续的非接触式测量。这项工作的目的是引入这样的模型。方法该模型基于计算机控制的泵,该泵在充满血液替代品的试管系统中提供可变的恒定或脉动流量。凝块可以固定在试管系统内的定制凝块架中。测量凝块载体上的压力下降是测量凝块溶解的新方法。通过不同的实验,分析了模型的水动力特性和可靠性。最后,在诊断超声(2 MHz,0.179 W / cm 2 )和溶栓剂(rt)联合应用一小时的过程中,测量了富含人血小板的血浆(PRP)产生的血块的裂解速率。 -PA),因为它通常用于临床声溶栓治疗。结果所有流体动力学参数均可以高精度调整和测量。尽管溶胞率低,但最初的声波血栓溶解实验证明了该模型的可行性。结论该模型允许在生理流动条件下以及非接触,时间连续的测量中准确调整影响溶栓的所有流体动力学参数。首次声波溶栓实验的低裂解率主要归因于所用PRP凝块的高稳定性。

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