离体血管动态响应和生物力学特性的评价

Mirko Rosic , Suzana Pantovic , Vladimir Rankovic , Zdravko Obradovic , Nenad Filipovic , Milos Kojic
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引用次数: 9

摘要

在这项研究中,我们提出了一个实验和数学模型,以精确评估在血压突然变化下孤立血管的动态反应。在各种研究中,通常只考虑血管动态响应的时间间隔内的终点,或所谓的过程的“交替稳定状态”。这些研究并没有提供过程变量如何在这些交替的稳定状态之间变化的见解。用离体血管(大鼠腹主动脉)来确定如何用数学参数详细定量地描述过程动力学。本研究中提出的实验模型和数学程序精确地(在高灵敏度水平上)描述了当血管出口发生血压突变时,在交替稳定状态之间的压力和直径变化的时间历史。同时,利用实验模型和数学程序确定了l -精氨酸作用下应力-应变规律的变化。该实验设计和数学模型可用于评价药物、电刺激等不同刺激下离体血管的动态反应。
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Evaluation of dynamic response and biomechanical properties of isolated blood vessels

In this study we present the experimental and mathematical model for a precise assessment of isolated blood vessels dynamic response under a sudden change of blood pressure. Only the end points within the time interval of the considered dynamic response of the blood vessel, or so-called “alternate steady states” of the processes, were usually considered in various studies. These studies do not provide an insight how the process variables change between these alternate steady states. Isolated blood vessels (rat abdominal aorta) were used to determine how the process dynamics can be described in detailed quantitative terms by mathematical parameters. The experimental model and mathematical procedures presented in this study describe precisely (at a high sensitivity level) the time history of the pressure and the diameter change in between alternate steady states, when an abrupt change of blood pressure occurs at the vessel outlet. Also, the experimental model and mathematical procedures were used to determine changes in the stress–strain law, caused by the action of L-arginine. The presented experimental design and mathematical model can be used for assessment of isolated blood vessel dynamic responses under different stimuli, such as drug effects, electrostimulation etc.

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