Abdi M, Navidbakhsh M, Razmkon A
School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran; Tissue Engineering and Biological Systems Research Laboratory, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran.
Department of Neurosurgery, Shiraz University of Medical Sciences, Shiraz, Iran.
J Biomed Phys Eng. 2016 Mar 1;6(1):33-40. eCollection 2016 Mar.
Numerical modeling of biological structures would be very helpful tool to analyze hundreds of human body phenomena and also diseases diagnosis. One physiologic phenomenon is blood circulatory system and heart hemodynamic performance that can be simulated by utilizing lumped method. In this study, we can predict hemodynamic behavior of one artery of circulatory system (anterior cerebral artery) when disease such as internal carotid artery occlusion is occurred.
Pressure-flow simulation is one the leading common approaches for modeling of circulatory system behavior and forecasts of hemodynamic in numerous physiological conditions. In this paper, by using lumped model (electrical analogy), CV system is simulated in MATLAB software (SIMULINK environment).
The performance of healthy blood circulation and heart is modeled and the obtained results used for further analyses. The stenosis of internal carotid artery at different rates was, then, induced in the circuit and the effects are studied. In stenosis cases, the effects of internal carotid artery occlusion on left anterior cerebral artery pressure waveform are investigated.
The findings of this study may have implications not only for understanding the behavior of human biological system at healthy condition but also for diagnosis of diseases in circulatory and cardiovascular system of human body.
生物结构的数值建模对于分析数百种人体现象以及疾病诊断而言是非常有用的工具。一种生理现象是血液循环系统和心脏血液动力学性能,可利用集总方法进行模拟。在本研究中,我们能够预测当发生诸如颈内动脉闭塞等疾病时,循环系统中一条动脉(大脑前动脉)的血液动力学行为。
压力 - 流量模拟是用于模拟循环系统行为以及预测多种生理条件下血液动力学的主要常用方法之一。在本文中,通过使用集总模型(电类比),在MATLAB软件(SIMULINK环境)中对心血管系统进行模拟。
对健康血液循环和心脏的性能进行建模,并将所得结果用于进一步分析。然后,在回路中以不同速率诱导颈内动脉狭窄,并研究其影响。在狭窄病例中,研究颈内动脉闭塞对左大脑前动脉压力波形的影响。
本研究结果不仅可能有助于理解人体生物系统在健康状态下的行为,还可能有助于诊断人体循环和心血管系统中的疾病。