Ding G, Wei G
Department of Applied Mechanics, Fudan University, Shanghai.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 1997 Mar;14(1):4-10.
A hemodynamics model of cerebral Willis circulation is proposed. The model consists of the compensation of blood flow as well as the compliance, resistance and inductance of arteries. The impedances of carotid and vertebral arteries are obtained by solving the govern equations. The theoretical impedances correspond well with the experimental results. The simulating results demonstrate that the alteration of the arterial dynamic parameters influences not only the ipsilateral impedance but also the contralateral arterial system. These conclusions suggest that the carotid or vertebral impedance is not suitable for describing the behaviour of its own arterial system, because the impedance is also influenced by the other arterial system and blood pressure.
提出了一种大脑 Willis 循环的血流动力学模型。该模型包括血流补偿以及动脉的顺应性、阻力和电感。通过求解控制方程获得颈动脉和椎动脉的阻抗。理论阻抗与实验结果吻合良好。模拟结果表明,动脉动态参数的改变不仅影响同侧阻抗,还影响对侧动脉系统。这些结论表明,颈动脉或椎动脉阻抗不适用于描述其自身动脉系统的行为,因为该阻抗还受其他动脉系统和血压的影响。