Yu Hongtao, Huang George P, Yang Zifeng, Liang Fuyou, Ludwig Bryan
J Biomech Eng. 2016 Jun;138(6):061002. doi: 10.1115/1.4033179.
Age-associated alterations in cardiovascular structure and function induce cardiovascular disease in elderly subjects. To investigate the effects of normal vascular aging (NVA) and early vascular aging (EVA) on hemodynamic characteristics in the circle of Willis (CoW), a closed-loop one-dimensional computational model was developed based on fluid mechanics in the vascular system. The numerical simulations revealed that higher central pulse pressure and augmentation index (AIx) appear in the EVA subjects due to early arrival of reflected waves, resulted in the increase of cardiac afterload compared with the NVA subjects. Moreover, the hemodynamic characteristics in the CoW show that the EVA subjects in an older age display a higher blood pressure than that of the NVA with a complete CoW. Herein, the increased blood pressure and flow rate coexist in the subjects with an incomplete CoW. In conclusion, the hemodynamic characteristics in the aortic tree and CoW related to aging appear to play an important role in causing cardiovascular and intravascular disease.
心血管结构和功能的年龄相关性改变会在老年受试者中诱发心血管疾病。为了研究正常血管衰老(NVA)和早期血管衰老(EVA)对 Willis 环(CoW)血流动力学特征的影响,基于血管系统中的流体力学开发了一个闭环一维计算模型。数值模拟显示,由于反射波提前到达,EVA 受试者出现较高的中心脉压和增强指数(AIx),与 NVA 受试者相比,这导致心脏后负荷增加。此外,CoW 的血流动力学特征表明,年龄较大的 EVA 受试者的血压高于具有完整 CoW 的 NVA 受试者。在此,CoW 不完整的受试者中血压和流速同时升高。总之,与衰老相关的主动脉树和 CoW 的血流动力学特征似乎在导致心血管和血管内疾病中起重要作用。