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血管功能和搏动性血流动力学对心脏功能的影响。

Influence of vascular function and pulsatile hemodynamics on cardiac function.

作者信息

Bell Vanessa, Mitchell Gary F

机构信息

Cardiovascular Engineering, Inc., 1 Edgewater Drive, Suite 201, Norwood, MA, 02062, USA.

出版信息

Curr Hypertens Rep. 2015 Sep;17(9):580. doi: 10.1007/s11906-015-0580-y.

Abstract

Interactions between cardiac and vascular structure and function normally are optimized to ensure delivery of cardiac output with modest pulsatile hemodynamic overhead. Aortic stiffening with age or disease impairs optimal ventricular-vascular coupling, increases pulsatile load, and contributes to left ventricular (LV) hypertrophy, reduced systolic function, and impaired diastolic relaxation. Aortic pulse pressure and timing of peak systolic pressure are well-known measures of hemodynamic ventricular-vascular interaction. Recent work has elucidated the importance of direct, mechanical coupling between the aorta and the heart. LV systolic contraction results in displacement of aortic and mitral annuli, thereby producing longitudinal stretch in the ascending aorta and left atrium, respectively. Force associated with longitudinal stretch increases systolic load on the LV. However, the resulting energy stored in the elastic elements of the proximal aorta during systole facilitates early diastolic LV recoil and rapid filling. This review discusses current views on hemodynamics and mechanics of ventricular-vascular coupling.

摘要

心脏与血管的结构和功能之间的相互作用通常会得到优化,以确保在适度的搏动性血流动力学负担下输送心输出量。随着年龄增长或疾病导致的主动脉硬化会损害最佳的心室 - 血管耦合,增加搏动负荷,并导致左心室(LV)肥厚、收缩功能降低和舒张期松弛受损。主动脉脉压和收缩压峰值时间是血流动力学心室 - 血管相互作用的众所周知的指标。最近的研究阐明了主动脉与心脏之间直接机械耦合的重要性。左心室收缩期收缩导致主动脉瓣环和二尖瓣环移位,从而分别在升主动脉和左心房产生纵向拉伸。与纵向拉伸相关的力增加了左心室的收缩负荷。然而,在收缩期近端主动脉弹性元件中储存的能量有助于舒张早期左心室回弹和快速充盈。本综述讨论了关于心室 - 血管耦合的血流动力学和力学的当前观点。

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