Zhang Xin-Yu, MacPherson Emma, Zhang Yuan-Ting
Faculty of Information Engineering, Shenzhen University, Shenzhen, Guangdong, PR China.
IEEE Trans Biomed Eng. 2008 Apr;55(4):1291-7. doi: 10.1109/TBME.2007.912422.
The second heart sound (S2) is triggered by an aortic valve closure as a result of the ventricular-arterial interaction of the cardiovascular system. The objective of this paper is to investigate the timing of S2 in response to the changes in hemodynamic parameters and its relation to aortic blood pressure (BP). An improved model of the left ventricular-arterial interaction was proposed based on the combination of the newly established pressure source model of the ventricle and the nonlinear pressure-dependent compliance model of the arterial system. The time delay from the onset of left ventricular pressure rise to the onset of S2 (RS2) was used to measure the timing of S2. The results revealed that RS2 bears a strong negative correlation with both systolic blood pressure and diastolic blood pressure under the effect of changing peripheral resistance, heart rate, and contractility. The results were further validated by a series of measurements of 16 normal subjects submitted to dynamic exercise. This study helps understand the relationship between the timing of S2 and aortic BP under various physiological and pathological conditions.
第二心音(S2)是由心血管系统的心室 - 动脉相互作用导致主动脉瓣关闭所引发的。本文的目的是研究S2响应血流动力学参数变化的时间及其与主动脉血压(BP)的关系。基于新建立的心室压力源模型与动脉系统非线性压力依赖性顺应性模型相结合,提出了一种改进的左心室 - 动脉相互作用模型。从左心室压力上升开始到S2开始的时间延迟(RS2)用于测量S2的时间。结果显示,在改变外周阻力、心率和收缩力的影响下,RS2与收缩压和舒张压均呈强烈负相关。通过对16名正常受试者进行动态运动的一系列测量,进一步验证了这些结果。本研究有助于理解在各种生理和病理条件下S2时间与主动脉血压之间的关系。