Zhang Xin-Yu, Zhang Yuan-Ting
Joint Res. Center for Biomed. Eng., Chinese Univ. of Hong Kong, Shatin, Hong Kong.
Conf Proc IEEE Eng Med Biol Soc. 2006;2006:2888-91. doi: 10.1109/IEMBS.2006.259859.
Previous studies have shown that it is possible to estimate pulmonary and systemic blood pressure using the spectral information of the second heart sound. A mathematical model for the vibration of the closed aortic valve is proposed in the paper with the introduction of the nonlinear elasticity of the aortic wall tissue. Based on the parametric analysis, the effect of the aortic blood pressure at the moment of valve closure on vibration of aortic valve and produced sound is examined. The simulation results show that the increasing aortic pressure results in an increase in frequency and amplitude of produced sound. The results of this study also suggest that it is the increasing resonant frequency of the blood column induced by elevated distending pressure that plays significant role in the process. The application of the modeling study could be extended to interpret the relations of the second heart sound to pulmonary blood pressure.
先前的研究表明,利用第二心音的频谱信息来估计肺循环和体循环血压是可行的。本文引入主动脉壁组织的非线性弹性,提出了一个用于闭合主动脉瓣振动的数学模型。基于参数分析,研究了瓣膜关闭瞬间主动脉血压对主动脉瓣振动及产生声音的影响。模拟结果表明,主动脉压力升高会导致产生声音的频率和振幅增加。该研究结果还表明,在这个过程中起重要作用的是由扩张压力升高引起的血柱共振频率增加。该建模研究的应用可以扩展到解释第二心音与肺循环血压的关系。