Gross D R, Lu P C, Dodd K T, Hwang N H
Am J Physiol. 1980 Jun;238(6):H876-85. doi: 10.1152/ajpheart.1980.238.6.H876.
To better understnad the characteristics of cardiovascular murmurs and turbulent energy transmission, we made simultaneous measurements of pressure (sound) and velocity fluctuations in the vicinity of surgically produced stenoses in the pulmonary artery of calves. We did a spectral analysis of these data and found an identifiable break frequency at which the slopes of the pressure fluctuations changed. By use of these break frequencies and the corresponding blood jet velocity and vessel diameter measurements, Strouhal numbers were calculated. The jet velocity, Reynolds number, Strouhal number, and unsteadiness parameter values changed when the vessel was stenosed. When the power spectrum curves for the velocity fluctuations and the sound were compared, they tended to show a correlation between break frequencies. We speculate that this apparent correlation indicated a transfer from turbulent to acoustic energy.
为了更好地理解心血管杂音和湍流能量传输的特征,我们同时测量了小牛肺动脉手术造成狭窄附近的压力(声音)和速度波动。我们对这些数据进行了频谱分析,发现了一个可识别的转折频率,此时压力波动的斜率发生了变化。利用这些转折频率以及相应的血流速度和血管直径测量值,计算出了斯特劳哈尔数。当血管狭窄时,血流速度、雷诺数、斯特劳哈尔数和不稳定参数值都会发生变化。当比较速度波动和声音的功率谱曲线时,它们往往显示出转折频率之间的相关性。我们推测这种明显的相关性表明了从湍流能量到声能的转换。