Wang Y Y, Chang S L, Wu Y E, Hsu T L, Wang W K
Department of Physics National Taiwan Normal University, Taipei, Republic of China.
Circ Res. 1991 Jul;69(1):246-9. doi: 10.1161/01.res.69.1.246.
To simulate a short segment of the aorta, we studied wave propagation in an elastic tube with a side branch balloon. The small balloon simulated the organ (group of arterioles). Ligation of this side branch would reduce the moduli of the higher harmonics when the length of the side branch was appropriate. Electrical analogy of vessels was used to analyze this phenomenon. This simulation can explain the ligation results we found in rats. It may also clarify the discrepancies between the prediction of the Womersley equation and the experimental results. We suggest that the aorta and the closely attached organ can produce coupled oscillation; theoretically, this structure is equivalent to a resonance circuit.
为了模拟主动脉的一小段,我们研究了在带有侧支球囊的弹性管中的波传播。小气球模拟器官(小动脉群)。当侧支长度适当时,结扎该侧支会降低高次谐波的模量。利用血管的电类比来分析这一现象。该模拟可以解释我们在大鼠身上发现的结扎结果。它还可能阐明沃默斯利方程预测与实验结果之间的差异。我们认为主动脉和紧密相连的器官可以产生耦合振荡;从理论上讲,这种结构等同于一个谐振电路。