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弹性壁对微泡动力学的影响:一项模拟研究。

Effect of an elastic wall on the dynamics of an encapsulated microbubble: A simulation study.

机构信息

INSERM U930, CNRS ERL3106, Université François Rabelais, CHU Bretonneau, 2 Boulevard Tonnellé, 37044 Tours Cedex 9, France.

出版信息

Ultrasonics. 2013 Jan;53(1):23-8. doi: 10.1016/j.ultras.2012.03.008. Epub 2012 Mar 24.

Abstract

The purpose of the present simulation study is to reveal how confining surfaces with different mechanical properties affect the acoustic response of a contrast agent microbubble. To this end, numerical simulations are carried out for three types of walls: a plastic (OptiCell) wall, an aluminium wall, and a biological tissue. For each wall, the behaviour of contrast microbubbles of three sizes is investigated. The spectral characteristics of the scattered pressure produced by the microbubbles are compared for two cases: the bubble oscillates far away from the wall and the same bubble oscillates in the immediate vicinity of the wall. The results of the simulations allow one to make the following main conclusions. The effect of the OptiCell wall on the acoustic bubble response is stronger than that of the aluminium and tissue walls. Changes in the bubble response near the wall are stronger when bubbles are excited above their resonance frequency. Considering changes in the fundamental and the 2nd harmonic with respect to the peak values of these components at different bubble radii, it is found that the changes are stronger for smaller bubbles and that the changes in the 2nd harmonic are stronger than those in the fundamental. These results allow one to gain an insight into conditions under which the effect of an elastic wall on the acoustic response of a contrast agent microbubble is easier to be detected.

摘要

本模拟研究的目的是揭示具有不同力学性能的约束表面如何影响造影微泡的声响应。为此,针对三种壁面(塑料(OptiCell)壁、铝壁和生物组织)进行了数值模拟。对于每种壁面,研究了三种尺寸的造影微泡的行为。比较了微泡产生的散射压力的频谱特征,对于两种情况:微泡远离壁面振动和相同的微泡在壁面附近振动。模拟结果允许做出以下主要结论。OptiCell 壁面对声泡响应的影响强于铝壁和组织壁。当气泡在其共振频率以上激发时,壁附近的气泡响应变化更强。考虑到与不同气泡半径下这些分量的峰值相比,基频和 2 次谐波的变化,发现较小气泡的变化更强,并且 2 次谐波的变化强于基频。这些结果使人们能够深入了解在何种条件下,弹性壁面对造影微泡声响应的影响更容易被检测到。

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