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小梁骨模拟体模中线性和非线性超声参数与孔隙率及小梁间距的关系

Relationships of linear and nonlinear ultrasound parameters with porosity and trabecular spacing in trabecular-bone-mimicking phantoms.

作者信息

Lee Kang Il

机构信息

Department of Physics, Kangwon National University, Chuncheon 24341, Republic of Korea

出版信息

J Acoust Soc Am. 2016 Dec;140(6):EL528. doi: 10.1121/1.4972530.

Abstract

The speed of sound (SOS), the normalized broadband ultrasound attenuation (nBUA), and the nonlinear parameter (B/A) were measured in 18 trabecular-bone-mimicking phantoms consisting of water-saturated aluminum foams. The strong slow wave and the very weak fast wave were consistently observed in the signals transmitted through all of the phantoms. It was found that the SOS increased as the porosity and the trabecular spacing increased. In contrast, both the nBUA and the B/A showed opposite dependences on the porosity and the trabecular spacing. All three ultrasound parameters exhibited high correlation coefficients with the porosity and the trabecular spacing.

摘要

在由水饱和泡沫铝制成的18个模拟小梁骨的体模中测量了声速(SOS)、归一化宽带超声衰减(nBUA)和非线性参数(B/A)。在通过所有体模传输的信号中始终观察到强烈的慢波和非常微弱的快波。研究发现,随着孔隙率和小梁间距的增加,声速增加。相比之下,nBUA和B/A对孔隙率和小梁间距表现出相反的依赖性。所有三个超声参数与孔隙率和小梁间距都呈现出高相关系数。

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