Zhang X, Royston T J, Mansy H A, Sandler R H
University of Illinois at Chicago, 60607, USA.
J Acoust Soc Am. 2001 Feb;109(2):795-802. doi: 10.1121/1.1334598.
In a recent study a new analytical solution was developed and validated experimentally for the problem of surface wave generation on a linear viscoelastic half-space by a rigid circular disk located on the surface and oscillating normal to it. The results of that study suggested that, for the low audible frequency range, some previously reported values of shear viscosity for soft biological tissues may be inaccurate. Those values were determined by matching radiation impedance measurements with theoretical calculations reported previously. In the current study, the sensitivity to shear viscoelastic material constants of theoretical solutions for radiation impedance and surface wave motion are compared. Theoretical solutions are also compared to experimental measurements and numerical results from finite-element analysis. It is found that, while prior theoretical solutions for radiation impedance are accurate, use of such measurements to estimate shear viscoelastic constants is not as precise as the use of surface wave measurements.
在最近的一项研究中,针对位于线性粘弹性半空间表面且垂直于该表面振荡的刚性圆盘所产生的表面波问题,开发了一种新的解析解并通过实验进行了验证。该研究结果表明,在低声频范围内,先前报道的一些软生物组织的剪切粘度值可能不准确。这些值是通过将辐射阻抗测量结果与先前报道的理论计算结果进行匹配而确定的。在当前研究中,比较了辐射阻抗和表面波运动理论解对剪切粘弹性材料常数的敏感性。还将理论解与实验测量结果以及有限元分析的数值结果进行了比较。结果发现,虽然先前的辐射阻抗理论解是准确的,但使用此类测量来估计剪切粘弹性常数并不像使用表面波测量那样精确。