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使用聚焦源的脉冲回波超声中的散射体尺寸估计:校准测量和体模实验。

Scatterer size estimation in pulse-echo ultrasound using focused sources: calibration measurements and phantom experiments.

作者信息

Bigelow Timothy A, O'Brien William D

机构信息

Bioacoustics Research Laboratory, Department of Electrical and Computer Engineering, University, of Illinois, 405 North Mathews, Urbana, Illinois 61801, USA.

出版信息

J Acoust Soc Am. 2004 Jul;116(1):594-602. doi: 10.1121/1.1757453.

Abstract

In a companion paper [T. A. Bigelow and W. D. O'Brien Jr., J. Acoust. Soc. Am. 116, 578 (2004)], theory, supported by simulations, showed that accurate scatterer size estimates could be obtained using highly focused sources provided that the derived generalized attenuation-compensation function was used and the velocity potential field near the focus could be approximated as a three-dimensional Gaussian. Herein, the theory is further evaluated via experimental studies. A calibration technique is developed to find the necessary equivalent Gaussian dimensions for a focused source using reflections obtained from a rigid plane scanned through the focus. Then, the theoretical analysis of focused sources is validated experimentally using three spherically focused ultrasound transducers to estimate the radius of glass beads imbedded in tissue mimicking phantoms. Both the impact of focusing (f/1, f/2, and f/4) and the effect of scatterer type (comparing glass bead results to simulation results that used scatterers with Gaussian impedance distributions) were tested. The simulated differences agree with the measured differences to within 2.5% provided that the comparison is made between the same scatterer type and sources with the same equivalent Gaussian dimensions. The improvement provided by the generalized attenuation-compensation function is greatly influenced by the type of scatterer whose size is being estimated and decreases as the wavelength dependence of the Gaussian depth of focus is reduced.

摘要

在一篇相关论文中[T. A. 比奇洛和小W. D. 奥布赖恩,《美国声学学会杂志》116, 578 (2004)],理论在模拟的支持下表明,只要使用推导的广义衰减补偿函数,并且焦点附近的速度势场可以近似为三维高斯分布,就可以使用高度聚焦的源获得准确的散射体尺寸估计。在此,通过实验研究对该理论进行了进一步评估。开发了一种校准技术,利用从穿过焦点扫描的刚性平面获得的反射来找到聚焦源所需的等效高斯尺寸。然后,使用三个球形聚焦超声换能器对嵌入组织模拟体模中的玻璃珠半径进行估计,通过实验验证了聚焦源的理论分析。测试了聚焦的影响(f/1、f/2和f/4)以及散射体类型的影响(将玻璃珠结果与使用具有高斯阻抗分布的散射体的模拟结果进行比较)。只要在相同散射体类型和具有相同等效高斯尺寸的源之间进行比较,模拟差异与测量差异的吻合度在2.5%以内。广义衰减补偿函数提供的改进受到正在估计尺寸的散射体类型的极大影响,并且随着高斯焦深的波长依赖性降低而减小。

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