Mori Shohei, Kanai Hiroshi, Arakawa Mototaka
Graduate School of Engineering, Tohoku University, Sendai, Miyagi, 980-8579, Japan.
Graduate School of Biomedical Engineering, Tohoku University, Sendai, Miyagi, 980-8579, Japan.
J Med Ultrason (2001). 2023 Apr;50(2):151-165. doi: 10.1007/s10396-023-01282-2. Epub 2023 Mar 11.
Accurate speed-of-sound (SoS) estimation in an ultrasound propagation medium improves imaging quality and contributes to better diagnosis of diseases. In conventional time-delay-based SoS estimation approaches studied by several groups, a received wave is assumed to be scattered from an ideal point scatterer. In these approaches, the SoS is overestimated when the target scatterer has a non-negligible size. In this paper, we propose the SoS estimation method that considers target size.
In the proposed method, the error ratio of the estimated SoS using the conventional time-delay-based approach is determined from measurable parameters using the geometric relationship between the received elements and target. Subsequently, the SoS erroneously estimated using conventional estimation, assuming the ideal point scatterer as a target, is corrected by the determined estimation error ratio. To validate the proposed method, the SoS in water was estimated for several wire sizes.
The SoS in the water was overestimated using the conventional SoS estimation method, with a maximum positive error of 38 m/s. The proposed method corrected the SoS estimates, and the errors were suppressed to within 6 m/s, irrespective of the wire diameter.
The present results demonstrate that the proposed method can estimate the SoS by considering the target size without using information on the true SoS, true target depth, and true target size, which is applicable to in vivo measurements.
在超声传播介质中准确估计声速(SoS)可提高成像质量,并有助于更好地诊断疾病。在多个研究小组所研究的传统基于时间延迟的SoS估计方法中,假设接收波是从理想点散射体散射而来的。在这些方法中,当目标散射体具有不可忽略的大小时,SoS会被高估。在本文中,我们提出了一种考虑目标大小的SoS估计方法。
在所提出的方法中,使用接收元件与目标之间的几何关系,根据可测量参数确定使用传统基于时间延迟的方法估计的SoS的误差率。随后,将假设理想点散射体为目标使用传统估计错误估计的SoS通过确定的估计误差率进行校正。为了验证所提出的方法,对几种线径的水中声速进行了估计。
使用传统的SoS估计方法高估了水中的声速,最大正误差为38米/秒。所提出的方法校正了SoS估计值,并且无论线径如何,误差都被抑制在6米/秒以内。
目前的结果表明,所提出的方法可以在不使用真实SoS、真实目标深度和真实目标大小信息的情况下,通过考虑目标大小来估计SoS,这适用于体内测量。