Twin Peak Method for Estimating Tissue Viscoelasticity Using Shear Wave Elastography.

IF 2.4 3区 医学 Q2 ACOUSTICS
Shuvrodeb Adhikary, Matthew W Urban, Murthy N Guddati
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引用次数: 0

Abstract

Tissue viscoelasticity is becoming an increasingly useful biomarker beyond elasticity and can theoretically be estimated using shear wave elastography by inverting the propagation and attenuation characteristics of shear waves. Estimating viscosity is often more difficult than elasticity because attenuation, the main effect of viscosity, leads to poor signal-to-noise ratio of the shear wave motion. In the present work, we provide an alternative to existing methods of viscoelasticity estimation, based on peaks in the frequency-wavenumber (f-k) domain, which are considered more robust against noise compared with other features in the f-k domain. Specifically, the method minimizes the difference between simulated and measured versions of two sets of peaks (twin peaks) in the f-k domain, obtained first by traversing through each frequency and then by traversing through each wavenumber. The slopes and deviation of the twin peaks are sensitive to elasticity and viscosity, respectively, leading to the effectiveness of the proposed inversion algorithm for characterizing mechanical properties. This expected effectiveness is confirmed through in silico verification, followed by ex vivo validation and in vivo application, indicating that the proposed approach can be used effectively in accurately estimating viscoelasticity, thus potentially contributing to the development of enhanced biomarkers.

用横波弹性学估计组织粘弹性的双峰方法。
组织粘弹性正成为一种越来越有用的生物标志物,理论上可以通过反转剪切波的传播和衰减特性来使用剪切波弹性学来估计。由于黏度的主要作用衰减导致剪切波运动的信噪比较差,估计黏度往往比估计弹性更为困难。在目前的工作中,我们提供了一种替代现有的粘弹性估计方法,基于频波数(f-k)域中的峰值,与f-k域中的其他特征相比,它被认为对噪声更强。具体来说,该方法将f-k域中两组峰(双峰)的模拟和测量版本之间的差异最小化,首先通过遍历每个频率,然后通过遍历每个波数获得。双峰的斜率和偏差分别对弹性和黏度敏感,这使得所提出的反演算法对表征力学性能是有效的。这种预期的有效性通过计算机验证、体外验证和体内应用得到证实,表明所提出的方法可以有效地用于准确估计粘弹性,从而可能有助于开发增强的生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.20
自引率
6.90%
发文量
325
审稿时长
70 days
期刊介绍: Ultrasound in Medicine and Biology is the official journal of the World Federation for Ultrasound in Medicine and Biology. The journal publishes original contributions that demonstrate a novel application of an existing ultrasound technology in clinical diagnostic, interventional and therapeutic applications, new and improved clinical techniques, the physics, engineering and technology of ultrasound in medicine and biology, and the interactions between ultrasound and biological systems, including bioeffects. Papers that simply utilize standard diagnostic ultrasound as a measuring tool will be considered out of scope. Extended critical reviews of subjects of contemporary interest in the field are also published, in addition to occasional editorial articles, clinical and technical notes, book reviews, letters to the editor and a calendar of forthcoming meetings. It is the aim of the journal fully to meet the information and publication requirements of the clinicians, scientists, engineers and other professionals who constitute the biomedical ultrasonic community.
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