Measurement Accuracy of Ultrasound Viscoelastic Creep Imaging in Measuring the Viscoelastic Properties of Heterogeneous Materials

Q3 Engineering
Che-Yu Lin, Yi-Cheng Chen, Chin Pok Pang, Tung-Han Yang
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引用次数: 1

Abstract

Ultrasound viscoelastic creep imaging (UVCI) is a newly developed technology aiming to measure the viscoelastic properties of materials. The purpose of this study is to investigate the accuracy of UVCI in measuring the viscoelastic properties of heterogeneous materials that mimic pathological lesions and normal tissues. The finite element simulation is used to investigate the measurement accuracy of UVCI on three material models, including a homogeneous material, a single-inclusion phantom, and a three-layer structure. The measurement accuracy for a viscoelastic property is determined by the difference between the simulated measurement result of that viscoelastic property and its true value defined during the simulation process. The results show that UVCI in general cannot accurately measure the true values of the viscoelastic properties of a heterogeneous material, demonstrating the need to further improve the theories and technologies relevant to UVCI to improve its measurement accuracy on tissue-like heterogeneous materials.
超声粘弹性蠕变成像在非均质材料粘弹性性能测量中的测量精度
超声粘弹性蠕变成像(UVCI)是一项旨在测量材料粘弹性特性的新技术。本研究的目的是研究UVCI在测量模拟病理损伤和正常组织的异质材料的粘弹性特性方面的准确性。使用有限元模拟研究了UVCI在三种材料模型上的测量精度,包括均匀材料、单包裹体模和三层结构。粘弹性性质的测量精度由该粘弹性性质模拟测量结果与其在模拟过程中定义的真实值之间的差来确定。结果表明,UVCI通常无法准确测量非均质材料粘弹性特性的真实值,这表明需要进一步改进与UVCI相关的理论和技术,以提高其在类组织非均质材料上的测量精度。
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
Advances in Technology Innovation
Advances in Technology Innovation Energy-Energy Engineering and Power Technology
CiteScore
1.90
自引率
0.00%
发文量
18
审稿时长
12 weeks
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