Elastic modulus contrast enhancement in shear wave imaging using mechanical nonlinearity: In vitro tissue mimicking phantom study

D. Park, Kang Kim
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引用次数: 1

Abstract

Shear wave elasticity imaging (SWEI) has been widely used to assess the elasticity of tissues. However, the shear modulus estimated in SWEI is often less sensitive in some cases, especially to a subtle change of the stiffness that produces only small mechanical contrast to the background tissues. This small mechanical contrast can be enhanced if the tissues are compressed, exhibiting mechanical nonlinearity. In this study, we propose a new approach of nonlinear SWEI and evaluate its feasibility through experiments using a tissue mimicking phantom. SWEI was performed while a tissue mimicking phantom was continually deformed over a relatively large dynamic range of strains. A 1.5% agar mixed with 5% gelatin inclusion of a long cylinder (D: 8 mm, hard) embedded in 0.5% agar mixed with 5% gelatin phantom block (soft) was fabricated. The average shear modulus of the inclusion exhibited noticeable nonlinearity after >10% overall applied strain and sharply increased to 40 kPa at 30% overall applied strain. On the other hand, the average shear modulus of the surrounding phantom block increased almost linearly from 4 to 16 kPa over the same applied strain range. The elastic modulus contrast of the inclusion to the surrounding phantom block was increased from 0.40 at 0% overall applied strain to 1.52 at 30% applied strain, which displays detecting the inclusion better.
弹性模量增强剪切波成像使用力学非线性:体外组织模拟幻影研究
横波弹性成像(SWEI)已被广泛用于评估组织的弹性。然而,在某些情况下,在SWEI中估计的剪切模量通常不太敏感,特别是对刚度的细微变化,仅产生与背景组织的微小机械对比。如果组织被压缩,这种小的机械对比可以增强,表现出机械非线性。在这项研究中,我们提出了一种新的非线性SWEI方法,并通过模拟组织模型的实验来评估其可行性。在进行SWEI时,组织模拟幻影在相对较大的动态应变范围内不断变形。制作1.5%琼脂混合5%明胶包体,将长圆柱体(D: 8 mm,硬)嵌入0.5%琼脂混合5%明胶模块(软)中。当总应变>10%时,夹杂体的平均剪切模量表现出明显的非线性,当总应变为30%时,夹杂体的平均剪切模量急剧增加至40 kPa。另一方面,在相同的施加应变范围内,周围幻块的平均剪切模量从4增加到16 kPa,几乎是线性增加的。夹杂物与周围模块的弹性模量对比由总应变为0%时的0.40提高到总应变为30%时的1.52,表明对夹杂物的检测效果较好。
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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