Umemoto Takeshi, Ueno Ei, Matsumura Takeshi, Yamakawa Makoto, Bando Hiroko, Mitake Tsuyoshi, Shiina Tsuyoshi
Department of Senology, Tsukuba Medical Center Foundation, Tsukuba, Ibaraki, Japan; Breast and Endocrine Surgery, Faculty of Medicine, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Department of Senology, Tsukuba Medical Center Foundation, Tsukuba, Ibaraki, Japan; Breast and Endocrine Surgery, Faculty of Medicine, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Ultrasound Med Biol. 2014 Aug;40(8):1755-68. doi: 10.1016/j.ultrasmedbio.2014.02.005. Epub 2014 May 5.
The aim of this study was to reveal the background to the image variations in strain elastography (strain imaging [SI]) depending on the manner of manipulation (compression magnitude) during elasticity image (EI) acquisition. Thirty patients with 33 breast lesions who had undergone surgery followed by SI assessment in vivo were analyzed. An analytical approach to tissue elasticity based on the stress-elastic modulus (Young's modulus) relationship was adopted. Young's moduli were directly measured ex vivo in surgical specimens ranging from 2.60 kPa (fat) to 16.08 kPa (invasive carcinoma) under the weak-stress condition (<0.2-0.4 kPa, which corresponds to the appropriate "light touch" technique in SI investigation. The contrast (ratio) of lesion to fat in elasticity ex vivo gradually decreased as the stress applied increased (around 1.0 kPa) on the background of significant non-linearity of the breast tissue. Our results indicate that the differences in non-linearity in elasticity between the different tissues within the breast under minimal stress conditions are closely related to the variation in EI quality. The significance of the "pre-load compression" concept in tissue elasticity evaluation is recognized. Non-linearity of elasticity is an essential attribute of living subjects and could provide useful information having a considerable impact on clinical diagnosis in quantitative ultrasound elastography.
本研究的目的是揭示在弹性成像(EI)采集过程中,应变弹性成像(应变成像[SI])中图像变化的背景,该变化取决于操作方式(压缩幅度)。分析了30例患有33个乳腺病变的患者,这些患者均接受了手术,并在体内进行了SI评估。采用了基于应力 - 弹性模量(杨氏模量)关系的组织弹性分析方法。在弱应力条件下(<0.2 - 0.4 kPa,这对应于SI检查中适当的“轻触”技术),对手术标本进行体外直接测量杨氏模量,范围从2.60 kPa(脂肪)到16.08 kPa(浸润性癌)。在乳腺组织显著非线性的背景下,随着施加的应力增加(约1.0 kPa),体外弹性中病变与脂肪的对比度(比率)逐渐降低。我们的结果表明,在最小应力条件下,乳腺内不同组织之间弹性非线性的差异与EI质量的变化密切相关。认识到“预加载压缩”概念在组织弹性评估中的重要性。弹性的非线性是活体的一个基本属性,并且在定量超声弹性成像中可为临床诊断提供具有相当影响的有用信息。