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3-D Single Breath-Hold Shear Strain Estimation for Improved Breast Lesion Detection and Classification in Automated Volumetric Ultrasound Scanners

机译:3-D单呼吸保持剪切应变估计,可在自动体积超声扫描仪中改善乳腺病变的检测和分类

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摘要

Automated breast volume scanner (ABVS) is an ultrasound imaging modality used in breast cancer screening. It has high sensitivity but limited specificity as it is hard to discriminate between benign and malignant lesions by echogenic properties. Specificity might be improved by shear strain imaging as malignant lesions, firmly bonded to its host tissue, show different shear patterns compared to benign lesions, often loosely bonded. Therefore, 3-D quasi-static elastography was implemented in an ABVS-like system. Plane wave instead of conventional focused transmissions were used to reduce scan times within a single breath hold. A 3-D strain tensor was obtained and shear strains were reconstructed in phantoms containing firmly and loosely bonded lesions. Experiments were also simulated in finite-element models (FEMs). Experimental results, confirmed by FEM-results, indicated that loosely bonded lesions showed increased maximal shear strains (~2.5%) and different shear patterns compared to firmly bonded lesions (~0.9%). To conclude, we successfully implemented 3-D elastography in an ABVS-like system to assess lesion bonding by shear strain imaging.
机译:自动乳房体积扫描仪(ABVS)是用于乳腺癌筛查的超声成像设备。它具有高灵敏度,但特异性有限,因为很难通过回声特性来区分良性和恶性病变。剪切应变成像可以改善特异性,因为与良性病变相比,牢固粘附于其宿主组织的恶性病变显示出不同的剪切模式,而良性病变通常是松散结合的。因此,在类似ABVS的系统中实现了3D准静态弹性成像。使用平面波代替传统的聚焦传输来减少一次屏气的扫描时间。获得了3-D应变张量,并在包含牢固和松散结合的病变的体模中重建了剪切应变。还用有限元模型(FEM)模拟了实验。 FEM结果证实的实验结果表明,与牢固结合的病变(〜0.9%)相比,松散结合的病变表现出最大的剪切应变(〜2.5%)和不同的剪切模式。总而言之,我们成功地在类似ABVS的系统中实施了3D弹性成像,以通过剪切应变成像评估病变结合。

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