微弹性(μ-E):用于小目标可视化的声辐射力脉冲成像和单航迹和多航迹位置剪切波弹性成像的CNR和分辨率

P. Hollender, S. Rosenzweig, K. Nightingale, G. Trahey
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引用次数: 6

摘要

声辐射力脉冲成像(ARFI)和剪切波弹性成像(SWEI)利用组织对脉冲机械刺激的动态响应来表征局部弹性。传统的多轨迹定位SWEI (MTL-SWEI)的一种变体,表示为单轨迹定位SWEI (STL-SWEI),提供了创建无斑点横波图像的希望。这项工作比较了三种成像方式,使用高推力和轨道光束密度组合采集序列对直径为1.5和6mm的硬内含物进行成像。STL-SWEI的CNR明显高于MTL-SWEI,可以在更高的分辨率下运行。ARFI和STL-SWEI在6mm内含物中的表现相似,但STL-SWEI对1.5 mm目标的成像具有最高的CNR和最佳分辨率。讨论了每种模式的CNR和分辨率之间的处理权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micro-elasticity (μ-E): CNR and resolution of acoustic radiation force impulse imaging and single- and multiple track location shear wave elasticity imaging for visualizing small targets
Acoustic radiation force impulse (ARFI) imaging and shear wave elasticity imaging (SWEI) use the dynamic response of tissue to impulsive mechanical stimulus to characterize local elasticity. A variant of conventional, multiple track location SWEI (MTL-SWEI), denoted single track location SWEI (STL-SWEI) offers the promise of creating speckle-free shear wave images. This work compares the three imaging modalities using a high push and track beam density combined acquisition sequence to image stiff inclusions with diameters of 1.5 and 6 mm. STL-SWEI is shown to have significantly higher CNR than MTL-SWEI, allowing for operation at higher resolution. ARFI and STL-SWEI perform similarly in the 6 mm inclusions, but STL-SWEI images the 1.5 mm targets with the highest CNR and best resolution. The processing trade-offs between CNR and resolution for each modality are discussed.
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