论文标题

3D剪切波绝对振动塑料学的超声超声成像

Ultrafast Ultrasound Imaging for 3D Shear Wave Absolute Vibro-Elastography

论文作者

Hashemi, Hoda S., Azar, Reza Zahiri, Salcudean, Septimiu E., Rohling, Robert N.

论文摘要

剪切波绝对振动弹性(S-WAVE)是一种成像技术,它使用来自外部振动源的多频激发在组织内部产生稳态剪切波。在这项工作中,引入了平面波成像,以减少总采集时间,同时保留3D公式的好处。帧速率为3000帧/s的平面波成像,然后进行3D绝对弹性估计。我们使用Verasonics系统和电动扫描超声传感器设计了两个超快S波的成像序列,用于两组激发频率,以将超声采集与外部机械激发同步。与原始的3D S波相比,由于Verasonics System提供的每通道获取,总体数据收集时间提高了83-88%。对肝纤维化组织模拟幻像和离体牛肝进行测试。卷曲算子先前用于磁共振弹性图(MRE),以取消压缩波的效果。在这项工作中,我们将卷曲操作员应用于完整的3D位移场,然后将3D弹性重建。与使用2D位移场的卷发相比,幻影实验的结果显示出更准确的弹性估计,标准偏差(STD)少18%,而STD的重建程度比没有卷曲的卷发少45%。我们还将我们的实验结果与基于声学辐射力脉冲(ARFI)的先前方法进行了比较,并与Phantom制造商获得了更接近的结果,为超快S波提供了值。此外,我们的系统还显示了牛肝弹性对激发频率的依赖性。

Shear wave absolute vibro-elastography (S-WAVE) is an imaging technique that generates steady-state shear waves inside the tissue using multi-frequency excitation from an external vibration source. In this work, plane wave imaging is introduced to reduce total acquisition time while retaining the benefit of 3D formulation. Plane wave imaging with a frame rate of 3000 frames/s is followed by 3D absolute elasticity estimation. We design two imaging sequences of ultrafast S-WAVE for two sets of excitation frequencies using a Verasonics system and a motorized swept ultrasound transducer to synchronize ultrasound acquisition with the external mechanical excitation. The overall data collection time is improved by 83-88% compared to the original 3D S-WAVE because of the per-channel acquisition offered by the Verasonics system. Tests are performed on liver fibrosis tissue-mimicking phantoms and on ex vivo bovine liver. The curl operator was previously used in magnetic resonance elastography (MRE) to cancel out the effect of the compressional waves. In this work, we apply the curl operator to the full 3D displacement field followed by 3D elasticity reconstruction. The results of phantom experiment show more accurate elasticity estimation as well as 18% less standard deviation (STD) compared to reconstruction using the curl of a 2D displacement field and 45% less STD than without the curl. We also compare our experimental results with a previous method based on acoustic radiation force impulse (ARFI) and achieve closer results to phantom manufacturer provided values with ultrafast S-WAVE. Furthermore, the dependency of the bovine liver elasticity on the frequency of excitation was also shown with our system.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源