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Quantitative imaging using Time Reversal Elastography: A feasibility study

机译:使用时间反转弹性成像的定量成像:可行性研究

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In previous works the authors developed a method for extracting the shear elasticity of soft tissues from a complex reverberated elastic field using spatiotemporal correlations interpreted in the frame of the time-reversal symmetry: Time Reversal Elastography (TRE). By measuring the shear wavelength from the focal width as the wave converges the shear elasticity can be obtained. The feasibility of TRE as an imaging technique has already been shown, in vivo, in bi-layer mediums (e.g. belly muscle - liver). In this work the authors take a step forward and demonstrate its feasibility as a quantitative imaging technique by detecting a 10 mm diameter inclusion embedded in a softer medium. As a result the inclusion is clearly detected using TRE despite the low contrast between background and inclusion. A general quantitative agreement within 10% in the shear wave speed estimation was found between TRE and independent transient elastography measurements.
机译:在先前的工作中,作者开发了一种方法,该方法使用时间反转对称性框架中解释的时空相关性从复杂的回响弹性场中提取软组织的剪切弹性:时间反转弹性成像(TRE)。通过在波收敛时从焦距测量剪切波长,可以获得剪切弹性。在体内,已经证明了TRE作为成像技术在双层介质(例如腹肌-肝脏)中的可行性。在这项工作中,作者向前迈出了一步,通过检测嵌入在较软介质中的直径为10 mm的夹杂物,证明了其作为定量成像技术的可行性。结果,尽管背景和夹杂物之间的对比度很低,但仍可以使用TRE清晰地检测到夹杂物。在TRE和独立的瞬态弹性成像测量之间发现在剪切波速度估计中10%以内的一般定量协议。

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