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3-D Motion Correction for Volumetric Super-Resolution Ultrasound Imaging

机译:用于体积超分辨率超声成像的3D运动校正

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Motion during image acquisition can cause image degradation in all medical imaging modalities. This is particularly relevant in 2-D ultrasound imaging, since out-of-plane motion can only be compensated for movements smaller than elevational beamwidth of the transducer. Localization based super-resolution imaging creates even a more challenging motion correction task due to the requirement of a high number of acquisitions to form a single super-resolved frame. In this study, an extension of two-stage motion correction method is proposed for 3-D motion correction. Motion estimation was performed on high volumetric rate ultrasound acquisitions with a handheld probe. The capability of the proposed method was demonstrated with a 3-D microvascular flow simulation to compensate for handheld probe motion. Results showed that two-stage motion correction method reduced the average localization error from 136 to 18 μm.
机译:在图像采集期间运动会导致所有医学成像模式中的图像劣化。这在2-D超声成像中特别相关,因为只能补偿平面外运动,用于小于换能器的仰光宽度的运动。基于定位的超分辨率成像甚至产生了一种更具挑战性的运动校正任务,因为需要大量的获取来形成单个超级分辨帧。在该研究中,提出了两级运动校正方法的延伸,用于3-D运动校正。用手持式探针对高容量速率超声采集进行运动估计。用3-D微血管流模拟证明了所提出的方法的能力,以补偿手持探头运动。结果表明,两级运动校正方法从136到18μm降低了平均定位误差。

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