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Orientation-Driven Ultrasound Compounding Using Uncertainty Information

机译:取向驱动的超声波使用不确定性信息复合

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Compounding 2D ultrasound sweeps into 3D volumes is, due to its cost- and time-efficiency, of great clinical significance in both diagnostic and interventional imaging. However, today’s algorithms restrict the sweeps to have homogeneous pressure and a linear trajectory, which limits their use in clinical applications such as breast or musculoskeletal ultrasound where artifacts occur due to soft and uneven surfaces. In this work, we present two techniques to resolve those restrictions by using an orientation-driven approach, first compensating for probe pressure changes and then resolving ambiguities in regions, where multiple ultrasound frames from different acoustic windows overlap. After clustering incoming frames by orientation, we determine the final voxel intensities based on per-pixel uncertainty information. Qualitative and quantitative evaluation of our methods shows that these techniques provide reconstructions of superior quality for ultrasound sweeps of inhomogeneous pressure and twisted trajectories. Furthermore, we propose optimizations in the implementation of these techniques towards real-time applications, interactively updating and refining the reconstructed volume.
机译:复利二维超声扫描成3D体积是,由于其成本和时间效率,在诊断和介入成像重要的临床意义。然而,今天的算法限制扫描为具有均匀的压力和直线轨迹,这限制了在临床应用诸如乳腺癌或肌肉骨骼超声伪像,其中出现由于柔软和不平坦的表面及其用途。在这项工作中,我们提出两种技术通过使用定向驱动的方法中,首先补偿探头的压力变化,然后解决的区域,其中来自不同的声窗口的多个超声帧重叠模糊度来解决这些限制。通过取向聚类输入帧之后,我们确定根据每个像素的不确定性信息的最终体素强度。我们的方法显示了定性和定量评价,这些技术为不均匀的压力和扭曲的轨迹的超声扫描提供优质的重建。此外,建议在这些技术实现实时应用的实现优化,交互更新和完善重建的体积。

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