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Real-time volumetric ultrasound imaging using free hand scanning

机译:使用徒手扫描进行实时体积超声成像

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Collecting high quality volumetric ultrasound (US) data using freehand scanning is challenging. The quality of the final 3DUS image is highly related to the applied scanning protocol and the subsequently used reconstruction method. The protocol should ensure the sonographer collects sufficient data of satisfactory quality for an accurate reconstruction. In this study we developed a real-time reconstruction method that provides visual feedback during scanning. The feedback indicates the areas, of which the sonographer should collect more data. The method was tested by acquiring US data of a breast phantom in a setup mimicking freehand scanning which consisted of a linear transducer mounted in a translation stage that also allowed rotation. To reconstruct the volume in real-time on a target grid of 0.5×0.5×0.5mm, we applied a simplified Voxel Nearest Neighbor (VNN) method, i.e., only the closest to B-mode plane voxels were updated. Furthermore, voxels were updated only when their projection on the B-mode plane was closer to the transducer surface than in the previous scan planes. Interpolation was performed within the acquired volume to fill in the holes where sufficient data were available. Sub-volumes with insufficient data were visualized in the reconstructed volume (update rate 50 Hz). This visual feedback can guide the sonographer during freehand scanning to improve the quality of the reconstructed 3DUS images. Cross-sections of the reconstructed data were compared to the independently acquired B-mode images and confirmed that our real-time method of low computational complexity provided accurate volumetric ultrasound images.
机译:使用徒手扫描收集高质量的体积超声(US)数据非常具有挑战性。最终3DUS图像的质量与所应用的扫描协议和随后使用的重建方法高度相关。该协议应确保超声医师收集到令人满意的质量的足够数据,以进行准确的重建。在这项研究中,我们开发了一种实时重建方法,可在扫描过程中提供视觉反馈。反馈指示超声医师应收集更多数据的区域。通过在模仿徒手扫描的设置中获取乳房幻象的US数据来测试该方法,该设置包括安装在还允许旋转的平移台上的线性换能器。为了在0.5×0.5×0.5mm的目标网格上实时重建体积,我们应用了简化的Voxel最近邻(VNN)方法,即仅更新了最接近B模式的平面体素。此外,仅当体素在B模式平面上的投影比以前的扫描平面更靠近换能器表面时,才更新体素。在获取的体积内进行插值以填充有足够数据可用的孔。在重建的体积中,可视化了数据不足的子体积(更新速率为50 Hz)。这种视觉反馈可以在徒手扫描过程中指导超声检查医师,以提高重建的3DUS图像的质量。将重建数据的横截面与独立获取的B型图像进行比较,并确认我们的低计算复杂度实时方法提供了准确的体积超声图像。

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