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PERSONALIZED SCAN SEQUENCING FOR REAL-TIME VOLUMETRIC ULTRASOUND IMAGING

机译:个性化扫描排序,用于实时体积超声成像

摘要

An imaging apparatus (100) includes at least one imaging probe and an occlusion avoidance processor and is configured for:using the at least one probe to form different imaging apertures;via multiple apertures, detecting imaging blockage; and deciding by the processor, based on a result of the detecting, upon one or more apertures to utilize for image acquisition. In a scouting mode, ultrasound patches (204) may be arranged in a checkerboard pattern to form odd apertures and even apertures that are interspersed for coherence estimation used in assessing blockage. A volumetric occlusion layer may be made by beam-wise projecting coherence values into a 2D map so that openings in the layer correspond to non-blockage in the map, or a connected segment thereof. An independent group (152, 156-158) of acquistion apertures can be pre-tested against the layer to find an optimal one or more acquisition apertures,and a scanning sequence,personalized to the anatomy (120) scouted. The layer can be incrementally updated over the course of a natural cycle of the body, for cyclical acquisition in accordance.
机译:一种成像设备(100),包括至少一个成像探针和闭塞避免处理器,并且被配置为:使用所述至少一个探针形成不同的成像孔;通过多个孔,检测成像阻塞;根据检测结果,处理器决定一个或多个用于图像采集的光圈。在侦查模式中,超声贴片(204)可以以棋盘图案布置以形成散布的奇数孔和偶数孔,以用于在评估阻塞时使用的相干估计。可以通过将波束的相干值投影到2D贴图中来制作体积遮挡层,以使该层中的开口对应于贴图或其连接段中的无障碍物。可以针对该层对独立的一组采集孔(152、156-158)进行预测试,以找到最佳的一个或多个采集孔,并将扫描序列个性化以进行解剖(120)。该层可以在人体的自然循环过程中进行增量更新,以便进行周期性采集。

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