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Realistic Super-Resolution Image Analysis for State of the Art 2D Contrast Enhanced Ultrasound Imaging

机译:现实的超分辨率图像分析,用于最先进的2D对比度增强超声成像

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An ultrasound based super-resolution algorithm was developed for clinical 2D ultrasound imaging in contrast enhanced ultrasound (CEUS) mode. Synthetic and in vivo data from sheep ovaries were used. Development involved microbubble-specific detection and segmentation, resulting in optimal localisation, resulting in an image analysis algorithm that could be used with clinical data of a few minutes duration. Microscopy images from histology slices were available to allow comparison of the in vivo vascular network with that produced from the processed ultrasound data. A 5-fold resolution gain was demonstrated in vessel width, as vessels slightly under 120 μm were detected (λ = 257 μm), while the synthetic data demonstrated that the microbubble (MB) localization uncertainty is 30 μm. These results were achieved by processing video loops of under 2-minute duration. In conclusion, the above algorithm provided complete images of microvascular structure down to arteriole level from data that do not extend beyond a reasonable patient examination period.
机译:为临床2D超声成像开发了基于超声的超分辨率算法,其对比增强超声(CEUS)模式。使用来自绵羊卵巢的合成和体内数据。开发涉及微泡特异性检测和分割,导致最佳定位,导致图像分析算法可以与几分钟持续时间的临床数据一起使用。来自组织学切片的显微镜图像可用于允许与由处理的超声数据产生的体内血管网络进行比较。有5倍分辨率增益(λ= 257微米)被证明在容器的宽度,如血管中检测到稍低于120微米,而表现出的合成数据,所述微泡(MB)的定位的不确定性为30μm。这些结果是通过处理2分钟持续时间以下的视频环来实现的。总之,上述算法为从不超过合理的患者检查期的数据提供了微血管结构的完整图像。

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