首页> 外文会议>IEEE International Symposium on Biomedical Imaging >DYNAMIC PIXEL BINNING ALLOWS SPATIAL AND ANGULAR RESOLUTION TRADEOFFS TO IMPROVE IMAGE QUALITY IN X-RAY C-ARM CT
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DYNAMIC PIXEL BINNING ALLOWS SPATIAL AND ANGULAR RESOLUTION TRADEOFFS TO IMPROVE IMAGE QUALITY IN X-RAY C-ARM CT

机译:动态像素箱允许空间和角度分辨率的折衷,以提高X射线C臂CT中的图像质量

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When designing an acquisition protocol for a C-arm CT, a tradeoff has to be made between scan time and the amount of acquired data. Increased scan time allows data acquisition with higher spatial and angular resolution. Fixed scan time implies a reduction of either spatial and angular resolution, which may either lead to oversmoothing or to artifacts from angular undersampling. In this work, we investigate smart sensors for pushing the boundary for this bottleneck considerably further. Detector pixels are enhanced by processing units that are able to perform a limited amount of local operations. This allows an online, dynamical adaptation of the pixel binning, depending on whether a local neighborhood is smooth or not. We demonstrate on phantom data that this approach allows to save about 75% of the data, obtaining a reconstruction quality comparable to 1 × 1 binning at a data rate comparable to 2 × 2 pixel binning.
机译:在为C形臂CT设计采集协议时,必须在扫描时间和获取数据量之间进行权衡。增加的扫描时间允许具有更高的空间和角度分辨率的数据采集。固定扫描时间意味着空间和角度分辨率的减小,其可以导致过度处理或从角度下采样的伪像。在这项工作中,我们调查了智能传感器,用于大大进一步推动该瓶颈的边界。通过能够执行有限量的本地操作的处理单元增强了检测器像素。这允许在线,对像素融合的在线动态适应,这取决于本地邻域是否是光滑的。我们展示了这种方法允许节省大约75%的数据的幻影数据,以与2×2像素箱相当的数据速率的数据速率相当的重建质量可相当于1×1分布。

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