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Tiled-Block Image Reconstruction by Wavelet-Based, Parallel Filtered Back-Projection

机译:基于小波的并行滤波反投影的平铺块图像重建

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摘要

We demonstrate an algorithm, relevant to tomography sensor systems, to obtain images from the parallel reconstruction of essentially localized elements at different scales. This is achieved by combining methodology to reconstruct images from limited and/or truncated data, with the time-frequency capabilities of the wavelet transform. Multiscale, as well as time-frequency, localization properties of the separable two-dimensional wavelet transform are exploited as an approach for faster reconstruction. The speedup is realized not only by reducing the computation load on a single processor, but also by achieving the parallel reconstruction of several tiled blocks. With tiled-block image reconstruction by wavelet-based, parallel filtered back-projection (FBP), we measure more than 36 times gain in speed, compared with standard FBP.
机译:我们展示了一种与层析成像传感器系统相关的算法,可以从不同大小的基本局部元素的并行重建中获取图像。这是通过结合用于从有限和/或截断的数据中重建图像的方法以及小波变换的时频功能来实现的。可分离二维小波变换的多尺度以及时频定位特性被用作一种更快重建的方法。加速不仅通过减少单个处理器上的计算负担来实现,而且还通过实现几个切片块的并行重构来实现。通过基于小波的并行滤波反投影(FBP)进行平铺块图像重建,与标准FBP相比,我们测量的速度增益超过36倍。

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