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Optimization of reconstructed quality of hard x-ray phase microtomography

机译:硬X射线相显微断层照相术重建质量的优化

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摘要

For applications of hard x-ray propagation-based phase-contrast computed microtomography (PPCT) in high-resolution biological research, high spatial resolution and high contrast-to-noise ratio are simultaneously required for tiny structural discrimination and characterization. Most existing micro-CT techniques to improve image quality are limited by high cost, physical limitations, and complexity of the experimental hardware and setup. In this work, a novel PPCT technique, which combines a wavelet-transform-based modulation transform function compensation algorithm and a generalized phase-retrieval algorithm, is proposed to optimize the reconstruction quality of tomographic slices. Our experimental results, which compared the spatial resolutions and contrast-to-noiseratios of reconstructed images, demonstrated the validity of the proposed generalized PPCT technique. The experimental results showed that the proposed generalized PPCT technique is superior to the direct PPCT and the linearized phase-retrieval PPCT techniques. This novel PPCT technique demonstrates great potential for biological imaging, especially for applications that require high spatial resolution and limit radiation exposure. (C) 2015 Optical Society of America
机译:对于基于硬X射线传播的相衬计算显微断层照相术(PPCT)在高分辨率生物学研究中的应用,同时需要微小的结构分辨和表征需要高空间分辨率和高对比度噪声比。大多数现有的改善图像质量的微型CT技术都受到高成本,物理限制以及实验硬件和设置的复杂性的限制。在这项工作中,提出了一种新颖的PPCT技术,该技术结合了基于小波变换的调制变换函数补偿算法和广义的相位检索算法,以优化断层图像的重建质量。我们的实验结果比较了重建图像的空间分辨率和对比噪声,证明了所提出的广义PPCT技术的有效性。实验结果表明,所提出的广义PPCT技术优于直接PPCT和线性化相位检索PPCT技术。这项新颖的PPCT技术展示了生物成像的巨大潜力,特别是对于需要高空间分辨率和限制辐射暴露的应用。 (C)2015年美国眼镜学会

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