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首页> 外文期刊>Medical Physics >Combined mixed approach algorithm for in-line phase-contrast x-ray imaging
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Combined mixed approach algorithm for in-line phase-contrast x-ray imaging

机译:在线相衬X射线成像的组合混合方法算法

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Purpose: In the past decade, phase-contrast imaging (PCI) has been applied to study different kinds of tissues and human body parts, with an increased improvement of the image quality with respect to simple absorption radiography. A technique closely related to PCI is phase-retrieval imaging (PRI). Indeed, PCI is an imaging modality thought to enhance the total contrast of the images through the phase shift introduced by the object (human body part); PRI is a mathematical technique to extract the quantitative phase-shift map from PCI. A new phase-retrieval algorithm for the in-line phase-contrast x-ray imaging is here proposed. Methods: The proposed algorithm is based on a mixed transfer-function and transport-of-intensity approach (MA) and it requires, at most, an initial approximate estimate of the average phase shift introduced by the object as prior knowledge. The accuracy in the initial estimate determines the convergence speed of the algorithm. The proposed algorithm retrieves both the object phase and its complex conjugate in a combined MA (CMA). Results: Although slightly less computationally effective with respect to other mixed-approach algorithms, as two phases have to be retrieved, the results obtained by the CMA on simulated data have shown that the obtained reconstructed phase maps are characterized by particularly low normalized mean square errors. The authors have also tested the CMA on noisy experimental phase-contrast data obtained by a suitable weakly absorbing sample consisting of a grid of submillimetric nylon fibers as well as on a strongly absorbing object made of a 0.03 mm thick lead x-ray resolution star pattern. The CMA has shown a good efficiency in recovering phase information, also in presence of noisy data, characterized by peak-to-peak signal-to-noise ratios down to a few dBs, showing the possibility to enhance with phase radiography the signal-to-noise ratio for features in the submillimetric scale with respect to the attenuation-based imaging. Conclusions: It has been shown that phase-retrieved radiographies can be used both to have quantitative phase information about soft tissues, complementary to the attenuation information, and to enhance the visibility of details inside soft tissues, with higher efficiency with respect to phase radiography.
机译:目的:在过去的十年中,相衬成像(PCI)已被用于研究不同种类的组织和人体部位,相对于简单的吸收射线照相术,图像质量得到了提高。与PCI密切相关的技术是相位检索成像(PRI)。实际上,PCI是一种成像方式,旨在通过物体(人体部位)引入的相移来增强图像的总体对比度。 PRI是一种从PCI提取定量相移图的数学技术。在此提出了一种新的在线相衬X射线成像的相位检索算法。方法:所提出的算法基于混合传递函数和强度传输方法(MA),并且最多需要对对象引入的平均相移进行初步的近似估计,作为先验知识。初始估计的准确性决定了算法的收敛速度。所提出的算法在组合MA(CMA)中检索对象相位及其复杂共轭。结果:尽管相对于其他混合方法算法,计算效率稍差,但由于必须检索两个相位,CMA在模拟数据上获得的结果表明,所获得的重构相位图的特征在于特别低的归一化均方误差。作者还用由亚微米级尼龙纤维网格组成的合适的弱吸收样品以及由0.03 mm厚的铅X射线分辨星图制成的强吸收物体测试了嘈杂的实验相衬数据,对CMA进行了测试。 。 CMA在有噪声数据的情况下也显示了恢复相位信息的良好效率,其特征是峰峰值信噪比低至几dB,这表明通过相位射线照相可以增强信号对相对于基于衰减的成像,亚毫米级特征的噪声比。结论:已经证明,相移射线照相术既可以用于获得关于软组织的定量相信息,与衰减信息互补,又可以用于增强软组织内部细节的可见性,并且相对于相射线照相术具有更高的效率。

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