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首页> 外文期刊>Medical engineering & physics. >Computation of realistic virtual phantom images for an objective lesion detectability assessment in digital mammography.
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Computation of realistic virtual phantom images for an objective lesion detectability assessment in digital mammography.

机译:计算真实的虚拟体模图像,以便在数字乳腺X线摄影术中进行客观的病变可检测性评估。

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摘要

Image quality assessment is required for an optimal use of mammographic units. On the one hand, there are objective image quality assessment methods based on the measurement of technical parameters such as modulation transfer function (MTF), noise power spectrum (NPS) or detection quantum efficiency (DQE) describing performances of digital detectors. These parameters are, however, without direct relationship with lesion detectability in clinical practice. On the other hand, there are image quality assessment methods involving time consuming procedures, but presenting a direct relationship with lesion detectability. This contribution describes an X-ray source/digital detector model leading to the simulation of virtual contrast-detail phantom (CDMAM) images. The virtual image computation method requires the acquisition of only few real images and allows for an objective image quality assessment presenting a direct relationship with lesion detectability. The transfer function of the proposed model takes as input physical parameters (MTF* and noise) measured under clinical conditions on mammographic units. As presented in this contribution, MTF* is a modified MTF taking into account the effects due to X-ray scatter in the breast and magnification. Results obtained with the structural similarity index prove that the simulated images are quite realistic in terms of contrast and noise. Tests using contrast detail curves highlight the fact that the simulated and real images lead to very similar data quality in terms of lesion detectability. Finally, various statistical tests show that quality factors computed for both the simulated images and the real images are very close for the two data sets.
机译:需要对图像质量进行评估,以最佳地使用乳房X线照相设备。一方面,存在基于技术参数的测量的客观图像质量评估方法,例如描述数字检测器性能的调制传递函数(MTF),噪声功率谱(NPS)或检测量子效率(DQE)。然而,这些参数在临床实践中与病变的可检测性没有直接关系。另一方面,存在图像质量评估方法,该过程涉及耗时的过程,但呈现出与病变可检测性的直接关系。该文稿描述了一种X射线源/数字检测器模型,可用于模拟虚拟对比度细节体模(CDMAM)图像。虚拟图像计算方法仅需要获取很少的真实图像,并且可以进行客观的图像质量评估,呈现与病变可检测性的直接关系。所提出模型的传递函数将在临床条件下在乳房X线照相装置上测量的物理参数(MTF *和噪声)作为输入。如本文稿所述,MTF *是经过修改的MTF,其中考虑了X射线在乳房中的散射和放大倍数带来的影响。使用结构相似性指数获得的结果证明,在对比度和噪声方面,模拟图像相当逼真。使用对比细节曲线进行的测试强调了这样一个事实,就病变的可检测性而言,模拟图像和真实图像会导致非常相似的数据质量。最后,各种统计测试表明,对于这两个数据集,为模拟图像和真实图像计算的质量因子非常接近。

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