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Digital tomosynthesis mammography: Improvement of artifact reduction method for high-attenuation objects on reconstructed slices

机译:数字灌木合成乳房X线照片:改进重建切片上的高衰减物体的伪影减少方法

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One major image quality problem in digital tomosynthesis mammography (DTM) is the poor depth-resolution caused by the inherent incomplete sampling. This problem is more pronounced if high-attenuation objects, such as metallic markers and dense calcifications, are present in the breast. Strong ghosting artifacts will be generated in the depth direction in the reconstructed volume. Incomplete sampling of DTM can also cause visible ghosting artifacts in the x-ray source motion direction on the off-focus planes of the objects. These artifacts may interfere with radiologists' visual assessment and computerized analysis of subtle mammographic features. We previously developed an artifact reduction method by using 3D geometrical information of the objects estimated from the reconstructed slices. In this study, we examined the effect of imaging system blur in DTM caused by the focal spot and the detector modulation transformation function (MTF). The focal spot was simulated as a 0.3 mm square array of x-ray point sources. The detector MTF was simulated using the Burgess model with parameters derived from published data of a GE FFDM detector. The spatial-variant impulse responses for the DTM imaging system, which are required in our artifact reduction method, were then computed from the DTM imaging model and a given reconstruction technique. Our results demonstrated that inclusion of imaging system blur improved the performance of our artifact reduction method in terms of the visual quality of the corrected objects. The detector MTF had stronger effects than focal spot blur on artifact reduction under the imaging geometry used. Further work is underway to investigate the effects from other DTM imaging parameters, such as x-ray scattering, different polyenergetic x-ray spectra, and different configurations of angular range and angular sampling interval.
机译:数字染色体乳房X线摄影(DTM)中的一个主要图像质量问题是由固有的不完整采样引起的差的深度分辨率。如果乳房中存在高衰减对象,例如金属标记和致密钙化,则此问题更加明显。强烈的重影伪像将在重建的体积中的深度方向上产生。 DTM的不完全采样也可以在对象的偏移焦平面上造成X射线源运动方向上的可见重影伪像。这些工件可能会干扰放射科学师的视觉评估和计算机化分析对微妙的乳房X光学特征。我们之前通过使用从重建的切片估计的对象的3D几何信息开发了伪影减少方法。在这项研究中,我们检查了成像系统模糊在焦斑和检测器调制变换功能(MTF)引起的DTM中的效果。焦点被模拟为0.3mm的X射线点源阵列。使用Burgess模型模拟探测器MTF,其中具有从GE FFDM检测器的已发布数据的参数进行参数。然后,从DTM成像模型和给定的重建技术计算了我们的工件减少方法中所需的DTM成像系统的空间变体脉冲响应。我们的结果表明,包含成像系统的模糊在校正物体的视觉质量方面提高了我们的伪影减少方法的性能。探测器MTF在使用的成像几何下的术语变化上具有比焦点模糊更强的效果。正在进行进一步的工作来研究来自其他DTM成像参数的影响,例如X射线散射,不同的聚体X射线光谱和角度范围和角度采样间隔的不同配置。

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