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Characterisation of a breast tomosynthesis unit to simulate images

机译:乳房断层合成单元的表征以模拟图像

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The aim of this work is to characterise the image quality of a mammography system in both planar and tomosynthesis imaging modes for the purpose of realistic image simulation. The simulation technique will be applied to projected images from voxelised breast phantoms to investigate the imaging properties of different configurations of tomosynthesis systems. Methods: A Hologic Dimensions mammography system was characterised in terms of noise, sharpness, and lag in both planar and tomosythesis modes. The noise power spectra (NPS) were measured for both imaging modes. The contributions (noise coefficients) to the NPS from electronic, quantum and structure noise were calculated. Results: The MTF was shown to be affected by the focal spot size and the movement of the X-ray tube. These effects can be modelled in the tomosynthesis projection images using an extended source. The quantum noise coefficients for the two imaging modes showed a close match up to the Nyquist frequency of the tomosynthesis mode, while the electronic and structure noise showed differences. The effect of lag and ghosting caused the signal in the last projection of a tomosynthesis run to be between 2 and 4% higher than the first. Conclusions: We have characterised the noise and resolution properties of images from a Hologic Dimensions tomosynthesis system. This forms the basis of further work required to create a model for applying imaging characteristics to mathematically produced images. More work is required on detector lag and ghosting and the influence of oblique X-ray incidence.
机译:本作作品的目的是为逼真的图像模拟来表征乳房X线摄影系统中的乳房X线摄影系统的图像质量。仿真技术将应用于来自体毛胸型母乳型的投影图像,以研究不同配置的分枝型系统的成像性质。方法:在平面和断层周期模式中,HOLOG尺寸乳腺X线摄影系统的特征在于噪声,清晰度和滞后。针对两种成像模式测量噪声功率谱(NPS)。计算来自电子,量子和结构噪声的NP的贡献(噪声系数)。结果:显示MTF受焦点尺寸的影响和X射线管的运动。这些效果可以使用扩展源在Tomosynthesis投影图像中进行建模。两种成像模式的量子噪声系数显示到Tomos合成模式的奈奎斯特频率的紧密匹配,而电子和结构噪声显示出差异。滞后和重影的效果引起了突起的突起中的信号在Tomosynthesis的最后一个投影中延伸至比第一的2%至4%。结论:我们已经表征了来自Hologic尺寸的图像的噪声和分辨率性质。这构成了创建用于将成像特性应用于数学制作的图像的模型所需的进一步工作的基础。探测器滞后和重影以及斜X射线发病率的影响需要更多的工作。

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