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Analysis of Image Noise in 3D Cone-Beam CT: Spatial and Fourier Domain Approaches under Conditions of Varying Stationarity

机译:平稳性变化条件下的3D锥束CT图像噪声分析:空间和傅立叶域方法

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The statistical properties of medical images are central in characterizing the performance of imaging systems. The noise in cone-beam CT (CBCT) is often characterized using Fourier-based metrics, such as the 3D noise-power spectrum (NPS). Under a stationarity assumption, the NPS provides a complete representation of the covariance of the images, since the covariance matrix of the Fourier transform of the image is diagonal. In practice, such assumptions are obeyed to varying degrees. The objective of this work is to investigate the degree to which such assumptions apply in CBCT and to experimentally characterize the NPS and off-diagonal elements under a range of experimental conditions. A benchtop CBCT system was used to acquire 3D image reconstructions of various objects (air and a water cylinder) across a range of experimental conditions that could affect stationarity (bowtie filter and dose). We test the stationarity assumption under such varying experimental conditions using both spatial and frequency domain measures of stationarity. The results indicate that experimental conditions affect the degree of stationarity and that under some imaging conditions, local descriptions of the noise need to be developed to appropriately describe CBCT images. The off-diagonal elements of the DFT covariance matrix may not always be ignored.
机译:医学图像的统计属性对于表征成像系统的性能至关重要。锥束CT(CBCT)中的噪声通常使用基于傅立叶的度量标准来表征,例如3D噪声功率谱(NPS)。在平稳性假设下,NPS提供了图像协方差的完整表示,因为图像的傅里叶变换的协方差矩阵是对角线。实际上,这些假设在不同程度上得到遵守。这项工作的目的是研究这种假设在CBCT中的适用程度,并在一系列实验条件下通过实验表征NPS和非对角线元素。台式CBCT系统用于在可能影响平稳性(领结过滤器和剂量)的一系列实验条件下获取各种物体(空气和水缸)的3D图像重建。我们在这种变化的实验条件下使用平稳性的空间和频域度量来测试平稳性假设。结果表明,实验条件会影响平稳程度,并且在某些成像条件下,需要开发噪声的局部描述以适当地描述CBCT图像。 DFT协方差矩阵的非对角线元素可能并不总是被忽略。

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