Quantitative cone-beam CT reconstruction with polyenergetic scatter model fusion

计算机科学 叠加原理 迭代重建 算法 工件(错误) 核(代数) 人工智能 计算机视觉 物理 数学 量子力学 组合数学
作者
Jonathan H. Mason,Alessandro Perelli,William H. Nailon,Mike E. Davies
出处
期刊:Physics in Medicine and Biology [IOP Publishing]
卷期号:63 (22): 225001-225001 被引量:5
标识
DOI:10.1088/1361-6560/aae794
摘要

Scatter can account for large errors in cone-beam CT (CBCT) due to its wide field of view, and its complicated nature makes its compensation difficult. Iterative polyenergetic reconstruction algorithms offer the potential to provide quantitative imaging in CT, but they are usually incompatible with scatter contaminated measurements. In this work, we introduce a polyenergetic convolutional scatter model that is directly fused into the reconstruction process, and exploits information readily available at each iteration for a fraction of additional computational cost. We evaluate this method with numerical and real CBCT measurements, and show significantly enhanced electron density estimation and artifact mitigation over pre-calculated fast adaptive scatter kernel superposition (fASKS). We demonstrate our approach has two levels of benefit: reducing the bias introduced by estimating scatter prior to reconstruction; and adapting to the spectral and spatial properties of the specimen.
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