Spectral Orbits: Combining Spectral Imaging and Non-Circular Orbits for Interventional CBCT.

Grace J Gang
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Abstract

Cone-beam CT imaging using non-circular orbits has been demonstrated to be effective in reducing artifacts around metal. With the increasing interest in spectral imaging in the interventional suite, there are potential advantages to combine both technologies to yield further image quality benefits. We simulated a neuro-interventional application where imaging around the embolization is challenged by metal artifacts and the differentiation of bleeds and contrast extravasation is difficult with single-energy imaging. The imaging system was simulated with a dual-layer detector and different sinusoidal orbits. Material decomposition used a projection-domain approach followed by a model-based reconstruction of the density line integrals of each basis. The spectral non-circular orbits acquisitions were compared with single-energy circular, single-energy non-circular, and spectral circular orbits. Results using spectral non-circular orbit contain minimal metal artifacts and allow the differentiation of bleeds and contrast extravasation, demonstrating the potential of the combined technologies.

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光谱轨道:将光谱成像和非圆形轨道结合用于介入 CBCT。
使用非圆形轨道的锥形束 CT 成像已被证明能有效减少金属周围的伪影。随着介入手术室对光谱成像的兴趣与日俱增,将这两种技术结合起来可进一步提高成像质量。我们模拟了一种神经介入应用,在这种应用中,栓塞周围的成像受到金属伪影的挑战,单能量成像很难区分出血和造影剂外渗。模拟成像系统采用了双层探测器和不同的正弦轨道。材料分解采用投影域方法,然后对每个基点的密度线积分进行基于模型的重建。光谱非圆轨道采集与单能量圆轨道、单能量非圆轨道和光谱圆轨道进行了比较。使用光谱非圆轨道获得的结果含有极少的金属伪影,并能区分出血和对比剂外渗,这证明了组合技术的潜力。
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CT Reconstruction using Nonlinear Diffusion Posterior Sampling with Detector Blur Modeling. CT Material Decomposition using Spectral Diffusion Posterior Sampling. Joint Material Decomposition and Scatter Estimation for Spectral CT. Spectral Orbits: Combining Spectral Imaging and Non-Circular Orbits for Interventional CBCT. Lifelike and Deformable Lung Phantoms for 4DCT Imaging: A Three-Dimensional Printing Approach.
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