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CAVAREVCArdiac VAsculature Reconstruction EValuation Downloads
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[1] O Taubmann et al. 2017: Spatio-temporally Regularized 4-D Cardiovascular C-arm CT Reconstruction Using a Proximal Algorithm. IEEE International Symposium on Biomedical Imaging (ISBI), Melbourne, Australia, pp. 52-55 [2] C Schwemmer et al. 2013: Opening Windows ‒ Increasing Window Size in Motion-Compensated ECG-gated Cardiac Vasculature Reconstruction. Proc. 12th intl. meeting on Fully Three-Dimensional Image Reconstruction in Radiology and Nuclear Medicine, Lake Tahoe, CA, USA, pp. 50-53 [3] C Schwemmer et al. 2013: Residual Motion Compensation in ECG-Gated Interventional Cardiac Vasculature Reconstruction. Phys. Med. Biol. 58(11), pp. 3717-3737 [4] C Rohkohl et al. 2008: C-Arm CT: Reconstruction of Dynamic High Contrast Objects Applied to the Coronary Sinus. IEEE NSS-MIC (Nuclear Science Symposium-Medical Imaging Conference), Dresden, Germany, pp. M10-328 [5] A Keil et al. 2009: Dynamic Cone-Beam Reconstruction Using a Variational Level Set Formulation. Fully3D, Beijing, China Some results for iterative methods which were not made public on the web platform have been published in: H Wu et al. 2011: Total Variation Regularization Method for 3-D Rotational Coronary Angiography. BVM (Bildverarbeitung für die Medizin), Lübeck, Germany, pp. 434-438 |