Myocardial Iron Loading Assessment by Automatic Left Ventricle Segmentation with Morphological Operations and Geodesic Active Contour on T2* images
暂无分享,去创建一个
Lin Shi | Defeng Wang | Pheng-Ann Heng | Jing Qin | Linong Li | Yun-gang Luo | Jacky KL Ko | Yuefeng Guan | Winnie CW Chu | P. Heng | Jing Qin | Lin Shi | W. Chu | Defeng Wang | Yun-Gang Luo | Jacky K. L. Ko | Yuefeng Guan | Linong Li | Yungang Luo
[1] Suyash P. Awate,et al. Computer Vision, Graphics, and Image Processing , 2016, Lecture Notes in Computer Science.
[2] Marcos Martín-Fernández,et al. Unsupervised 4D myocardium segmentation with a Markov Random Field based deformable model , 2011, Medical Image Anal..
[3] V. Positano,et al. Preferential patterns of myocardial iron overload by multislice multiecho T*2 CMR in thalassemia major patients , 2010, Magnetic resonance in medicine.
[4] Massimo Midiri,et al. Multislice multiecho T2* cardiac magnetic resonance for the detection of heterogeneous myocardial iron distribution in thalassaemia patients , 2009, NMR in biomedicine.
[5] Massimo Midiri,et al. Multicenter validation of the magnetic resonance t2* technique for segmental and global quantification of myocardial iron , 2009, Journal of magnetic resonance imaging : JMRI.
[6] V. Positano,et al. Influence of myocardial fibrosis and blood oxygenation on heart T2* values in thalassemia patients , 2009, Journal of magnetic resonance imaging : JMRI.
[7] Joseph V Hajnal,et al. Reperfusion hemorrhage following acute myocardial infarction: assessment with T2* mapping and effect on measuring the area at risk. , 2009, Radiology.
[8] A. Herment,et al. An automated myocardial segmentation in cardiac MRI , 2007, 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[9] Paul F. Whelan,et al. Left-ventricle myocardium segmentation using a coupled level-set with a priori knowledge , 2006, Comput. Medical Imaging Graph..
[10] Milan Sonka,et al. Robust active appearance models and their application to medical image analysis , 2005, IEEE Transactions on Medical Imaging.
[11] Thomas D. Coates,et al. Cardiac Iron Determines Cardiac T2*, T2, and T1 in the Gerbil Model of Iron Cardiomyopathy , 2005, Circulation.
[12] Johan Montagnat,et al. 4D deformable models with temporal constraints: application to 4D cardiac image segmentation , 2005, Medical Image Anal..
[13] Olivier D. Faugeras,et al. Approximations of Shape Metrics and Application to Shape Warping and Empirical Shape Statistics , 2005, Found. Comput. Math..
[14] Marvin D Nelson,et al. Myocardial iron loading in transfusion-dependent thalassemia and sickle cell disease. , 2004, Blood.
[15] A. Cnaan,et al. Survival and complications in patients with thalassemia major treated with transfusion and deferoxamine. , 2004, Haematologica.
[16] Jens von Berg,et al. Automated Segmentation of the Left Ventricle in Cardiac MRI , 2003, MICCAI.
[17] Alejandro F. Frangi,et al. Automatic construction of multiple-object three-dimensional statistical shape models: application to cardiac modeling , 2002, IEEE Transactions on Medical Imaging.
[18] J. Porter,et al. Monitoring chelation therapy to achieve optimal outcome in the treatment of thalassaemia. , 2002, Best practice & research. Clinical haematology.
[19] D N Firmin,et al. Cardiovascular T2-star (T2*) magnetic resonance for the early diagnosis of myocardial iron overload. , 2001, European heart journal.
[20] D. Tsiapras,et al. Heart failure in beta thalassemia: a 5-year follow-up study. , 2001, The American journal of medicine.
[21] Matthew Darlison,et al. Survival in β-thalassaemia major in the UK: data from the UK Thalassaemia Register , 2000, The Lancet.
[22] J. Porter,et al. Long-term outcome of continuous 24-hour deferoxamine infusion via indwelling intravenous catheters in high-risk β-thalassemia , 2000 .
[23] J. Porter,et al. Long-term outcome of continuous 24-hour deferoxamine infusion via indwelling intravenous catheters in high-risk beta-thalassemia. , 2000, Blood.
[24] Josef Kittler,et al. Automatic watershed segmentation of randomly textured color images , 1997, IEEE Trans. Image Process..
[25] Guy Marchal,et al. Multimodality image registration by maximization of mutual information , 1997, IEEE Transactions on Medical Imaging.
[26] R. Kimmel,et al. Geodesic Active Contours , 1995, Proceedings of IEEE International Conference on Computer Vision.
[27] Baba C. Vemuri,et al. Shape Modeling with Front Propagation: A Level Set Approach , 1995, IEEE Trans. Pattern Anal. Mach. Intell..
[28] Demetri Terzopoulos,et al. A dynamic finite element surface model for segmentation and tracking in multidimensional medical images with application to cardiac 4D image analysis. , 1995, Computerized medical imaging and graphics : the official journal of the Computerized Medical Imaging Society.
[29] A. Piga,et al. SURVIVAL AND CAUSES OF DEATH IN THALASSAEMIA MAJOR , 1989, The Lancet.
[30] S. Osher,et al. Algorithms Based on Hamilton-Jacobi Formulations , 1988 .
[31] J. Sethian,et al. Fronts propagating with curvature-dependent speed: algorithms based on Hamilton-Jacobi formulations , 1988 .
[32] Gunilla Borgefors,et al. Distance transformations in digital images , 1986, Comput. Vis. Graph. Image Process..
[33] S. Ganapathy,et al. Applications Of Computer Vision , 1976, Optics & Photonics.