Steven C. Mitchell

According to our database1, Steven C. Mitchell authored at least 22 papers between 2000 and 2006.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

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Bibliography

2006
3D Active Shape and Appearance Models in Cardiac Image Analysis.
Proceedings of the Handbook of Mathematical Models in Computer Vision, 2006

2004
Segmentation of intravascular ultrasound images: a machine learning approach mimicking human vision.
Proceedings of the CARS 2004. Computer Assisted Radiology and Surgery. Proceedings of the 18th International Congress and Exhibition, 2004

2003
Disease characterization of active appearance model coefficients.
Proceedings of the Medical Imaging 2003: Image Processing, 2003

Automated classification of wall motion abnormalities by principal component analysis of endocardial shape motion patterns in echocardiograms.
Proceedings of the Medical Imaging 2003: Image Processing, 2003

Computer-aided diagnosis via model-based shape analysis: cardiac.
Proceedings of the CARS 2003. Computer Assisted Radiology and Surgery. Proceedings of the 17th International Congress and Exhibition, 2003

Integrated system for quantitative analysis of coronary plaque via data fusion of biplane angiography and intravascular ultrasound.
Proceedings of the CARS 2003. Computer Assisted Radiology and Surgery. Proceedings of the 17th International Congress and Exhibition, 2003

2002
3-D Active Appearance Models: Segmentation of Cardiac MR and Ultrasound Images.
IEEE Trans. Medical Imaging, 2002

Automatic Segmentation of Echocardiographic Sequences by Active Appearance Motion Models.
IEEE Trans. Medical Imaging, 2002

Segmentation of cardiac MR volume data using 3D active appearance models.
Proceedings of the Medical Imaging 2002: Image Processing, 2002

Fully automated endocardial contour detection in time sequences of echocardiograms by three-dimensional active appearance models.
Proceedings of the Medical Imaging 2002: Image Processing, 2002

2001
Multistage Hybrid Active Appearance Model Matching: Segmentation of Left and Right Ventricles in Cardiac MR Images.
IEEE Trans. Medical Imaging, 2001

Four-dimensional coronary morphology and computational hemodynamics.
Proceedings of the Medical Imaging 2001: Image Processing, 2001

Time-continuous segmentation of cardiac MR image sequences using active appearance motion models.
Proceedings of the Medical Imaging 2001: Image Processing, 2001

Active appearance motion models for endocardial contour detection in time sequences of echocardiograms.
Proceedings of the Medical Imaging 2001: Image Processing, 2001

Time-Continuous Segmentation of Cardiac Image Sequences Using Active Appearance Motion Models.
Proceedings of the Information Processing in Medical Imaging, 2001

Shape- and appearance-based segmentation of volumetric medical images.
Proceedings of the 2001 International Conference on Image Processing, 2001

Active Appearance Motion Model Segmentation.
Proceedings of the 2nd International Workshop on Digital and Computational Video (DCV 2001), 2001

Visualization of human coronary arteries with quantification results from 3-D and 4-D computational hemodynamics based upon virtual endoscopy.
Proceedings of the CARS 2001. Computer Assisted Radiology and Surgery. Proceedings of the 15th International Congress and Exhibition, 2001

Time continuous segmentation of cardiac MR images using Active Appearance Motion Models.
Proceedings of the CARS 2001. Computer Assisted Radiology and Surgery. Proceedings of the 15th International Congress and Exhibition, 2001

Active Appearance - Motion Models for fully automated endocardial contour detection in time sequences of echocardiograms.
Proceedings of the CARS 2001. Computer Assisted Radiology and Surgery. Proceedings of the 15th International Congress and Exhibition, 2001

2000
Quantitative Measurements in Geometrically Correct Representations of Coronary Vessels in 3-D and 4-D.
Proceedings of the 4th IEEE Southwest Symposium on Image Analysis and Interpretation, 2000

Segmentation of cardiac MR images: an active appearance model approach.
Proceedings of the Medical Imaging 2000: Image Processing, 2000


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