2008 |
11 | EE | Andrew Hill,
Andrew Mehnert,
Stuart Crozier:
A Fast, Segmentation-Free, Method for Constructing a Biomechanical Model of the Breast from DCE-MRI Data.
DICTA 2008: 386-391 |
2000 |
10 | EE | Andrew Hill,
Christopher J. Taylor,
Alan D. Brett:
A Framework for Automatic Landmark Identification Using a New Method of Nonrigid Correspondence.
IEEE Trans. Pattern Anal. Mach. Intell. 22(3): 241-251 (2000) |
1999 |
9 | EE | Alan D. Brett,
Andrew Hill,
Christopher J. Taylor:
A method of 3D surface correspondence and interpolation for merging shape examples.
Image Vision Comput. 17(8): 635-642 (1999) |
1997 |
8 | EE | Alan D. Brett,
Andrew Hill,
Christopher J. Taylor:
A Method of 3D Surface Correspondence for Automated Landmark Generation.
BMVC 1997 |
7 | | Andrew Hill,
Alan D. Brett,
Christopher J. Taylor:
Automatic Landmark Identification Using a New Method of Non-rigid Correspondence.
IPMI 1997: 483-488 |
1996 |
6 | EE | Andrew Hill,
Christopher J. Taylor:
A Method of Non-Rigid Correspondence for AutomaticLandmark Identification.
BMVC 1996 |
5 | EE | Andrew Hill,
Timothy F. Cootes,
Christopher J. Taylor:
Active Shape Models and the shape approximation problem.
Image Vision Comput. 14(8): 601-607 (1996) |
1994 |
4 | EE | Timothy F. Cootes,
Andrew Hill,
Christopher J. Taylor,
J. Haslam:
Use of active shape models for locating structures in medical images.
Image Vision Comput. 12(6): 355-365 (1994) |
1993 |
3 | | Timothy F. Cootes,
Andrew Hill,
Christopher J. Taylor,
J. Haslam:
The Use of Active Shape Models for Locating Structures in Medical Images.
IPMI 1993: 33-47 |
1992 |
2 | | Andrew Hill,
Christopher J. Taylor,
Timothy F. Cootes:
Object Recognition by Flexible Template Matching using Genetic Algorithms.
ECCV 1992: 852-856 |
1 | EE | Andrew Hill,
Christopher J. Taylor:
Model-based image interpretation using genetic algorithms.
Image Vision Comput. 10(5): 295-300 (1992) |