 | 2011 |
| 9 |  | David R. Burton,
Mark F. Murphy,
Francis Lilley,
Munther A. Gdeisat:
The formulation of a non-linear hertzian model in order to assess the mechanical strength of human cells based on data from an atomic force microscope.
ICIP 2011: 3061-3064 |
| 8 |  | Ahmed Ahtaiba,
Munther A. Gdeisat,
David R. Burton,
Francis Lilley,
Mark F. Murphy,
Gary Johnston:
A novel technique for the restoration of atomic force microscope images enabling an approximation of AFM impulse response.
ICIP 2011: 3065-3068 |
| 7 |  | Gary Johnston,
David R. Burton,
Francis Lilley,
Annette Doyle,
Mark F. Murphy,
Greg Madden,
Munther A. Gdeisat,
Christopher J. Moore,
Tom Marchant,
Bogdan J. Matuszewski:
Analysis of microscopy and reconstructive images for applications in medicine and biology.
ICIP 2011: 3069-3072 |
| 6 |  | Bogdan J. Matuszewski,
Mark F. Murphy,
David R. Burton,
Tom E. Marchant,
Christopher J. Moore,
Aymeric Histace,
Frédéric Precioso:
Segmentation of cellular structures in actin tagged fluorescence confocal microscopy images.
ICIP 2011: 3081-3084 |
| 2006 |
| 5 |  | Christopher J. Moore,
P. J. Sharrock,
Francis Lilley,
David R. Burton:
3D Body Surface Measurement and Display in Radiotherapy Part II: Dynamic Surface Sensing and Visualisation.
MediVis 2006: 103-108 |
| 4 |  | Christopher J. Moore,
P. J. Sharrock,
Francis Lilley,
David R. Burton:
3D Body Surface Measurement and Display in Radiotherapy Part III: Respiration and Deformation in Post-Surgical Breast Cancer Patients.
MediVis 2006: 109-114 |
| 3 |  | Christopher J. Moore,
David R. Burton,
O. Skydan,
P. J. Sharrock,
Michael Lalor:
3D Body Surface Measurement and Display in Radiotherapy Part I: Technology of Structured Light Surface Sensing.
MediVis 2006: 97-102 |
| 2001 |
| 2 |  | Christopher J. Moore,
Michael Tornow,
P. J. Sharrock,
Francis Lilley,
Michael Lalor,
David R. Burton:
Dynamic Background Correction in 3Dt Body Surface Sensing & Visualisation.
IV 2001: 444-448 |
| 2000 |
| 1 |  | Egor Zindy,
Christopher J. Moore,
David R. Burton,
Michael Lalor:
Morphological Definition of Anatomic Shapes Using Minimal Datasets.
IV 2000: 366- |