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MediVol: An initial Study into Real-Time, Interactive 3D Visualisation of Soft Tissue Pathologies.

, , , and . DS-RT, page 103-110. IEEE Computer Society, (2008)

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Benchmarking: The end of the process., , , , , and . IGARSS, page 2211-2212. IEEE, (2007)Automatic Generation of Statistical Pose and Shape Models for Articulated Joints., , , and . IEEE Trans. Med. Imaging, 33 (2): 372-383 (2014)MediVol: An initial Study into Real-Time, Interactive 3D Visualisation of Soft Tissue Pathologies., , , and . DS-RT, page 103-110. IEEE Computer Society, (2008)Active shape model unleashed with multi-scale local appearance., , , and . ICIP, page 4664-4668. IEEE, (2015)Automatic Inference and Measurement of 3D Carpal Bone Kinematics From Single View Fluoroscopic Sequences., , , and . IEEE Trans. Med. Imaging, 32 (2): 317-328 (2013)Active appearance pyramids for object parametrisation and fitting., , , and . Medical Image Analysis, (2016)Deformable appearance pyramids for anatomy representation, landmark detection and pathology classification., , and . Int. J. Comput. Assist. Radiol. Surg., 12 (8): 1271-1280 (2017)MediVol: A Practical Initial Evaluation of Refined, 3D, Interactive Volumetric Representations of Soft Tissue Pathologies in Virtual Environments., , , , and . DS-RT, page 73-81. IEEE Computer Society, (2009)Wavelet Appearance Pyramids for Landmark Detection and Pathology Classification: Application to Lumbar Spinal Stenosis., , , , and . MICCAI (2), volume 9901 of Lecture Notes in Computer Science, page 274-282. (2016)Inferring 3D Kinematics of Carpal Bones from Single View Fluoroscopic Sequences., , , and . MICCAI (2), volume 6892 of Lecture Notes in Computer Science, page 680-687. Springer, (2011)