« Previous
Next »
Medical Engineering & Physics
Volume 31, Issue 6
, Pages 681-687
, July 2009
3D reconstruction of the spine from biplanar X-rays using parametric models based on transversal and longitudinal inferences
References
- . Optimized vertical stereo base radiographic setup for the clinical three-dimensional reconstruction of the human spine. J Biomech. 1994;27(8):1023–1035
- . Morphometric evaluations of personalised 3D reconstructions and geometric models of the human spine. Med Biol Eng Comput. 1997;35(6):611–618
- . Three-dimensional measurement of wedged scoliotic vertebrae and intervertebral disks. Eur Spine J. 1998;7(1):59–65
- . An accurate pelvis axis system using low dose X-ray device. In: CAOS 6th Internationale Conference. Montréal. 2006;
- . 3D/2D registration and segmentation of scoliotic vertebrae using statistical models. Comput Med Imaging Graph. 2003;27(5):321–337
- Champain N. Recherche des facteurs biomécaniques dans l’aggravation des scolioses idiopathiques. Thèse de doctorat en biomécanique, ENSAM, Paris, France; 2004.
- . Influential observations, high leverage points, and outliers in linear regression. Stat Sci. 1986;1(3):415–416
- . A novel system for the 3-D reconstruction of the human spine and rib cage from biplanar X-ray images. IEEE Trans Biomed Eng. 2007;54(7):1356–1358
- . Measurements of the three-dimensional shape of the rib cage. J Biomech. 1988;21(11):893–901
- Delorme S. Application du krigeage pour l’habillage et la personnalisation du modèle géométrique de la scoliose. Mémoire de Maitrise de l’Ecole Polytechnique de l’Université de Montréal; 1996.
- . Assessment of the 3-D reconstruction and high-resolution geometrical modeling of the human skeletal trunk from 2-D radiographic images. IEEE Trans Biomed Eng. 2003;50(8):989–998
- . Importance of the three-dimensional concept in the treatment of scoliotic deformities. In: Proceedings of VIIth International Symposium on 3-D Scoliotic Deformities. Montréal, Canada. 1992;
- A new 2D and 3D imaging approach to musculoskeletal physiology and pathology with low-dose radiation and the standing position: the EOS system. Bull Acad Natl Med. 2005;189(2):287–297[discussion 297–300]
- A semi-automated method using interpolation and optimisation for the 3D reconstruction of the spine from bi-planar radiography: a precision and accuracy study. Med Biol Eng Comput. 2008;46(1):85–92
- Explicit calibration method and specific device designed for stereoradiography. J Biomech. 2003;36(6):827–834
- Fleute M. Shape reconstruction for computer assisted surgery based on non-rigid registration of statistical models with intra-operative point data and X-ray images. PhD Thesis, Université Joseph Fourrier, Grenoble, France; 2001.
- . Three-dimensional spinal and pelvic alignment in an asymptomatic population. Spine. 2006;31(15):E507–E512
- . Reliability of 3D reconstruction of the spine of mild scoliotic patients. Spine. 2007;32(5):568–573
- . Accurate assessment of precision errors: how to measure the reproducibility of bone densitometry techniques. Osteoporos Int. 1995;5(4):262–270
- Ismael B. Etude morphométrique des vertèbres thoraciques. Mémoire de DEA de l’ENSAM, Paris; 1995.
- ISO-5725. Accuracy (trueness and precision) of measurement methods and results; 1994.
- . Accurate pedicle screw insertion under the control of a computer-assisted image guiding system: laboratory test and clinical study. J Orthop Sci. 1999;4(3):197–206
- . Variability of geometric measurements from three-dimensional reconstructions of scoliotic spines and rib cages. Eur Spine J. 1995;4(2):88–94
- Quantitative morphometric study of thoracic spine a preliminary parameters statistical analysis. Eur J Orthop Surg Traumatol. 2000;10:85–91
- . 3D detailed reconstruction of vertebrae with low dose digital stereoradiography. Stud Health Technol Inform. 2002;91:286–290
- . Reducing the lifetime risk of cancer from spinal radiographs among people with adolescent idiopathic scoliosis. Spine. 1996;21(13):1540–1547[discussion 1548]
- . 3D reconstruction method from biplanar radiography using non-stereocorresponding points and elastic deformable meshes. Med Biol Eng Comput. 2000;38(2):133–139
- . Three-dimensional surface rendering reconstruction of scoliotic vertebrae using a non stereo-corresponding points technique. Eur Spine J. 2002;11(4):344–352
- . Three-dimensional analysis of formation failure in congenital scoliosis. Spine. 2007;32(5):562–567
- Morphometric analysis of one anatomic scoliotic specimen. Stud Health Technol Inform. 2002;88:387–392
- . ‘La scoliose, son étude tridimensionnelle’. Paris: Maloine; 1979;
- . Morphology of scoliosis: three-dimensional evolution. Orthopedics. 1987;10(6):909–915
- . Fast accurate stereoradiographic 3D-reconstruction of the spine using a combined geometric and statistic model. Clin Biomech (Bristol, Avon). 2004;19(3):240–247
- . Quantitative 3D anatomy of the lumbar spine. Rev Chir Orthop Reparatrice Appar Mot. 2001;87(4):340–353
- . Quantification of three-dimensional vertebral rotations in scoliosis: what are the true values?. Spine. 1995;20(5):546–553
- . Surgical correction of scoliosis by in situ contouring: a detorsion analysis. Spine. 2004;29(2):193–199
- . Three-dimensional terminology of spinal deformity. A report presented to the Scoliosis Research Society by the Scoliosis Research Society Working Group on 3-D terminology of spinal deformity. Spine. 1994;19(2):236–248
- . A contouring program based on dual kriging interpolation. Eng Comput. 1993;9(3):160–177
- Veron S. Modélisation géométrique et mécanique tridimensionnelle par éléments finis du rachis cervical supérieur. Thèse de doctorat en mécanique, ENSAM, Paris, France; 1997.
- . Measurement of vertebral rotation in standing versus supine position in adolescent idiopathic scoliosis. J Pediatr Orthop. 2001;21(2):252–256
PII: S1350-4533(09)00037-X
doi: 10.1016/j.medengphy.2009.01.003
© 2009 IPEM. Published by Elsevier Inc. All rights reserved.
« Previous
Next »
Medical Engineering & Physics
Volume 31, Issue 6
, Pages 681-687
, July 2009
