Lower limb estimation from sparse landmarks using an articulated shape model.
暂无分享,去创建一个
[1] Paul J. Besl,et al. A Method for Registration of 3-D Shapes , 1992, IEEE Trans. Pattern Anal. Mach. Intell..
[2] Mark Taylor,et al. The MAP Client: User-Friendly Musculoskeletal Modelling Workflows , 2014, ISBMS.
[3] F. Eckstein,et al. Minimum joint space width and tibial cartilage morphology in the knees of healthy individuals: A cross-sectional study , 2008, BMC musculoskeletal disorders.
[4] Matija Milanič,et al. Numerical optimization of sequential cryogen spray cooling and laser irradiation for improved therapy of port wine stain , 2011, Lasers in surgery and medicine.
[5] Martin Styner,et al. Evaluation of 3D Correspondence Methods for Model Building , 2003, IPMI.
[6] Clare K Fitzpatrick,et al. A statistical finite element model of the knee accounting for shape and alignment variability. , 2013, Medical engineering & physics.
[7] F.E. Zajac,et al. An interactive graphics-based model of the lower extremity to study orthopaedic surgical procedures , 1990, IEEE Transactions on Biomedical Engineering.
[8] John Rasmussen,et al. Scaling of musculoskeletal models from static and dynamic trials , 2015 .
[9] Zoran Popovic,et al. The space of human body shapes: reconstruction and parameterization from range scans , 2003, ACM Trans. Graph..
[10] Thor F Besier,et al. Predictive statistical models of baseline variations in 3-D femoral cortex morphology. , 2016, Medical engineering & physics.
[11] J. Horn. A rationale and test for the number of factors in factor analysis , 1965, Psychometrika.
[12] A Leardini,et al. Position and orientation in space of bones during movement: anatomical frame definition and determination. , 1995, Clinical biomechanics.
[13] S. Delp,et al. Image‐based musculoskeletal modeling: Applications, advances, and future opportunities , 2007, Journal of magnetic resonance imaging : JMRI.
[14] H F J M Koopman,et al. Morphological muscle and joint parameters for musculoskeletal modelling of the lower extremity. , 2005, Clinical biomechanics.
[15] B. Koopman,et al. A subject-specific musculoskeletal modeling framework to predict in vivo mechanics of total knee arthroplasty. , 2015, Journal of biomechanical engineering.
[16] J. Ravlić-Gulan,et al. Femoral neck anteversion: values, development, measurement, common problems. , 2000, Collegium antropologicum.
[17] Hans-Christian Hege,et al. An articulated statistical shape model for accurate hip joint segmentation , 2009, 2009 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[18] Stephen J. Wright,et al. Numerical Optimization , 2018, Fundamental Statistical Inference.
[19] V Carbone,et al. Evaluation of a morphing based method to estimate muscle attachment sites of the lower extremity. , 2014, Journal of biomechanics.
[20] Ayman Habib,et al. OpenSim: Open-Source Software to Create and Analyze Dynamic Simulations of Movement , 2007, IEEE Transactions on Biomedical Engineering.
[21] Stuart Crozier,et al. Automatic Segmentation of Articular Cartilage in Magnetic Resonance Images of the Knee , 2007, MICCAI.
[22] Prasanth B. Nair,et al. Use of a statistical model of the whole femur in a large scale, multi-model study of femoral neck fracture risk. , 2009, Journal of biomechanics.
[23] D. Rueckert,et al. Predicting the shapes of bones at a joint: application to the shoulder , 2008, Computer methods in biomechanics and biomedical engineering.
[24] Marcel J. T. Reinders,et al. EXTRACTION OF SEMANTIC 3D MODELS OF HUMAN FACES FROM STEREOSCOPIC IMAGE SEQUENCES , 2007 .
[25] Massimo Sartori,et al. Subject-specific knee joint geometry improves predictions of medial tibiofemoral contact forces. , 2013, Journal of biomechanics.
[26] Eric Jones,et al. SciPy: Open Source Scientific Tools for Python , 2001 .
[27] Walter Herzog,et al. Model-based estimation of muscle forces exerted during movements. , 2007, Clinical biomechanics.
[28] Justin W. Fernandez,et al. Anatomically based geometric modelling of the musculo-skeletal system and other organs , 2004, Biomechanics and modeling in mechanobiology.
[29] Stuart Crozier,et al. Automatic segmentation of the bone and extraction of the bone–cartilage interface from magnetic resonance images of the knee , 2007, Physics in medicine and biology.
[30] Ju Zhang,et al. An anatomical region-based statistical shape model of the human femur , 2014, Comput. methods Biomech. Biomed. Eng. Imaging Vis..