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Research Article

Determination of the Whiteside line on femur surface models by fitting high-order polynomial functions to cross-section profiles of the intercondylar fossa

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Pages 71-85 | Received 18 Oct 2010, Accepted 06 Jan 2011, Published online: 15 Feb 2011

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Pietro Cerveri, Guido Baroni, Norberto Confalonieri & Alfonso Manzotti. (2016) Patient-specific modeling of the trochlear morphologic anomalies by means of hyperbolic paraboloids. Computer Assisted Surgery 21:1, pages 29-38.
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Pietro Cerveri, Alfonso Manzotti, Mario Marchente, Norberto Confalonieri & Guido Baroni. (2012) Mean-shifted surface curvature algorithm for automatic bone shape segmentation in orthopedic surgery planning: a sensitivity analysis. Computer Aided Surgery 17:3, pages 128-141.
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Articles from other publishers (6)

Nisha Crouser, Jonathan Wright, Alex DiBartola, David Flanigan & Robert Duerr. (2022) Intercondylar Notch Pathology. The Journal of Knee Surgery.
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Christopher R. Newman, William L. Walter & Simon Talbot. (2018) Femoral rotational asymmetry is a common anatomical variant. Clinical Anatomy 31:4, pages 551-559.
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Tat Woon Chao, Liam Geraghty, Pandelis Dimitriou & Simon Talbot. (2017) Averaging rotational landmarks during total knee arthroplasty reduces component malrotation caused by femoral asymmetry. Journal of Orthopaedic Surgery and Research 12:1.
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Simon Talbot, Pandelis Dimitriou, Ross Radic, Rachel Zordan & John Bartlett. (2014) The sulcus line of the trochlear groove is more accurate than Whiteside’s Line in determining femoral component rotation. Knee Surgery, Sports Traumatology, Arthroscopy 23:11, pages 3306-3316.
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Pietro Cerveri, Alfonso Manzotti, Norberto Confalonieri & Guido Baroni. (2014) Automating the design of resection guides specific to patient anatomy in knee replacement surgery by enhanced 3D curvature and surface modeling of distal femur shape models. Computerized Medical Imaging and Graphics 38:8, pages 664-674.
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Pietro Cerveri, Mario Marchente, Cesare Chemello, Norberto Confalonieri, Alfonso Manzotti & Guido Baroni. (2011) Advanced Computational Framework for the Automatic Analysis of the Acetabular Morphology from the Pelvic Bone Surface for Hip Arthroplasty Applications. Annals of Biomedical Engineering 39:11, pages 2791-2806.
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