Common 3-dimensional coordinate system for assessment of directional changes.
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Nivaldo Alonso | Cristiano Tonello | Bernardo Quiroga Souki | R. S. Coqueiro | L. Cevidanes | J. Gonçalves | B. Souki | A. Ruellas | M. Yatabe | Antonio Carlos de Oliveira Ruellas | Liliane Rosas Gomes | Marilia Sayako Yatabe | Lucie Macron | Julia Lopinto | Joao Roberto Goncalves | Daniela Gamba Garib Carreira | Raildo da Silva Coqueiro | Lucia Helena Soares Cevidanes | N. Alonso | L. Gomes | C. Tonello | Lucie Macron | Julia Lopinto | R. Coqueiro
[1] A. Beckett,et al. AKUFO AND IBARAPA. , 1965, Lancet.
[2] A. Björk,et al. Growth of the Maxilla in Three Dimensions as Revealed Radiographically by the Implant Method , 1977, British journal of orthodontics.
[3] B. Melsen. Effects of cervical anchorage during and after treatment: an implant study. , 1978, American journal of orthodontics.
[4] F. Bookstein,et al. The inappropriateness of conventional cephalometrics. , 1979, American journal of orthodontics.
[5] J M Bland,et al. Statistical methods for assessing agreement between two methods of clinical measurement , 1986 .
[6] B. Sarnat. Some methods of assessing postnatal craniofaciodental growth: a retrospective of personal research. , 1997, The Cleft palate-craniofacial journal : official publication of the American Cleft Palate-Craniofacial Association.
[7] M W Vannier,et al. Quantitative analysis of spiral computed tomography for craniofacial clinical applications. , 1998, Dento maxillo facial radiology.
[8] M W Vannier,et al. Craniofacial measurements based on 3D-CT volume rendering: implications for clinical applications. , 2004, Dento maxillo facial radiology.
[9] Manuel O Lagravère,et al. Proposed reference point for 3-dimensional cephalometric analysis with cone-beam computerized tomography. , 2005, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[10] Guido Gerig,et al. User-guided 3D active contour segmentation of anatomical structures: Significantly improved efficiency and reliability , 2006, NeuroImage.
[11] Manuel O Lagravère,et al. Plane orientation for standardization in 3-dimensional cephalometric analysis with computerized tomography imaging. , 2006, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[12] A. Björk,et al. Sutural growth of the upper face studied by the implant method , 2007 .
[13] J. McNamara,et al. Cephalometric superimpositions. , 2008, The Angle orthodontist.
[14] Marie A Cornelis,et al. Superimposition of 3-dimensional cone-beam computed tomography models of growing patients. , 2009, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[15] L. Will,et al. Editor's Summary and Q&A: Accuracy and reliability of linear cephalometric measurements from cone-beam computed tomography scans of a dry human skull , 2009 .
[16] Bassam Hassan,et al. Accuracy of three-dimensional measurements obtained from cone beam computed tomography surface-rendered images for cephalometric analysis: influence of patient scanning position. , 2009, European journal of orthodontics.
[17] L. Will,et al. Accuracy and reliability of linear cephalometric measurements from cone-beam computed tomography scans of a dry human skull. , 2009, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[18] L. Cevidanes,et al. [Three-dimensional superimposition of the skull base for the longitudinal evaluation of the effects of growth and of treatment]. , 2009, L' Orthodontie francaise.
[19] M. Styner,et al. [Three-dimensional superimposition of the skull base for the longitudinal evaluation of the effects of growth and of treatment]. , 2009, l Orthodontie Française.
[20] John B Ludlow,et al. Precision of cephalometric landmark identification: cone-beam computed tomography vs conventional cephalometric views. , 2009, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[21] Jaime Gateno,et al. Development of a Technique for Recording and Transferring Natural Head Position in 3 Dimensions , 2010, The Journal of craniofacial surgery.
[22] Isabelle De Groote,et al. Technical note: A new method for measuring long bone curvature using 3D landmarks and semi-landmarks. , 2010, American journal of physical anthropology.
[23] Ana E. F. Oliveira,et al. Superimposition of 3D cone-beam CT models in orthognathic surgery. , 2010, Dental press journal of orthodontics.
[24] James L Ackerman,et al. Cranial base superimposition for 3-dimensional evaluation of soft-tissue changes. , 2010, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[25] L. Cevidanes,et al. Assessment of mandibular advancement surgery with 3D CBCT models superimposition. , 2010, Dental press journal of orthodontics.
[26] Yehya A Mostafa,et al. Accuracy and reliability of cone-beam computed tomography measurements: Influence of head orientation. , 2011, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[27] Martin Styner,et al. Mandibular asymmetry characterization using generalized tensor-based morphometry , 2011, 2011 IEEE International Symposium on Biomedical Imaging: From Nano to Macro.
[28] Leonardo Koerich de Paula,et al. Digital live-tracking 3-dimensional minisensors for recording head orientation during image acquisition. , 2012, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[29] J. Nervina. Cone beam computed tomography use in orthodontics. , 2012, Australian dental journal.
[30] L. Cevidanes,et al. Three-dimensional assessment of mandibular and glenoid fossa changes after bone-anchored Class III intermaxillary traction. , 2012, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[31] Frank E. Harris,et al. Mathematical Methods for Physicists: A Comprehensive Guide , 2012 .
[32] M. Packer,et al. Three-dimensional reproducibility of natural head position. , 2013, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[33] Hongtu Zhu,et al. Three-dimensional treatment outcomes in Class II patients treated with the Herbst appliance: a pilot study. , 2013, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[34] Michael W. Kenyhercz,et al. Molar size and shape in the estimation of biological ancestry: A comparison of relative cusp location using geometric morphometrics and interlandmark distances. , 2014, American journal of physical anthropology.
[35] B. Khambay,et al. Current methods of assessing the accuracy of three-dimensional soft tissue facial predictions: technical and clinical considerations. , 2015, International journal of oral and maxillofacial surgery.
[36] Martin Styner,et al. Incorporating 3-dimensional models in online articles. , 2015, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.