3D superimposition of craniofacial imaging-The utility of multicentre collaborations

被引:22
|
作者
Yatabe, Marilia [1 ]
Prieto, Juan Carlos [2 ]
Styner, Martin [2 ]
Zhu, Hongtu [2 ]
Ruellas, Antonio Carlos [1 ]
Paniagua, Beatriz [3 ]
Budin, Francois [3 ]
Benavides, Erika [1 ]
Shoukri, Brandon [1 ]
Michoud, Loic [1 ]
Ribera, Nina [1 ]
Cevidanes, Lucia [1 ]
机构
[1] Univ Michigan, Dept Orthodont & Pediat Dent, Ann Arbor, MI 48109 USA
[2] Univ N Carolina, Chapel Hill, NC 27515 USA
[3] Kitware Inc, Carrboro, NC USA
基金
美国国家卫生研究院;
关键词
3D analysis; artificial intelligence; personalized orthodontics; BEAM COMPUTED-TOMOGRAPHY; CRANIAL BASE SUPERIMPOSITION; CEPHALOMETRIC LANDMARKS; MANDIBULAR GROWTH; CLEFT-LIP; RELIABILITY; REPRODUCIBILITY; ACCURACY; SURGERY; IDENTIFICATION;
D O I
10.1111/ocr.12281
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Clinical applications of 3D image registration and superimposition have contributed to better understanding growth changes and clinical outcomes. The use of 3D dental and craniofacial imaging in dentistry requires validate image analysis methods for improved diagnosis, treatment planning, navigation and assessment of treatment response. Volumetric 3D images, such as cone-beam computed tomography, can now be superimposed by voxels, surfaces or landmarks. Regardless of the image modality or the software tools, the concepts of regions or points of reference affect all quantitative of qualitative assessments. This study reviews current state of the art in 3D image analysis including 3D superimpositions relative to the cranial base and different regional superimpositions, the development of open source and commercial tools for 3D analysis, how this technology has increased clinical research collaborations from centres all around the globe, some insight on how to incorporate artificial intelligence for big data analysis and progress towards personalized orthodontics.
引用
收藏
页码:213 / 220
页数:8
相关论文
共 50 条
  • [31] 3D landmarks of Craniofacial Imaging and subsequent considerations on superimpositions in orthodontics-The Aarhus perspective
    Cattaneo, Paolo M.
    Yung, Augustine K. C.
    Holm, Annemarie
    Mashaly, Omar M.
    Cornelis, Marie A.
    ORTHODONTICS & CRANIOFACIAL RESEARCH, 2019, 22 : 21 - 29
  • [32] Regional 3D superimposition to assess temporomandibular joint condylar morphology
    Schiing, J.
    Gomes, L. C. R.
    Benavides, E.
    Nguyen, T.
    Paniagua, B.
    Styner, M.
    Boen, V.
    Goncalves, J. R.
    Cevidanes, L. H. S.
    DENTOMAXILLOFACIAL RADIOLOGY, 2014, 43 (01)
  • [33] The utility of the 3D imaging software in the macroscopic rendering of complex gynecologic specimens
    Roncati, Luca
    Palmieri, Beniamino
    Pusiol, Teresa
    Piscioli, Francesco
    Scialpi, Michele
    Barbolini, Giuseppe
    Maiorana, Antonio
    JOURNAL OF GYNECOLOGIC ONCOLOGY, 2015, 26 (02) : 168 - 169
  • [34] The diagnostic utility of 3D electroencephalography source imaging in pediatric epilepsy surgery
    Russo, Angelo
    Jayakar, Prasanna
    Lallas, Matt
    Miller, Ian
    Hyslop, Ann
    Korman, Brandon
    Dunoyer, Catalina
    Resnick, Trevor
    Duchowny, Michael
    EPILEPSIA, 2016, 57 (01) : 24 - 31
  • [35] Synetic Superimposition of Dental 3D Data: Application in Twin Studies
    Smith, Richard N.
    Townsend, Grant
    Chen, Ke
    Brook, Alan
    COMPARATIVE DENTAL MORPHOLOGY, 2009, 13 : 142 - +
  • [36] 3D IMAGING
    Murphy, Justine
    LASER FOCUS WORLD, 2023, 59 (05): : 18 - 20
  • [37] 3D Imaging
    1997,
  • [38] 3D Imaging
    Hastings, S.K.
    Bulletin of the American Society for Information Science and Technology, 2002, 28 (02)
  • [39] 3D IMAGING
    AZIZA, R
    JOURNAL DE RADIOLOGIE, 1995, 76 (07): : 466 - 467
  • [40] 3D treatment planning and simulating for craniofacial skeleton
    Wenqiang Zhang
    Shilei Zhang
    Xuemei Huang
    Chengtao Wang
    The International Journal of Advanced Manufacturing Technology, 2005, 26 : 1043 - 1047