共 11 条
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The rate and the type of orthodon-tic tooth movement is influenced by bone turnover in a rat model. Verna C,Dalstra M,Melsen B. European Journal of Orthodontics . 2000
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Mechanical significance of the trabecular microstructure of the human mandibular condyle. van Ruijven LJ,Giesen EBW,van Eijden TMGJ. Journal of Dental Research . 2002
[3]
Three-dimensional anal-ysis of root canal geometry by high-resolution computed tomogra-phy. Peters OA,Laib A,Ruegsegger P,et al. Journal of Dental Research . 2000
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Three-dimensional bone microstructures of the mandibular angle using micro-CT and finite element analysis:relationship between partially impacted mandibular third molars and angle fractures. Takada H,Abe S,Tamatsu Y,et al. Dental Traumatology . 2006
[5]
Microcracks in the alveolar bone following orthodontic tooth movement:a morphological and morphometric study. Verna C,Dalstra M,Lee TC,et al. European Journal of Orthodontics . 2004
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The imaging of root canal obtura-tion using micro-CT. Jung M,Lommel D,Klimek J. . 2005
[7]
Bone[P]. BIRL JOSEPH J.中国专利:US2436283A,1948-02-17
[8]
The finite element method:a tool to study orthodontic tooth movement. Cattaneo PM,Dalstra M,Melsen B. Journal of Dental Research . 2005
[9]
Assessment of the accuracy of dental enamel thickness measurements using microfocal X-ray computed tomography. Olejniczak AJ,Grine FE. Anat Rec A Discov Mol Cell Evol Biol . 2006
[10]
Micro-computed tomography evaluation of the glenoid fossa and mandibular condyle bone after bilateral vertical ramus mandibular distraction in a canine model. Sant’Anna EF,Gomez DF,Sumner DR,et al. Journal of Craniofacial Surgery . 2006