8C-01 Measurement of Microscopic Deformation Behavior of Mandibular Bone Model with Dental Implant

Author(s):  
Yasuyuki MORITA ◽  
Mitsugu TODO ◽  
Yasuyuki MATSUSHITA ◽  
Kiyoshi KOYANO
2010 ◽  
Vol 43 (2) ◽  
pp. 287-293 ◽  
Author(s):  
Daniel Lin ◽  
Qing Li ◽  
Wei Li ◽  
Naughton Duckmanton ◽  
Michael Swain

2020 ◽  
Vol 899 ◽  
pp. 81-93
Author(s):  
Nur Faiqa Ismail ◽  
M. Saiful Islam ◽  
Solehuddin Shuib ◽  
Rohana Ahmad ◽  
M. Amar Shahmin

This research was conducted to provide a feasible method for reconstructing the 3D model of mandibular bone to undergo finite element analysis to investigate von Mises stress, deformation and shear stress located at the cortical bone, cancellous one and neck implant of the proposed dental implant design. Dental implant has become a significant remedial approach but although the success rate is high, the fixture failure may happen when there are insufficient host tissues to initiate and sustain the osseointegration. Computerised Tomography scan was conducted to generate head images for bone reconstruction process. MIMICS software and 3-matic software were used to develop the 3D mandibular model. The reconstructed mandibular model was then assembled with five different 3D models of dental implants. Feasible boundary conditions and material properties were assigned to the developed muscle areas and joints. The highest performance design with the best responses was the design B with the value for the von Mises stress for the neck implant, cortical and cancellous bone were 7.53 MPa, 16.91 MPa and 1.34 MPa respectively. The values for the maximum of micromotion for the neck implant, cortical and cancellous bone of design B were 20.60 μm, 21.17 μm and 5.83 μm respectively. Shear stress for neck implant, cortical and cancellous bone for this design were 0.15 MPa, 4.74 MPa and 1.54 MPa respectively. The design with a cone shaped hole which is design B was the proper design when compared with other designs in terms of von Misses stress, deformations and shear stress.


2009 ◽  
Vol 2009.1 (0) ◽  
pp. 143-144
Author(s):  
Yasuyuki MORITA ◽  
Lihe QIAN ◽  
Mitsugu TODO ◽  
Yasuyuki MATSUSHITA ◽  
Masakazu UCHINO ◽  
...  

2018 ◽  
Vol 27 (1) ◽  
pp. 11-16 ◽  
Author(s):  
Naohito Tamai ◽  
Makoto Hirota ◽  
Toshinori Iwai ◽  
Mitomu Kioi ◽  
Kenji Mitsudo ◽  
...  

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