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3D 융합 기술을 활용한 악교정 수술장치 연구

A Study of Orthognathic Surgical Splints Development Using 3D Convergence Technology

Journal of the Korean Society for Precision Engineering 2019;36(3):301-309.
Published online: March 1, 2019

1 경북대학교 대학원 기계공학과

2 경북대학교 3D융합기술지원센터

3 경북대학교 기계공학부

1 Department of Mechanical Engineering, Graduate School, Kyungpook National University

2 3D Convergence Technology Center, Kyungpook National University

3 School of Mechanical Engineering, Kyungpook National University

#E-Mail: caekim@knu.ac.kr, TEL: +82-53-950-5580
• Received: August 14, 2018   • Revised: October 15, 2018   • Accepted: November 1, 2018

Copyright © The Korean Society for Precision Engineering

This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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    Yeqiang Deng, Yuzhe Chen, Yu Wang, Xishan Wen, Lei Lan, Meichen Xiang, Maoheng Jing
    Electric Power Systems Research.2023; 225: 109876.     CrossRef
  • The Use of Surgical Splints in Orthognathic Surgery: A Bibliometric Study
    Francisco Samuel Rodrigues Carvalho, Déborah Isis de Oliveira Barbosa, Iara Furtado Torquato, André Mattos Britto de Souza, Roberta Dalcico, Filipe Nobre Chaves, Fábio Wildson Gurgel Costa
    Indian Journal of Plastic Surgery.2022; 55(01): 026.     CrossRef

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A Study of Orthognathic Surgical Splints Development Using 3D Convergence Technology
J. Korean Soc. Precis. Eng.. 2019;36(3):301-309.   Published online March 1, 2019
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A Study of Orthognathic Surgical Splints Development Using 3D Convergence Technology
J. Korean Soc. Precis. Eng.. 2019;36(3):301-309.   Published online March 1, 2019
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A Study of Orthognathic Surgical Splints Development Using 3D Convergence Technology
Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image
Fig. 1 Orthognathic surgery procedures
Fig. 2 Before orthognathic surgery
Fig. 3 Cutting guide
Fig. 4 Reference guide
Fig. 5 Positioning guide
Fig. 6 Simulation of orthognathic surgery
Fig. 7 After simulation of orthognathic surgery
Fig. 8 Shape of the bite (3D CAD)
Fig. 9 Mounting the bite
Fig. 10 Mounting the cutting guide
Fig. 11 Cutting the Mx
Fig. 12 Coordinate before movement
Fig. 13 Coordinate after movement
Fig. 14 Parallel movement in three-dimensional space
Fig. 15 Mounting the reference guide
Fig. 16 Grinding the Mx
Fig. 17 Mounting the positioning guide
Fig. 18 Bone plate
Fig. 19 After surgery
Fig. 20 3D printing of test parts
Fig. 21 Mounting the cutting guide
Fig. 22 Mounting the reference guide
Fig. 23 Fixing the bone plates
Fig. 24 After orthognathic surgery
Fig. 25 Ref. points of scan model
Fig. 26 Ref. points of simulation model
Fig. 27 Ref. points of Alignment model
Fig. 28 Distance between the models
Fig. 29 Comparative result
A Study of Orthognathic Surgical Splints Development Using 3D Convergence Technology

Conversion result

Unit = mm

No x y z x' y' z'
1 -14.48 -227.98 -697.36 -15.58 -228.40 -695.77
15 11.03 -227.92 -697.95 9.91 -229.34 -695.11
28 9.91 -227.62 -700.71 8.95 –228.93 -697.92

Comparative result

Unit=mm

No Average#1(SD) Average#2(SD)
Test#1 +0.289 / -0.494 (0.087) +0.294 / -0.473 (0.087)
Test#2 +0.300 / -0.446 (0.108) +0.300 / -0.488 (0.109)
Test#3 +0.296 / -0.446 (0.086) +0.295 / -0.467 (0.086)
Test#4 +0.299 / -0.447(0.106) +0.300 / -0.447 (0.108)
Test#5 +0.296 / -0.486 (0.087) +0.290 / -0.471 (0.072)
Test#6 +0.362 / -0.428 (0.113) +0.358 / -0.410 (0.114)
Test#7 +0.294 / -0.486 (0.124) +0.269 / -0.461 (0.109)
Test#8 +0.316 / -0.414 (0.116) +0.299 / -0.448 (0.106)
Test#9 +0.297 / -0.460 (0.111) +0.316 / -0.497 (0.115)
Test#10 +0.425 / -0.442 (0.139) +0.363 / -0.415 (0.139)
Table 1 Conversion result Unit = mm
Table 2 Comparative result Unit=mm