• Title/Summary/Keyword: Dental simulation

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Clinical considerations for successful results in FOS(Functional Orthognathic Surgery): Surgery first orthodontic treatment later (임상가를 위한 특집 1 - 성공적인 선 수술 교정 치료를 위한 고려사항)

  • Oh, Chang-Ok
    • The Journal of the Korean dental association
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    • v.50 no.2
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    • pp.58-63
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    • 2012
  • The fundamental principles and the role of surgeons and orthodontists to produce successful results in orthodontic treatment combined with orthognathic surgery is not different from those of conventional procedures and FOS: surgery-first-orthodontic-treatment-later approach. The communication and cooperation between surgeon and orthodontist is of crucial importance. In FOS, the pre-surgical orthodontic preparation is not carried out in the patient's mouth, but in the mounted stone model and in addition to the simulation of tooth movement, to get a precise surgical occlusion, the entire steps of treatment should be simulated on the articulator as well. Right after the surgery, due to the instability of the occlusion, appropriate post operational care should be given according to the surgical technique applied to the mandible by use of final surgical wafer about 8 weeks.

Maxillary Reconstruction with Free Fibular Flap using 3D RP Model

  • Ahn, Kang-Min;Kim, Jong-Jin
    • Journal of International Society for Simulation Surgery
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    • v.1 no.1
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    • pp.32-36
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    • 2014
  • Reconstruction of the maxilla is quite a difficult challenge for reconstructive surgeons. The maxilla is the most important part of the midface, which contributes to facial esthetics, mastication, swallowing, speech, supporting orbital contents and sinus function. Free fibular flap is most versatile to reconstruct jaw bone because of its adequate length, containing both soft and bony tissues and acceptance of dental implants. In this case report, a reconstruction of the maxilla using free fibular flap and dental implants is described in which rapid prototype was used before surgery to simulate the final prosthetic results.

Extraction of Impacted Supernumerary Teeth with Navigation System

  • Kim, Ji-Hyoung;Yoo, Byung-Woo;Moon, Seong-Yong
    • Journal of International Society for Simulation Surgery
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    • v.3 no.2
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    • pp.74-76
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    • 2016
  • Computer-aided navigation system is helpful in maxillofacial surgery with real time instrument positioning and clear anatomic identification. Generally, completely impacted tooth extraction surgery have e high risk by iatrogenic injury such as, adjacent tooth injury, normal anatomical structure injury. This case report describes performing extraction of impacted supernumerary teeth on anterior maxilla by using the navigation system in a 15 years old male patient.

Mannequin Simulation in the Health Science (보건과학분야의 마네킹 시뮬레이션 교육)

  • Kim, Jee-Hee
    • Journal of the Korea Convergence Society
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    • v.2 no.2
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    • pp.67-71
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    • 2011
  • The aim of this study is to review the mannequin simulation. The mannequin simulation is widely used in the education of paramedic, fire fighter, nurse, dental school, and anesthesia. The wide scopes of mannequin simulation comprise the history, evolution, and application to problem-based learning.

Supply Route Analysis and Performance Evaluation of Dental High-Speed Air Turbine Handpiece (치과용 고속 에어터빈 핸드피스의 공급관로 분석 및 성능평가)

  • Han, Myung-Chul;Kim, Jung-Kwan;Choi, Myoung-Wook
    • Journal of the Korean Society for Precision Engineering
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    • v.28 no.1
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    • pp.80-88
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    • 2011
  • The dental high-speed air turbine handpiece is one of the most popular devices that have been widely used as the main means of cutting tooth structure and restorative material in dentistry. In consideration of usage and marketability of the dental handpiece, it is obviously worthy of investigating it. The goal of this paper is to establish the relationship between the air turbine speed and the supply route inside the handpiece. To do this, the Computational Fluid Dynamics(CFD) tool, Fine$^{TM}$/Turbo is used and the optimal supply route position is suggested from the simulation results. In addition, as an attempt for domestic product, the reverse engineering process of a high speed dental handpiece by 3D X-Ray CT equipment and wire cutting is presented for the Mark II model in NSK. In doing so, the 3D modeling of the handpiece parts is carried out with CATIA V5, and the interference between parts is examined. Finally, the result of performance test for the prototype produced in this research is presented.

Simulation Methods of Electromagnetic Wave Specific Absorption Rate (SAR) and the Simulation Results of Human Head Model with Dental Implants in 5G Frequency Band (전자파 흡수율(SAR) 시뮬레이션 기법과 5G 주파수 대역에서의 인공 치아가 삽입된 인체 머리 모델의 전자파 흡수율 시뮬레이션 결과)

  • Kim, Chang-Gyun;Lee, Seongsoo
    • Journal of IKEEE
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    • v.22 no.3
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    • pp.854-857
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    • 2018
  • It becomes important to analyze the effects of electromagnetic wave on human body, as various wireless equipments are widely used in daily life. SAR (specific absorption rate) is a parameter of the effects of electromagnetic wave on human body. However, it considers only human tissues, and it is difficult to evaluate the effects of electromagnetic wave when metal artifacts are inserted such as dental implants. This paper introduces a method to simulate SAR, and gets its simulated results. Simulated SAR of human head model with dental implants in 30 GHz 5th generation mobile communications (5G) frequency band is $2.50{\times}10^{-3}W/kg$ in maximum and $8.58{\times}10^{-7}W/kg$ in average. These values are absolutely below 1.6 W/kg Korean domestic SAR limit.

Feasibility study of insertable miniature x-ray source for dental imaging (치과 영상용 삽입형 초소형 X선 튜브의 가능성 연구)

  • Cho, Sung-Ho;Kim, So-Yeong;An, So-Hyun;Lim, Soo-Mee;Lee, Re-Na
    • Journal of the Korean Society of Radiology
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    • v.6 no.1
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    • pp.39-45
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    • 2012
  • Conventional periphery radiography system has a various problem such as patient dose and the pain of X-ray examination. In this paper, to solve these problems, we suggested insertional miniature x-ray system and we verified the feasibility of this system. First, we performed the Geant4 x-ray simulation to design x-ray collimator and filter to use miniature x-ray tube and we decided optimized thickness of filter and collimator. Also, we measured x-ray spectrum using CdTe detector and PX4 module to verify simulation results. Also, we acquired teeth image of fabricated phantom using conventional dental x-ray and prosed miniature x-ray system. As a results, our system has good image quality as compared to those of conventional systems. Our evaluation of the proposed system indicates that it can be potentially very useful for dental imaging.

A Study on the Retentive Force of Stud Attachments for Implant Overdenture (임플란트 피개의치를 위한 개별유지형 어태치먼트의 유지력에 관한 연구)

  • Song, Eun-Ju;Bae, Eun-Bin;Choi, Jae-Won;Bae, Ji-Hyeon;Kim, Ji-Young;Lee, So-Hyoun
    • Journal of dental hygiene science
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    • v.16 no.1
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    • pp.93-100
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    • 2016
  • The purpose of this study was to compare the changes of retentive force in different stud attachment systems for implant retained overdenture. Two commercially available attachments with different retentive forces were investigated: Kerator (pink, blue, red) and O-ring (orange, red). Two implant fixtures were vertically embedded in base mountings. Five pairs of each attachment were evaluated. A universal testing machine was used to evaluate the retentive force of two attachments during wear simulation. Surface characteristics of each attachment system were evaluated with scanning electron microscopy. Five pairs of each attachment were evaluated. Kerator pink showed the highest initial retention. After 2,500 cycles of wear-simulation, Kerator pink noted the largest decrease in retention. According to results of surface analysis, Worn surfaces were obtained in matrices and patrices. Heavy wears were observed in matrices. After 2 year-wear simulation, most attachments exhibited retention loss. Attachments using different kind of material exhibited dissimilar surface alterations.

Planning of Dental Implant Placement Using 3D Geometric Processing and Finite Element Analysis (3차원 기하 처리와 유한요소 분석을 이용한 치아 임플란트 식립 계획 수립)

  • Park, Hyung-Wook;Park, Chul-Woo;Kim, Myong-Soo;Park, Hyung-Jun
    • Korean Journal of Computational Design and Engineering
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    • v.17 no.4
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    • pp.253-261
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    • 2012
  • In order to make dental implant surgery successful, it is important to perform proper planning for dental implant placement. In this paper, we propose a decent approach to dental implant placement planning based on geometric processing of 3D models of jawbones, a nerve curve and neighboring teeth around a missing tooth. Basically, the minimum enclosing cylinders of the neighboring teeth around the missing tooth are properly used to determine the position and direction of the implant placement. The position is computed according to the radii of the cylinders and the center points of their top faces. The direction is computed by the weighted average of the axes of the cylinders. For a cylinder whose axis passes the position along the direction, its largest radius and longest length are estimated such that it does not interfere with the neighboring teeth and the nerve curve, and they are used to select the size and type of an implant fixture. From the geometric and spatial information of the jawbones, the teeth and the fixture, we can construct the 3D model of a surgical guide stent which is crucial to perform the drilling operation with ease and accuracy. We have shown the validity of the proposed approach by performing the finite element analysis of the influence of implant placement on bone stress distribution. Adopted in 3D simulation of dental implant placement, the approach can be used to provide dental students with good educational contents. It is also expected that, with further work, the approach can be used as a useful tool to plan for dental implant surgery.

Evaluation of Marginal and Internal Integrity of Modified Resin-Bonded Fixed Partial Dentures: An In Vitro Study

  • Ahn, Sung-Hyeon;Choi, Jae-Won;Jeon, Yong-Chan;Jeong, Chang-Mo;Yoon, Mi-Jung;Lee, So-Hyoun;Huh, Jung-Bo
    • Journal of Korean Dental Science
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    • v.10 no.1
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    • pp.29-34
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    • 2017
  • Purpose: The purpose of this study was to evaluate the microleakage of various types of resin-bonded fixed partial dentures (RBFPDs) after artificial aging. Materials and Methods: Forty models with missing first molar were fabricated using artificial resin teeth and were divided into four groups: Group A, conventional RBFPDs design; Group B, modified RBFPDs design; Group C, assembled 3-piece RBFPDs design; and Group D, assembled 3-piece RBFPDs with different occlusal rest positions. Half of the specimens underwent chewing simulation process (240,000 cycles, 50 N load, 1.7 Hz) and thermocycling (temperatures $5^{\circ}C{\sim}55^{\circ}C$, dwelling time 30 seconds) and the remaining 20 specimens didn't receive any treatment. All the specimens were immersed in 2% methylene blue solution for 24 hours to evaluate microleakage, and were sectioned at the middle part of abutment teeth. To evaluate the microleaskage, a dye penetration was calculated. Result: With artificial aging, cyclic loading and thermocycling, a 3-piece RBPFD and a 2-piece RBPFD using original tooth undercuts have significantly lower microleakge (P<0.05) compared to the conventional design of RBPFD and modified RBPFD. Conclusion: Within the limit of this experiment, the assembled RBFPDs exhibited a smaller microleakage than the conventional RBFPDs, implying that the assembled RBFPDs can be more effective for reducing the dislodgement of the RBFPDs.