• Title/Summary/Keyword: 하악 임플랜트 피개의치

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Finite Element Analysis of Stress Distribution on Telescopic System for Mandibular Implant Supported Overdenture (이중관 구조 하악 임플랜트 피개의치의 응력 분포에 관한 유한요소법적 분석)

  • Oh, Jung-Ran;Woo, Yi-Hyung;Lee, Sung-Bok;Bak, Jin
    • The Journal of Korean Academy of Prosthodontics
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    • v.46 no.4
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    • pp.359-371
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    • 2008
  • Purpose: The purpose of this study was to investigate the stress distribution in mandibular implant overdentures with telescopic crowns compared to bar attachment. Material and methods: Three-dimensional finite element models consisting of the mandibular bone, 4 implants, and primary bar-splinted superstructure or secondary splinted superstructure with telescopic crowns were created. Vertical and oblique loads were directed onto the occlusal areas of the superstructures to simulate the maximal intercuspal contacts and working contacts such as group function occlusion. Maximum stress and stress distribution were analysed in mandibular bone, implant abutments, and superstructures. Results: 1. In comparison of von Mises stress on mandibular bone, telescopic overdenture had a little lower stress values in vertical load and working side load except oblique load. In the mandible, the telescopic overdenture distributed more uniform stress than the bar overdenture. 2. In comparison of von Mises stress on implant abutments, telescopic overdenture had much lower stress values in all load conditions. In implant abutments, the telescopic overdenture distributed stress similar to the bar overdenture. Stress was concentrated on the distal surfaces of the posterior implant abutments in both mandibular overdentures. 3. In comparison of von Mises stress on superstructures, the telescopic overdenture had much more stress values in all load conditions. However, the telescopic overdenture distributed more uniform stress on superstructure than the bar overdenture. In the bar overdenture, stress was concentrated on each cental area of bar structures and connected area between implant abutments and bar structures. Conclusion: In the results of this study, the telescopic overdenture had lower stress values than the bar overdenture in mandibular bone and implant abutments, but more stress values in superstructures. However, if optimal material was selected in making superstructures, the telescopic overdenture was compared to the bar overdenture in stress distribution.

Mandibular Implant-Retained Overdenture: A Case Report (임플랜트지지 피개의치를 이용한 무치악환자의 구강회복)

  • Lee, Hong-Seok;Song, Kwang-Yeob;Kim, Ja-Young;Lee, Jung-Jun;Park, Ju-Mi;Ahn, Seung-Geun;Park, Charn-Woon
    • Journal of Dental Rehabilitation and Applied Science
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    • v.24 no.1
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    • pp.91-104
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    • 2008
  • Recently, osseointegrated implants have been used to improve denture support, stability, and retention. Several studies have been revealed that mandibular two-implant overdentures significantly increase patient satisfaction with the function of their prostheses. Use of a wide variety of attachment systems, including stud, magnet, and bar attachments, has proven both clinically predictable and effective. This article presents that two-implant overdenture can become the standard of care for treatment of the edentulous mandible.

3D FINITE ELEMENT ANALYSIS OF OVERDENTURE STABILITY AND STRESS DISTRIBUTION ON MANDIBULAR IMPLANT-RETAINED OVERDENTURE (하악 임플랜트 유지형 피개의치의 안정성과 하악골 응력분포에 대한 3차원 유한요소법적 연구)

  • Hong, Hae-Ryong;Choi, Dae-Gyun;Bak, Jin;Kwon, Kung-Rock
    • The Journal of Korean Academy of Prosthodontics
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    • v.45 no.5
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    • pp.633-643
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    • 2007
  • Statement of problem: Recently there are on an increasing trend of using implants-especially in edentulous mandible of severly alveolar bone recessed. Purpose: The aim of this study was to analyze the displacement and stress distribution of various mandibular implant-retained overdenture models supported by two implants in interforaminal region under the occlusion scheme load. Material and method: FEA models were made by the 3D scanning of the edentulous mandibular dentiform. The three models were named as Model M1, M2, and M3 accord ing to the position of implants: M1, Lt. incisor area, M2, Canine area, and M3, 1st Premolar area. Inter-implant angulation model was named as M4. Conventional complete denture was named M5 and used as a control group. Ball implant and Gold matrice were used as a retentive anchors. The occlusion type loads were applied horizontally over each tooth. Results: 1. In mandibular implant retained overdenture Canine Protected Occlusion type load resulted in higher levels of stress to the implants and female matrices than other types of loads. 2. The overdenture model M1, with implants in lateral incisor areas resulted in lower stress concentration to the implants and female matrices than other models. 3. In mandibular implant retained overdenture the stresses of the implant and female matrice were lower in mesially inclined implant than these of parallel installed implant. Conclusion: Lateral incisor areas could be the best site for the implants in mandibular implant-retained overdenture. The mandibular implant retained overdenture models mentioned above showed to the lowest stress to the implants and female matrices.

NOVEL TREATMENT MODALITY OF IMPLANT-RETAINED OVERDENTURE FOR IMMEDIATE FUNCTION IN COMPLETELY EDENTULOUS PATIENTS (무치악 환자에서 하악 임플랜트 지지 피개의치에 의한 즉시 하중 부담에 관한 연구)

  • Kim, Jang-Wook;Kim, Hyeong-Seob;Baik, Jin;Kwon, Kung-Rock
    • The Journal of Korean Academy of Prosthodontics
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    • v.45 no.1
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    • pp.34-47
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    • 2007
  • Statement of problem: Conventional mandibular complete denture lacks in support and stability for edentulous patients to use. Purpose: To enhance support and stability of mandibular complete denture, 2 implants were inserted on the inter-mental foramina space of edentulous patients. With 2 magnetic attachments on the inner side of the overdenture, we gave immediate loads and evaluated the stability of the implants, the responses of the supporting tissues, and the satisfaction of the patients. Material & methods: 6 edentulous patients (5 male, 1 female) each recieved 2 SLA implants in the inter-mental foramina region and implants were immediately loaded with overdenture with magnet attachments. To evaluate the implants stability and the peri-implant tissues, clinical exams, RFA tests and radiographic exams were preformed at the 1 week, 2wks, 6wks, 12wks, and 24wks. post- surgery. Results: The mean surgery time was $45.7{\pm}7.7mins$., while the denture delivery time was $45.5{\pm}12.6mins$. Only 2 of 14 implants were failed. Survived implants that remained were clincally and radiographically stable. Mean ISQ values were relatively stable, showing $69.71{\pm}5.55$, $69.00{\pm}9.48$, $67.92{\pm}7.86$, $67.92{\pm}9.58$, $70.08{\pm}7.61$, $71.92{\pm}6.43$ at the 1 wk, 2 wks, 6 wks, 12 wks, 24 wks. follow up check. Crestal bone changes were $-1.18mm{\pm}0.68mm$, $-1.35{\pm}0.69mm$, $-1.47{\pm}0.68mm$ at the 6wks, 12wks, 24wks. follow up check. Bleeding on probing(BOP index) was not significant. Conclusion: Mandibular ovedentures with 2 magnetic attachments over two interforaminal implants on edentulous patients for immediate function is a recommendable novel treatment for edentulous patients which shows stability on the implants and supporting tissue.