유한요소법을 이용한 치근단절제술후 근첨의 응력분포에 관한 연구

FINITE ELEMENT ANALYSIS OF STRESS DISTRIBUTION IN ROOT-END RESECTED TEETH

  • 이세준 (경희대학교 치과대학 치과보존학교실) ;
  • 최호영 (경희대학교 치과대학 치과보존학교실) ;
  • 민병순 (경희대학교 치과대학 치과보존학교실) ;
  • 박상진 (경희대학교 치과대학 치과보존학교실) ;
  • 최기운 (경희대학교 치과대학 치과보존학교실)
  • Lee, Se-Joon (Department of Conservative Dentistry, College of Dentistry, Kyung-Hee University) ;
  • Choi, Ho-Young (Department of Conservative Dentistry, College of Dentistry, Kyung-Hee University) ;
  • Min, Byung-Soon (Department of Conservative Dentistry, College of Dentistry, Kyung-Hee University) ;
  • Park, Sang-Jin (Department of Conservative Dentistry, College of Dentistry, Kyung-Hee University) ;
  • Choi, Gi-Woon (Department of Conservative Dentistry, College of Dentistry, Kyung-Hee University)
  • 발행 : 1998.04.07

초록

The purpose of this study is to evaluate the distribution of stress in the root end resected teeth. The finite element method was used to compare stresses along the root and retrograde filling material in seven two-dimensional models of mandibular 2nd premolar. Each model was endodontic treatment and gold crown' restoration. Each model divided with amagam core restoration or gold casting post restoration. Thus each model divided with shape of root end resection, depth of retropreparation and exposure length of root in the bony cavity. The seven models were classified as in the table 1 below. A load of 500N was applied $45^{\circ}$ diagonally on the lingual slope of the buccal cusp. These mode were analyzed with two dimensional finite element methods. The results of this study were as follows : 1. The maximum tensile stress along the inner canal wall was shown on the model 7. 2. When the model 1 was compared with the model 5, the maximum tensile stress along the inner canal wall showed the model 1. 3. Less equivalent stress was shown on the model 6 and more equivalent stress was shown on the model 4. 4. More shear stress was shown on the retrograde filling material of the model 7. 5. The models with increased length of exposed root in the bony cavity demonstrated a gradual increase to the tensile stress in X direction which occurred approximately a boundary between the bone and exposed root in' the bony cavity. 6. The model which had a case of matching the apex of post and a boundary between the bone and exposed root in the bony cavity demonstrated more increase tensile stress in X direction than other models.

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