• Title/Summary/Keyword: root curvature

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A STUDY ON THE ROOT CANAL MORPHOLOGY OF HUMAN MANDIBULAR SECOND PREMOLAR WITH TRANSPARENT SPECIMENS (투명표본(透明標本)에 의한 하악(下顎) 제이소구치(第二小臼齒)의 근관형태(根管形態)에 관(關)한 연구(硏究))

  • Lee, Chung-Sik
    • Restorative Dentistry and Endodontics
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    • v.9 no.1
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    • pp.121-125
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    • 1983
  • Thirty eight mandibular second premolars were injected with china ink, decalcified, cleared and used in an in vitro study to determine the number of root canals, the frequency and location of lateral canals, the location of apical foramens, the frequency of apical deltas, and the curvature of root canals. The results were as follows: 1. Most of the teeth demonstrated single canal, but 5.3% of the teeth were found to have bifurcated or trifurcated canals. 2. Of the 40 canals studied, 52.5% of the canals were found to have lateral canals and these ramifications were usually located in the apical third of the root. 3. 7 apical foramens were located directly on the root apex and 31 foramens laterally. 4. 4 canals showed mesial curvature, 20 canals distal curvature, 11 canals buccal curvature, and 8 canals lingual curvature.

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A STUDY ON THE ROOT CANAL MORPHOLOGY OF HUMAN MANDIBULAR FIRST PREMOLAR WITH TRANSPARENT SPECIMENS (투명표본(透明標本)에 의(依)한 하악제일소구치(下顎第一小臼齒)의 근관형태(根管形態)에 대(對)한 연구(硏究))

  • Hur, Bock
    • Restorative Dentistry and Endodontics
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    • v.2 no.1
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    • pp.27-31
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    • 1976
  • Eighty mandibular first premolars were injected with china ink, decalcified, cleared and used in an in vitro study to determine the number of root canals, the frequency and location of lateral canals, the location of apical foramens, the frequency of apical deltas, and the curvature of root canals. The results were as follows: 1. Most of the teeth demonstrated single canal, but 22.5% of the teeth were found to have bifurcated or trifurcated canals. 2. Of the 99 canals studied, 37.3% of the canals were found to have lateral canals and these ramifications were usually located in the apical third of the root. 3. 27 apical foramens were located directly on the root apex and 66 foramens laterally. 4. 6 canals showed mesial curvature, 49 canals distal curvature, 11 canals buccal curvature, and 25 canals lingual curvature.

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A STUDY ON THE ROOT CANAL MORPHOLOGY OF HUMAN MAXILLARY LATERAL INCISOR WITH TRANSPARENT SPECIMENS (투명표본(透明標本)에 의(依)한 상악측절치(上顎側切齒)의 근관형태(根管形態)에 대(對)한 연구(硏究))

  • Lee, Chung-Sik
    • Restorative Dentistry and Endodontics
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    • v.10 no.1
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    • pp.183-186
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    • 1984
  • Thirty maxillary lateral incisors were injected with china ink, decalcified, cleared and used in an in vitro study to determine the number of root canals, the frequency and location of lateral canals, the location of apical foramens, the frequency of apical deltas, and the curvature of root canals. The results were as follows: 1. Most of the teeth demonstrated single canal, but 6.7% of the teeth were found to have bifurcated canals. 2. Of the 32 canals studied, 37.5% of the canals were found to have lateral canals and these ramifications were usually located in the and apical third of the root. 3. 9 apical foramens were located directly on the root apex and 21 foramens laterally. 4. 3 canals showed mesial curvature, 20 canals distal curvature, 4 canals labial curvature, and 3 canals palatal curvature.

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A STUDAY ON THE ROOT CANAL MORPHOLOGY OF HUMAN MANDIBULAR CANINE WITH TRANSPARENT SPECIMENS (투명표본(透明標本)에 의(依)한 하악견치(下顎犬齒)의 근관형태(根管形態)에 관(關)한 연구(硏究))

  • Lee, Chung-Sik
    • Restorative Dentistry and Endodontics
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    • v.4 no.1
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    • pp.23-27
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    • 1978
  • Fifty two mandibular permanent canines were chosen to study the anatomy of the root canal. The experimental teeth were injected with China ink, decalcified, cleared and observed to investigate the number of root canals, frequency and location of lateral canals, the location of apical foramens, the frequency of apical deltas, and the curvature of root canals. The results were as follows: 1) all of the experimental teeth demonstrated single canal. 2) of the 52 canals, 9.6% of the canals were found to have lateral canals and the locations of the lateral canals were in the apical third of the roots 3) Thirty three apical foramens were located laterally on the root apices and nineteen foramens were located on the centers of the root apices. 4) 37 canals showed straight curvature, 12 canals distal curvature. 3 canals labial curvature.

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A STUDY ON THE ROOT CANAL MORPHOLOGY OF HUMAN MAXILLARY CANINE WITH TRANSPARENT SPECIMENS (투명표본에 의한 상악견치의 근관형태에 관한 연구)

  • Lee, Chung-Sik
    • The Journal of the Korean dental association
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    • v.15 no.11
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    • pp.753-756
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    • 1977
  • Eighty-two maxillary canine were injected with china ink, decalcified, cleared and used in a study, in vitro, to determine the number of root canals, the frequency and location of lateral canals, the location of apical foramens, and the curvature of root canals. The results were as follows; 1.All of the maxillary canines showed the single canals. 2. Of the 82 canals studied, 20.7% of the canals were found to have lateral canals and most ramification of them were located in the apical third of the root. 3. In the case of the curvature, the mesial curvature of the canals (40.3%) usually showed more than the distal curvature of them (13.4%) 4. 41.2% of the apical foramen were located directly on the root apex and 58.5% of them laterally.

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A STUDY ON THE ROOT CANAL MORPHOLOGY OF HUMAN MANDIBULAR INCISORS WITH TRANSPARENT SPECIMENS (투명표본에 의한 하악중절치의 근관형태에 관한 연구)

  • Yun, Soo-Han
    • The Journal of the Korean dental association
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    • v.16 no.12 s.115
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    • pp.929-933
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    • 1978
  • Sixty six mandibular incisor were injected with China ink, decalcified, cleared and used to study the number of root canals, the frequency and location of lateral canals, the location of apical foramens, the frequency of apical deltas, and the curvature of root canals. The results were as follows: 1. Most of the teeth demonstrated single canal, but 19.7% of the teeth were found to have bifurcated canals. 2. 12% of the teeth were found to have lateral canals and these ramifications were located in the apical third of the root. 3. 25 apical foramens were located directly on the root apex and 41 foramens laterally. 4. 43 canals showed straight, 7 canals distal curvature, 7 labial curvature, 3 mesial curvature.

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Prevalence and features of distolingual roots in mandibular molars analyzed by cone-beam computed tomography

  • Choi, Mi-Ree;Moon, Young-Mi;Seo, Min-Seock
    • Imaging Science in Dentistry
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    • v.45 no.4
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    • pp.221-226
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    • 2015
  • Purpose: This study evaluated the prevalence of distolingual roots in mandibular molars among Koreans, the root canal system associated with distolingual roots, and the concurrent appearance of a distolingual root in the mandibular first molar and a C-shaped canal in the mandibular second molar. Materials and Methods: Cone-beam computed tomographic images of 264 patients were screened and examined. Axial sections of 1056 mandibular molars were evaluated to determine the number of roots. The interorifice distances from the distolingual canal to the distobuccal canal were also estimated. Using an image analysis program, the root canal curvature was calculated. Pearson's chi-square test, the paired t-test, one-way analysis of variance, and post-hoc analysis were performed. Results: Distolingual roots were observed in 26.1% of the subjects. In cases where a distolingual root was observed in the mandibular molar, a significant difference was observed in the root canal curvature between the buccolingual and mesiodistal orientations. The maximum root canal curvature was most commonly observed in the mesiodistal orientation in the coronal portion, but in the apical portion, maximum root canal curvature was most often observed in the buccolingual orientation. Conclusion: The canal curvature of distolingual roots was found to be very complex, with a different direction in each portion. No correlation was found between the presence of a distolingual root in the mandibular first molar and the presence of a C-shaped canal in the mandibular second molar.

A comparative study of several nickel-titanium instruments on canal shaping ability in the simulated canal with abrupt curvature

  • Lim, Jung-Jang;Hwang, In-Nam;Oh, Won-Mann
    • Proceedings of the KACD Conference
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    • 2003.11a
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    • pp.595-595
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    • 2003
  • I. Objectives This study was done to evaluate which type of Ni-Ti instrument be able to perform canal shape well in the simulated canal with abrupt curvature near it's apex. II. Materials and Methods A total of 96 simulated root canals were made in epoxy resin(EPOXICURETM, BUEHLER, USA), #15 finger spreader (MANI, Japan) were used as root canal templates. The simulated root canal were made with radius of curvature of 1.5 mm, 3.0 mm, 4.0 mm, 6.0 mm respectively, and angle of curvature of all simulate camals was 90 degree.(omitted)

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Anthropometric analysis of maxillary anterior buccal bone of Korean adults using cone-beam CT

  • Lee, Seung-Lok;Kim, Hee-Jung;Son, Mee-Kyoung;Chung, Chae-Heon
    • The Journal of Advanced Prosthodontics
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    • v.2 no.3
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    • pp.92-96
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    • 2010
  • PURPOSE. The aim of this study was to evaluate the thickness of buccal and palatal alveolar bone and buccal bony curvature below root apex in maxillary anterior teeth of Korean adults using Cone-beam CT images. MATERIALS AND METHODS. The 3D image was reconstructed with dicom file obtained through CBCT from 20 - 39 year old Korean subjects (n = 20). The thickness of buccal and palatal plate, root diameter, the buccal bony curvature angle below root apex and the distance from root apex to the deepest point of buccal bony curvature were measured on maxillary anterior teeth area using OnDemand3D program. RESULTS. Mean thickness of buccal plate 3 mm below CEJ was $0.68{\pm}0.29\;mm$ at central incisor, $0.76{\pm}0.59\;mm$ at lateral incisor, and $1.07{\pm}0.80\;mm$ at canine. Mean thickness of palatal plate 3 mm below CEJ was $1.53{\pm}0.55\;mm$ of central incisor, $1.18{\pm}0.66\;mm$ of lateral incisor, $1.42{\pm}0.77\;mm$ of canine. Bucco-lingual diameter 3 mm below CEJ was $5.13{\pm}0.37\;mm$ of central incisor, $4.58{\pm}0.46\;mm$ of lateral incisor, and $5.93{\pm}0.47\;mm$ of canine. Buccal bony curvature angle below root apex was $134.7{\pm}17.5^{\circ}$ at central incisor, $151.0{\pm}13.9^{\circ}$ at lateral incisor, $153.0{\pm}9.5^{\circ}$ at canine. Distance between root apex and the deepest point of buccal bony curvature of central incisor was $3.67{\pm}1.28\;mm$ at central incisor, $3.90{\pm}1.51\;mm$ at lateral incisor, and $5.13{\pm}1.70\;mm$ at canine. CONCLUSION. Within the limitation of this study in Korean adults, the thickness of maxillary anterior buccal plate was very thin within 1mm and the thickness of palatal plate was thick, relatively. The buccal bony curvature below root apex of maxillary central incisor was higher than that of lateral incisor and canine and it seems that the buccal bony plate below root apex of central incisor is most curved.

Determination of Optimum Blank Shape to Minimize the Root Gap during TIG Welding in Hot Curvature Forming of Al5083 Thick Plate (열간 곡면성형된 Al5083 후판의 TIG 용접 시 루트갭 최소화를 위한 최적 블랭크 형상 결정)

  • Lee, Jeong Min;Ko, Dae Hoon;Lee, Kyung Hun;Lee, Chan Joo;Kim, Byung Min
    • Journal of the Korean Society for Precision Engineering
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    • v.30 no.8
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    • pp.815-823
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    • 2013
  • The hot curvature forming of large aluminum plates is a process used to produce spherical liquefied natural gas (LNG) tanks. In this study, we describe a method to determine the optimum shape of blanks to minimize the root gap in the forming process. The method proposed in this study was applied to a small-scale model for thick plates with a curvature of 1500 mm and thickness of 6 mm. First, the shape of the curved shells was determined as the target shape, and then a coordinate transform was used to determine the optimum blank shape, which was then iteratively modified using the results of finite element method (FEM) simulations, including heat transfer, until the shape error was minimized. Experiments in forming using Al5083 thick plate were carried out, showing that the method can determine the optimum blank shape within an allowable root gap of 0.1 mm.