• 제목/요약/키워드: Endodontic file

검색결과 64건 처리시간 0.02초

자동 보정 주파수 의존형 근관장 측정기의 개발 (Development of a Frequency Dependent Type Apex Locator with Automatic Compensation)

  • 김덕원;남기창;김영주;이승종
    • 대한의용생체공학회:의공학회지
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    • 제19권6호
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    • pp.595-602
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    • 1998
  • 근관장 측정기 중 주파수 의존형이 다른 방법보다 정확도도 높고 사용이 간편한 것으로 평가되고 있다. 그러나 주파수 의존형 또한 실제 임상 사용시 근관내의 전해질 유무에 영향을 받는다. 본 연구에서는 전해질의 영향을 최소화한 자동 보정 주파수 의존형 전자 근관장 측정기를 개발하였다. 또한 500Hz와 10kHz가 임피던스 측정을 위해 사용되는 교류신호로써 측정오차를 최소화하는 최적 주파수임을 상품화된 제품의 주파수(400Hz, 8kHz)와 비교하여 확인하였으며, 신호의 파형에 따른 통계적 유의성은 없었다(p>0.05). 두 신호의 임피던스 비는 파일의 근관 내의 위치를 알려주고, 본 연구에서 적용한 두 신호의 전압차는 근관내 용액의 상태를 나타내 준다. 전압차를 이용하여 보정한 결과 측정오차를$H_2O_2$ 용액에서는 평균 +0.54mm에서 +0.18mm로(p<0.01), NaOCl 용액에서는 평균 -0.33mm에서 -0.01mm로(p<0.01) 줄일 수 있었다. 정확도는 허용오차를 ${\pm}$0.5mm를 기준으로 할 때, $H_2O_2$ 용액에서는 71.1%에서 91.1%로, NaOCl 용액에서는 82.2%에서 100%로 향상시켰다.

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NiTi Rotary Instruments에 의한 근관형성이 치근단부 근관형태에 미치는 영향 (THE EFFECT OF NITI ROTARY INSTRUMENTATION ON THE CONFIGURATION OF APICAL ROOT CANAL)

  • 오현정;홍찬의;조용범
    • Restorative Dentistry and Endodontics
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    • 제22권1호
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    • pp.244-253
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    • 1997
  • During preparation of narrow curved canals, procedural accidents such as, ledge, zipping, and transportation are frequently encountered and may lead to failure of endodontic therapy. To reduce these procedural errors and efficiently manage curved canals, various modifications in instrumentation technique and the design and flexibility of instruments have been advocated. This study compared the maintenance of the original canal curvature, cross sectional canal shape, and preparation time during instrumentation with stainless steel hand (K-Flexo) file, and nickel-titanium rotary files (Profile and Lightspeed). Thirty resin blocks with simulated curved canals of 20~25 degrees were used and divided into three groups of 10 each. In group 1, canals were instrumented using a quarter turn/pull technique with K-Flexofiles. Group 2 canals were prepared with rotary NiTi Profiles. Group 3 was prepared with rotary NiTi Lightspeed instrument. Before and after instrumentation, all canals were scanned using stereo microcope, FlexCam camera, and Photoshop 3.0 computer program. The results were as follows : 1. All groups showed some loss of canal curvature after instrumentation. Average loss of canal curvature was 8.6 degrees for K-Flexofile, 7.7 degrees for Profile, and 5.8 degrees for Lightspeed. Lightspeed exhibited significantly less curvature loss than K-Flexofile (p<0.05). 2. At the apical 1-mm level, Profile produced significantly rounder canals than Lightspeed (p<0.05). At the 3-mm level, Profile and Lightspeed exhibited significantly rounder canals than K-Flexofile (p<0.05). 3. Preparation with Lightspeed was significantly faster than Profile and K-Flexofile, and Profile was faster than K-Flexofile (p<0.05). 4. There was no significant difference in incidence of zipping between the hand K-Flexofile and rotary NiTi (Profile and Lightspeed) instruments. Most of apical canals were slightly widened near the apical foramen. As a results of this study, rotary NiTi instruments are superior to the K-Flexofile in regard to the maintenance of original canal curvature, cross-sectional shape and preparation time. But more investigations and studies should be needed to evaluate the ideal canal instrumentation.

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측방가압충전시 Nickel-Titanium spreader의 사용유무가 근관충전효과에 마치는 영향 (INFLUENCE OF NICKEL-TITANIUM SPREADER ON THE SEALING ABILITY IN LATERAL CONDENSATION TECHNIQUE)

  • 민경산;홍찬의;조용범
    • Restorative Dentistry and Endodontics
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    • 제25권3호
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    • pp.381-389
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    • 2000
  • Lateral condensation with gutta-percha and sealer has been shown to provide an excellent apical seal; however, the lateral condensation technique has demonstrated less favorable apical leakage results in curved canals when compared with straight canals. Placement of endodontic spreaders to within 1 to 2mm of the root canal working length has been advocated for optimum gutta-percha obturation. Due to their stiffness, stainless-steel(SS) spreaders will often fail to achieve this position in curved canals. Newly marketed nickel-titanium(NT) spreaders may offer an advantage in this regard due to the increased flexibility of these instruments. The purpose of this study was to evaluate the effect of NT finger spreader on the sealing ability in lateral condensation technique, compared with conventional SS finger spreader. Twenty four standardized resin models simulating curved canals(30 degree) were randomly placed into 2 groups and instrumented to a #30 master apical file size with Ni-Ti Profile .04 taper series using step down technique. Each groups was obturated with standardized gutta-percha cone by standard lateral condensation technique using SS finger spreader, NT finger spreader. And then, each model was sectioned horizontally with microtome at 1, 2, 3, 4, 5mm levels from the apex. At each of 5 levels, ratio of the area of gutta-percha was obtained by calculating the area of gutta-percha to the total area of the canal. The data collected were then analyzed statistically using a t test for independent samples. The results as follows ; 1. The total mean ratio of area of gutta-percha was 89.20${\pm}$7.00(%) for SS spreader group. 92.20${\pm}$5.17(%) for NT spreader group. There was statistically significant difference between each group(p<0.05). 2. At 3mm level, the mean ratio of area of gutta-percha was 88.32${\pm}$5.41(%) for SS spreader group, 95.25${\pm}$2.60(%) for NT spreader group. There was statistically significant difference between each group(p<0.05). At 1,2,4mm levels, NT spreader group showed greater mean ratio of area of gutta-percha than SS spreader group, too. But there was no statistically significant difference. 3. At 5mm level, the mean ratio of area of gutta-percha was 91.83${\pm}$3.42(%) for SS spreader group, 87.91${\pm}$3.68(%) for NT spreader group. There was statistically significant difference between each group(p<0.05). This study concluded that the NT spreader demonstrated somewhat favorable apical sealing effect than SS spreader in prepared curved canals. The clinical use of NT spreaders may enhance our ability to create better apical seals in curved canals, but further studies in this area will help clarify some of the remaining areas with which practitioners are concerned, such as compaction forces exerted by NT spreaders.

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NiTi Rotary Instrumentation이 근관만곡도 변화에 미치는 영향 (THE EFFECT OF NiTi ROTARY INSTRUMENTATION ON THE CHANGE OF APICAL ROOT CANAL CURVATURE)

  • 임형태;홍찬의;조용범
    • Restorative Dentistry and Endodontics
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    • 제23권1호
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    • pp.257-268
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    • 1998
  • During cleaning and shaping of narrow and curved canals, it is very difficult or nearly impossible to maintain the original canal shape. Procedural accidents such as, ledge, zipping, perforation, and instrument breakage are frequently occurred and even may lead to failure of endodontic therapy. To prevent these kinds of accidents, various instrumentation techniques and materials have been introduced. Recently some nickel titanium (NiTi) files are introduced and it is reported that These NiTi files created rounder preparations with less transportation than conventional instruments in curved canals. This study compared the change of the canal curvature and procedural accidents after instrumentation produced by stainless steel K-flexo file, and NiTi rotary files (Profile 29 and Quantec 2000). Thirty narrow and curved canals (25-45 degree) of extracted human molars were randomly divided into three groups. In group 1, canals were instrumented using a step-back and watch-winding/pull motion with K-flexo files. In group 2, canals were prepared with Profile 29. Group 3, canals were prepared with Quantec 2000 files. Before and after preparation of canals, periapical radiographs were taken and scanned. The change of canal curvature were measured using Photoshop 4.0 program and the incidence of procedural accidents were also evaluated. The results were as follows: 1. All group showed some loss of canal curvature after instrumentation. 2. Average loss of canal curvature was $6.70{\pm}5.31$ degree for group 1, $3.80{\pm}2.57$ degree for group 2, and $5.40{\pm}4.83$ degree for group 3. All group There was significant change in curvature between before and after instrumentation (p<0.05). But there was no statistical difference amoung 3 groups. 3. In group I, there were no procedural accidents, such as ledging, perforation, or instrument fracture. In group 2, two cases of ledge and one case of instrument fracture were produced Goup 3, each one case of ledge, perforation and instrument fracture were occurred. Whthin the limits of above results, It seems that NiTi rotary instrumentation is not All Mighty and if we use uncarefully, it is more dangerous to produce some procedural accidents than conventional hand files. But more studies should be taken to evaluate the exact effects of NiTi rotary instrumentations.

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