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Micrometric precision of prosthetic dental crowns obtained by optical scanning and computer-aided designing/computer-aided manufacturing system

机译:通过光学扫描和计算机辅助设计/计算机辅助制造系统获得的假牙冠的微米精度

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摘要

The current study evaluated prosthetic dental crowns obtained by optical scanning and a computer-aided designing/computer-aided manufacturing system using micro-computed tomography to compare the marginal fit. The virtual models were obtained with four different scanning surfaces: typodont (T), regular impressions (Rl), master casts (MC), and powdered master casts (PMC). Five virtual models were obtained for each group. For each model, a crown was designed on the software and milled from feldspathic ceramic blocks. Micro-CT images were obtained for marginal gap measurements and the data were statistically analyzed by one-way analysis of variance followed by Tukey's test. The mean vertical misfit was T = 62.6 ± 65.2 μm; MC = 60.4 ± 38.4 μm; PMC = 58.1 ± 38.0 μm, and Rl = 89.8 ± 62.8 μm. Considering a percentage of vertical marginal gap of up to 75 μm, the results were T = 71.5%, RI = 49.2%, MC = 69.6%, and PMC = 71.2%. The percentages of horizontal overextension were T = 8.5%, RI = 0%, MC = 0.8%, and PMC = 3.8%. Based on the results, virtual model acquisition by scanning the typodont (simulated mouth) or MC, with or without powder, showed acceptable values for the marginal gap. The higher result of marginal gap of the Rl group suggests that it is preferable to scan this directly from the mouth or from MC.
机译:当前的研究评估了通过光学扫描和计算机辅助设计/计算机辅助制造系统(使用微计算机断层扫描)获得的假牙冠,以比较边缘吻合度。使用四个不同的扫描表面获得虚拟模型:台风(T),常规印模(R1),母模(MC)和粉末母模(PMC)。每组获得五个虚拟模型。对于每个模型,在软件上设计了一个表冠,并用长石陶瓷块进行了铣削。获得了用于边缘间隙测量的Micro-CT图像,并通过单向方差分析和Tukey检验对数据进行了统计分析。平均垂直失配为T = 62.6±65.2μm; MC = 60.4±38.4微米; PMC = 58.1±38.0μm,并且R1 = 89.8±62.8μm。考虑到垂直边际间隙的百分比最高为75μm,结果为T = 71.5%,RI = 49.2%,MC = 69.6%和PMC = 71.2%。水平过度伸展的百分比为T = 8.5%,RI = 0%,MC = 0.8%和PMC = 3.8%。根据结果​​,通过扫描台风(模拟口)或MC(有或没有粉末)来获取虚拟模型,都显示出可接受的边际间隙值。 R1基团的边缘间隙的较高结果表明,优选直接从口腔或MC扫描。

著录项

  • 来源
    《Journal of biomedical optics》 |2014年第8期|088003.1-088003.6|共6页
  • 作者单位

    Federal University of Uberlandia, Department of Occlusion, Fixed Prostheses and Dental Materials, Av. Para, 1720, Bloco 4LA sala 4LA-42, Campus Umuarama, 38405-320, Uberlandia, Minas Gerais, Brazil;

    Federal University of Uberlandia, Department of Occlusion, Fixed Prostheses and Dental Materials, Av. Para, 1720, Bloco 4LA sala 4LA-42, Campus Umuarama, 38405-320, Uberlandia, Minas Gerais, Brazil;

    Federal University of Uberlandia, Department of Occlusion, Fixed Prostheses and Dental Materials, Av. Para, 1720, Bloco 4LA sala 4LA-42, Campus Umuarama, 38405-320, Uberlandia, Minas Gerais, Brazil;

    Federal University of Uberlandia, Department of Occlusion, Fixed Prostheses and Dental Materials, Av. Para, 1720, Bloco 4LA sala 4LA-42, Campus Umuarama, 38405-320, Uberlandia, Minas Gerais, Brazil;

    Federal University of Uberlandia, Department of Occlusion, Fixed Prostheses and Dental Materials, Av. Para, 1720, Bloco 4LA sala 4LA-42, Campus Umuarama, 38405-320, Uberlandia, Minas Gerais, Brazil;

    Federal University of Uberlandia, Department of Occlusion, Fixed Prostheses and Dental Materials, Av. Para, 1720, Bloco 4LA sala 4LA-42, Campus Umuarama, 38405-320, Uberlandia, Minas Gerais, Brazil;

    University of Michigan, School of Dentistry, Department of Biologic and Material Sciences, Division of Prosthodontics, 1011 N. University, Ann Arbor, Michigan 48109-1078, United States;

    Federal University of Uberlandia, Department of Operative Dentistry and Dental Materials, Av. Para, 1720, Bloco 4LA sala 4LA-42, Campus Umuarama, 38405-320, Uberlandia, Minas Gerais, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    computer-aided designing/computer-aided manufacturing; CEREC Vita blocks; ceramics; micro-computed tomograpny; marginal fit; dental materials; optical devices;

    机译:计算机辅助设计/计算机辅助制造;CEREC Vita块;陶瓷;微型计算机断层扫描边际拟合牙科材料;光学设备;

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