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Investigation into the validity of WearCompare, a purpose-built software to quantify erosive tooth wear progression

机译:研究专门用于量化侵蚀性牙齿磨损进程的软件WearCompare的有效性

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摘要

Objectives. The use of surface matching software with intraoral scanners is developing rapidly which increases the need for accessible, accurate and validated measurement soft ware. This investigation compared the current gold-standard Geomagic Control software to a purpose-built software "WearCompare".Methods. Artificially created occlusal defects of a known size were created on 10 natural molar teeth scanned with a structured-light model-scanner (Rexcan DS2, Europac 3D, Crewe). The volume change, maximum profilometric loss and mean profilometric loss were obtained from both Geomagic Control (3D Systems, Darmstadt, Germany) and WearCompare (leedsdigitaldentistry.com). Duplicated datasets were randomly repositioned and re-alignment performed. The effect of the re-alignment was calculated by analysing differences between the known defect size and defect size after re-alignment using the same measurement metrics. Lastly, clinical wear measurements were compared on natural molar surfaces (n = 60) over 6 months using study models collected from a previous longitudinal trial. Data analysis was performed in SPSS v25 (paired t-tests, Pearson correlations, p < 0.05).Results. Measurement correlation between the softwares was greater than 0.97 (p < 0.001) for all measurement metrics. The volume change error (SD) after alignment was -0.67 mm(3) (1.14) for Geomagic and -0.06 mm(3)(0.93) for WearCompare (p = 0.140 and r = 0.065, p = 0.86). Measurement errors were observed after alignment in both softwares and no statistical differences were observed between softwares. The volume change on the clinical dataset over 6 months was +0.29 mm(3)(3.97) in Geomagic and -0.30 mm(3)(1.82) for WearCompare (p = 0.19 and r = 0.61, p < 0.001). The mean profile gain was 42.86 mu m(40.19) for Geomagic and 32.17 mu m(23.72) for WearCompare (p = 0.048). Correlations between the softwares were greater than 0.6 for all measurement metrics except for mean profile gain.Significance. WearCompare is a comparable tool to Geomagic for quantifying erosive tooth wear. WearCompare reported statistically less profile gain indicating less error but further research is needed to reduce the human errors in both softwares. Crown Copyright (C) 2019 Published by Elsevier Inc. on behalf of The Academy of Dental Materials. All rights reserved.
机译:目标。表面匹配软件与口内扫描仪的结合正在迅速发展,这增加了对可访问,准确和经过验证的测量软件的需求。这项研究将当前的黄金标准Geomagic Control软件与专用软件“ WearCompare”进行了比较。在结构化光模型扫描仪(Rexcan DS2,Europac 3D,Crewe)扫描的10颗天然磨牙上创建了已知大小的人工咬合缺损。从Geomagic Control(3D Systems,德国达姆施塔特)和WearCompare(leedsdigitaldentistry.com)获得体积变化,最大轮廓测量损耗和平均轮廓测量损耗。复制的数据集被随机重新定位并执行重新对齐。通过使用相同的测量指标分析已知缺陷大小和重新对齐后的缺陷大小之间的差异来计算重新对齐的效果。最后,使用从先前的纵向试验收集的研究模型比较了6个月内自然磨牙表面(n = 60)的临床磨损测量值。在SPSS v25中进行数据分析(配对t检验,Pearson相关性,p <0.05)。对于所有测量指标,软件之间的测量相关性均大于0.97(p <0.001)。对齐后的体积变化误差(SD)对于Geomagic为-0.67 mm(3)(1.14),对于WearCompare为-0.06 mm(3)(0.93)(p = 0.140和r = 0.065,p = 0.86)。在两个软件中对齐后均观察到测量误差,并且在两个软件之间未观察到统计差异。在Geomagic中,六个月内临床数据集的体积变化为+0.29 mm(3)(3.97),而WearCompare的体积变化为-0.30 mm(3)(1.82)(p = 0.19和r = 0.61,p <0.001)。 Geomagic的平均轮廓增益为42.86μm(40.19),WearCompare的平均轮廓增益为32.17μm(23.72)(p = 0.048)。对于所有测量指标,软件之间的相关性均大于0.6,平均轮廓增益除外。 WearCompare是可与Geomagic媲美的工具,用于量化侵蚀性牙齿的磨损。 WearCompare的统计数据表明,配置文件获取的统计数据较少,表明错误较少,但需要进一步研究以减少这两种软件中的人为错误。 Crown版权(C)2019由Elsevier Inc.代表牙科材料学院出版。版权所有。

著录项

  • 来源
    《Dental materials》 |2019年第10期|1408-1414|共7页
  • 作者单位

    Kings Coll London Fac Dent Oral & Craniofacial Sci Guys Hosp Ctr Clin Oral & Translat Sci London SE1 9RT England;

    Univ Leeds Sch Dent Dept Restorat Dent Leeds LS2 9LU W Yorkshire England|Univ Siena Dept Med Biotechnol Siena Italy;

    Univ Leeds Sch Dent Dept Restorat Dent Leeds LS2 9LU W Yorkshire England;

  • 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

    Tooth wear; Tooth erosion; Diagnostic imaging; Dental technology;

    机译:牙齿磨损;牙齿侵蚀;诊断成像;牙科技术;

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