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中华口腔医学研究杂志(电子版) ›› 2021, Vol. 15 ›› Issue (05) : 267 -271. doi: 10.3877/cma.j.issn.1674-1366.2021.05.002

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牙磨耗评价的临床应用和研究进展
蓝凯文1, 戴驰1, 聂嘉祺1, 刘俊良1, 陈琳灵1, 阎英1,()   
  1. 1. 中山大学附属口腔医院,光华口腔医学院,广东省口腔医学重点实验室,广州 510055
  • 收稿日期:2021-07-23 出版日期:2021-10-01
  • 通信作者: 阎英

Clinical application and research progress on tooth wear

Kaiwen Lan1, Chi Dai1, Jiaqi Nie1, Junliang Liu1, Linling Chen1, Ying Yan1,()   

  1. 1. Hospital of Stomatology, Guanghua School of Stomatology, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Stomatology, Guangzhou 510055, China
  • Received:2021-07-23 Published:2021-10-01
  • Corresponding author: Ying Yan
引用本文:

蓝凯文, 戴驰, 聂嘉祺, 刘俊良, 陈琳灵, 阎英. 牙磨耗评价的临床应用和研究进展[J]. 中华口腔医学研究杂志(电子版), 2021, 15(05): 267-271.

Kaiwen Lan, Chi Dai, Jiaqi Nie, Junliang Liu, Linling Chen, Ying Yan. Clinical application and research progress on tooth wear[J]. Chinese Journal of Stomatological Research(Electronic Edition), 2021, 15(05): 267-271.

牙磨耗的检查评估一直备受关注,近年来以牙磨耗评估系统为代表的指数分级测量法为牙磨耗的临床诊疗提供了重要的参考依据,数字化技术的进展又为牙磨耗面的三维定量测量提供了有利条件。本文通过探讨牙磨耗指数分级测量法和精细定量测量法的应用和优缺点,为牙磨耗评价的临床应用和研究进展提供思路。

The inspection and evaluation of tooth wear have attracted much attention. In recent years, the index grading method, represented by the tooth wear evaluation system, has provided an important reference for the diagnosis and treatment of tooth wear. The progress of digital technology provides favorable conditions for the three-dimensional quantitative measurement of tooth wear surface. This article discussed the advantages, disadvantages, and applications of the index grading method and the fine quantitative measurement, so as to provide evidence for the clinical application and novel targets of further study on the evaluation of tooth wear.

图1 牙磨耗评估系统2.0流程
表1 4种常用数字化扫描系统
图2 右上尖牙磨耗面精细定量测量法 A:口内照片;B:采用数字化口内扫描系统扫描得到的磨耗面三维模型;C:磨耗面边缘标记
[1]
Bartlett D, O′Toole S. Tooth wear:Best evidence consensus statement[J]. J Prosthodont202130(S1):20-25. DOI:10.1111/jopr.13312.
[2]
Schlueter N, Amaechi BT, Bartlett D,et al. Terminology of erosive tooth wear:Consensus report of a workshop organized by the ORCA and the cariology research group of the IADR[J]. Caries Res202054(1):2-6. DOI:10.1159/000503308.
[3]
Watts MW, Tan EK, Jankovic J. Bruxism and cranial-cervical dystonia:Is there a relationship?[J]. Cranio199917(3):196-201. DOI:10.1080/08869634.1999.11746095.
[4]
Smith BG, Knight JK. An index for measuring the wear of teeth[J]. Br Dent J1984156(12):435-438. DOI:10.1038/sj.bdj.4805394.
[5]
阎英,凌均棨.牙齿磨耗的测量方法[J].国际口腔医学杂志200936(4):476-478. DOI:10.3969/j.issn.1673-5749.2009.04.030.
[6]
Wetselaar P, Lobbezoo F. The tooth wear evaluation system:A modular clinical guideline for the diagnosis and management planning of worn dentitions[J]. J Oral Rehabil201643(1):69-80. DOI:10.1111/joor.12340.
[7]
Wetselaar P, Wetselaar-Glas MJM, Katzer LD,et al. Diagnosing tooth wear,a new taxonomy based on the revised version of the tooth wear evaluation system(TWES 2.0)[J]. J Oral Rehabil202047(6):703-712. DOI:10.1111/joor.12972.
[8]
Delong R. Intra-oral restorative materials wear:Rethinking the current approaches:How to measure wear[J]. Dental Materials200622(8):702-711. DOI:10.1016/j.dental.2006.02.003.
[9]
Jakovljevic IV, Todorovic A, Budak I,et al. Measurement of dental crown wear:In vitro study[J]. Dent Mater J202039(1):126-134. DOI:10.4012/dmj.2018-280.
[10]
Molnar S, Mckee JK, Molnar IM,et al. Tooth wear rates among contemporary Australian Aborigines[J]. J Dent Res198362(5):562-565. DOI:10.1177/00220345830620051101.
[11]
Tomenchuk J, Mayhall JT. A correlation of tooth wear and age among modern Igloolik eskimos[J]. Am J Phys Anthropol197951(1):67-77. DOI:10.1002/ajpa.1330510109.
[12]
Restrepo C, Peláez A, Alvarez E,et al. Digital imaging of patterns of dental wear to diagnose bruxism in children[J]. Int J Paediatr Dent200616(4):278-285. DOI:10.1111/j.1365-263X.2006.00756.x.
[13]
Wulfman C, Koenig V, Mainjot AK. Wear measurement of dental tissues and materials in clinical studies:A systematic review[J]. Dent Mater201834(6):825-850. DOI:10.1016/j.dental.2018.03.002.
[14]
Stucki S, Gkantidis N. Assessment of techniques used for superimposition of maxillary and mandibular 3D surface models to evaluate tooth movement:A systematic review[J]. Eur J Orthod202042(5):559-570. DOI:10.1093/ejo/cjz075.
[15]
吴哲,丁烨.数字化技术在口腔修复中的应用[J/OL].中华口腔医学研究杂志(电子版)201913(4):200-203. DOI:10.3877/cma.j.issn.1674-1366.2019.04.002.
[16]
Commer P, Bourauel C, Maier K,et al. Construction and testing of a computer-based intraoral laser scanner for determining tooth positions[J]. Med Eng Phys200022(9):625-635. DOI:10.1016/s1350-4533(00)00076-x.
[17]
王勇.口内数字印模技术[J].口腔医学201535(9):705-709. DOI:10.13591/j.cnki.kqyx.2015.09.001.
[18]
苏庭舒.口内数字化印模技术[J/OL].中华临床医师杂志(电子版)20126(19):5780-5782. DOI:10.3877/cma.j.issn.1674-0785.2012.19.002.
[19]
胡昊,白玉兴.口内直接扫描技术的研究进展[J].中华口腔正畸学杂志201421(1):40-42. DOI:10.3760/cma.j.issn.1674-5760.2014.
[20]
Leifert MF, Leifert MM, Efstratiadis SS,et al. Comparison of space analysis evaluations with digital models and plaster dental casts[J]. Am J Orthod Dentofacial Orthop2009136(1):16.e1-16.e4. DOI:10.1016/j.ajodo.2008.11.019.
[21]
奚祺,吴国锋.数字化口内扫描技术的发展与应用[J].实用口腔医学杂志202137(1):136-140. DOI:10.3969/j.issn.1001-3733.2021.01.031.
[22]
王珍珍,周秦,李生斌,等. 3D扫描技术在口腔修复专业应用的研究进展[J].临床口腔医学杂志201430(2):126-127. DOI:10.3969/j.issn.1003-1634.2014.02.027.
[23]
黄婉怡,战德松.口内扫描数字化印模系统分类及其应用[J].中国实用口腔科杂志201710(08):452-457. DOI:10.19538/j.kq.2017.08.002.
[24]
惠宇,吴亮颖,张卫平,等.数字化口内扫描印模技术的发展和应用研究[J].现代医药卫生201935(19):2993-2996. DOI:10.3969/j.issn.1009-5519.2019.19.017.
[25]
Park J, Choi DS, Jang I,et al. A novel method for volumetric assessment of tooth wear using three-dimensional reverse-engineering technology:A preliminary report[J]. Angle Orthod201484(4):687-692. DOI:10.2319/081113-592.1.
[26]
Cevidanes LHS, Bailey LJ, Tucker JGR,et al. Superimposition of 3D cone-beam CT models of orthognathic surgery patients[J]. Dentomaxillofac Radiol200534(6):369-375. DOI:10.1259/dmfr/17102411.
[27]
Swennen GRJ, Mollemans W, de Clercq C,et al. A cone-beam computed tomography triple scan procedure to obtain a three-dimensional augmented virtual skull model appropriate for orthognathic surgery planning[J]. J Craniofac Surg200920(2):297-307. DOI:10.1097/SCS.0b013e3181996803.
[28]
Cevidanes LHC, Heymann G, Cornelis MA,et al. Superimposition of 3-dimensional cone-beam computed tomography models of growing patients[J]. Am J Orthod Dentofacial Orthop2009136(1):94-99. DOI:10.1016/j.ajodo.2009.01.018.
[29]
Kong L, Ma Y, Ren M,et al. Generation and characterization of ultra-precision compound freeform surfaces[J]. Sci Prog2020103(1):36850419880112. DOI:10.1177/0036850419880112.
[30]
Lee SP, Nam SE, Lee YM,et al. The development of quantitative methods using virtual models for the measurement of tooth wear[J]. Clin Anat201225(3):347-358. DOI:10.1002/ca.21238.
[31]
Lee SH, Nam SE, Lee SP. Evaluation of the effectiveness of the new tooth wear measurement parameters[J]. Anat Cell Biol201548(4):284-291. DOI:10.5115/acb.2015.48.4.284.
[32]
Kim SH, Park YS, Kim MK,et al. Methods for quantitative measurement of tooth wear using the area and volume of virtual model cusps[J]. J Periodontal Implant Sci201848(2):124-134. DOI:10.5051/jpis.2018.48.2.124.
[33]
Kim WH, Nam SE, Park YS,et al. Maxillary first molar wear:A longitudinal study of children[J]. Anat Cell Biol201851(4):251-259. DOI:10.5115/acb.2018.51.4.251.
[34]
Kullmer O, Benazzi S, Fiorenza L,et al. Technical note:Occlusal fingerprint analysis:Quantification of tooth wear pattern[J]. Am J Phys Anthropol2009139(4):600-605. DOI:10.1002/ajpa.21086.
[35]
Fung S, Lee J, Yong R,et al. A functional analysis of Carabelli trait in Australian aboriginal dentition[J]. Am J Phys Anthropol2021174(2):375-383. DOI:10.1002/ajpa.24120.
[36]
Fiorenza L. Reconstructing diet and behaviour of Neanderthals from Central Italy through dental macrowear analysis[J]. J Anthropol Sci201593:119-133. DOI:10.4436/JASS.93002.
[37]
Fiorenza L, Menter CG, Fung S,et al. The functional role of the Carabelli trait in early and late hominins[J]. J Hum Evol2020145:102816. DOI:10.1016/j.jhevol.2020.102816.
[38]
Fiorenza L, Benazzi S, Kullmer O,et al. Dental macrowear and cortical bone distribution of the Neanderthal mandible from Regourdou(Dordogne,Southwestern France)[J]. J Hum Evol2019132:174-188. DOI:10.1016/j.jhevol.2019.05.005.
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