人类学学报 ›› 2021, Vol. 40 ›› Issue (04): 695-705.doi: 10.16359/j.1000-3193/AAS.2021.0010
收稿日期:
2020-09-06
修回日期:
2020-11-09
出版日期:
2021-08-15
发布日期:
2021-08-17
通讯作者:
刘琳如
作者简介:
李海军,男(1981-),山西晋城人,博士,副教授,主要从事体质人类学研究。E-mail: 基金资助:
LI Haijun(), CHEN Huimin, LIU Liming, LIU Linru()
Received:
2020-09-06
Revised:
2020-11-09
Online:
2021-08-15
Published:
2021-08-17
Contact:
LIU Linru
摘要:
牙齿磨耗是一个多因素、多阶段、复杂渐进的过程。其特征是牙齿硬组织逐渐消失,牙齿磨耗程度可以一定程度反映饮食结构和生活方式。国外很多学者探讨了年龄、性别、饮食结构、断奶、社会分工、社会经济地位等因素对儿童牙齿磨耗的影响,及乳齿恒齿磨耗差异、牙列磨耗模式特点、牙齿磨耗与错𬌗畸形的关系等,而国内儿童牙齿磨耗研究相对薄弱。本文通过梳理和归纳相关文献,对儿童牙齿磨耗研究作简要概述,并对国内相关研究作简要回顾及展望。
中图分类号:
李海军, 陈慧敏, 刘力铭, 刘琳如. 儿童牙齿磨耗研究概述[J]. 人类学学报, 2021, 40(04): 695-705.
LI Haijun, CHEN Huimin, LIU Liming, LIU Linru. A review of tooth wear of children[J]. Acta Anthropologica Sinica, 2021, 40(04): 695-705.
阶段Stage | 磨耗描述 Description of deciduous teeth wear |
---|---|
0 | 没有可见的磨耗,牙齿没有磨耗痕迹(牙齿未完全萌出或刚萌出) |
1 | 牙釉质出现微小磨耗面(可反射光的小平面) |
2 | 牙釉质变得圆钝。臼齿齿尖有磨损,稍变圆钝 |
3 | 牙釉质变平。臼齿齿尖变平,未发生牙本质暴露 |
4 | 牙本质暴露(初期)。通常仅在牙齿的一侧(颊侧)暴露出牙本质(1-2个小区域) |
5 | 牙本质暴露(中期)。3-5个齿尖处出现牙本质暴露,暴露面积很小,唇、颊侧都有分布 |
6 | 牙本质暴露(接近全部)。所有或大多数齿尖处出现牙本质暴露,暴露面积大于第5阶段 |
7 | 牙本质暴露(相当大)。随着更多的牙本质暴露,牙本质暴露区域近似菱形或矩形 |
8 | 牙本质进一步暴露。在这个阶段,有两个或多个牙本质暴露面逐渐融合,甚至仅在咬合面中心残存部分牙釉质 |
9 | 牙釉质环。咬合面的牙釉质被磨耗完,仅牙齿周边尚存薄环状釉质 |
10 | 牙根开始出现磨耗。在乳齿自然脱落之前,磨耗到这个程度很罕见 |
表1 乳齿磨耗阶段描述[31]
Tab.1 The description of each stage of deciduous teeth wear
阶段Stage | 磨耗描述 Description of deciduous teeth wear |
---|---|
0 | 没有可见的磨耗,牙齿没有磨耗痕迹(牙齿未完全萌出或刚萌出) |
1 | 牙釉质出现微小磨耗面(可反射光的小平面) |
2 | 牙釉质变得圆钝。臼齿齿尖有磨损,稍变圆钝 |
3 | 牙釉质变平。臼齿齿尖变平,未发生牙本质暴露 |
4 | 牙本质暴露(初期)。通常仅在牙齿的一侧(颊侧)暴露出牙本质(1-2个小区域) |
5 | 牙本质暴露(中期)。3-5个齿尖处出现牙本质暴露,暴露面积很小,唇、颊侧都有分布 |
6 | 牙本质暴露(接近全部)。所有或大多数齿尖处出现牙本质暴露,暴露面积大于第5阶段 |
7 | 牙本质暴露(相当大)。随着更多的牙本质暴露,牙本质暴露区域近似菱形或矩形 |
8 | 牙本质进一步暴露。在这个阶段,有两个或多个牙本质暴露面逐渐融合,甚至仅在咬合面中心残存部分牙釉质 |
9 | 牙釉质环。咬合面的牙釉质被磨耗完,仅牙齿周边尚存薄环状釉质 |
10 | 牙根开始出现磨耗。在乳齿自然脱落之前,磨耗到这个程度很罕见 |
[1] | Scheuer L, Black S. Developmental juvenile osteology[M]. London: Academic Press, 2000 |
[2] |
Kaidonis JA. Tooth wear: the view of the anthropologist[J]. Clinical Oral Investigations, 2008, 12(1):21-26
doi: 10.1007/s00784-007-0154-8 URL |
[3] | Shellis RP, Addy M. The interactions between attrition, abrasion and erosion in tooth wear[J]. monographs in oral science, 2014, 25(6):32-45 |
[4] |
Wiegand A, Muller J, Werner C, et al. Prevalence of erosive tooth wear and associated risk factors in 2-7-year-old German kindergarten children[J]. Oral diseases, 2006, 12(2):117-124
pmid: 16476031 |
[5] |
Gatou T, Mamai-Homata E. Tooth wear in the deciduous dentition of 5-7-year-old children: risk factors[J]. Clinical Oral Investigations, 2012, 16(3):923-933
doi: 10.1007/s00784-011-0586-z URL |
[6] | Torlinska-Walkowiak N, Maćkowiak K, Sowinska A. Evaluation of deciduous-tooth wear in children living in the Middle Ages[J]. Oral Health & Preventive Dentistry, 2015, 13(2):149-156 |
[7] |
Kreulen CM, Van’t Spijker A, Rodriguez JM, et al. Systematic review of the prevalence of tooth wear in children and adolescents[J]. Caries Research, 2010, 44(2):151-159
doi: 10.1159/000308567 pmid: 20389070 |
[8] |
Al-Dlaigan YH, Shaw L, Smith A. Dental erosion in a group of British 14-year-old school children. Part 11: Influence of dietary intake[J]. British Dental Journal, 2001, 190(5):258-261
pmid: 11303686 |
[9] | Ayers KM, Drummond BK, Thomson WM, et al. Risk indicators for tooth wear in New Zealand school childen[J]. International Journal of Paediatric Dentistry, 2002, 52:41-46 |
[10] |
Warren JJ, Yonezu T, Bishara SE. Tooth wear patterns in the deciduous dentition[J]. American Journal of Orthodontics and Dentofacial Orthopedic, 2002, 122(6):614-618
doi: 10.1067/mod.2002.129193 URL |
[11] | Powell M. The analysis of dental wear and caries for dietary reconstruction[A]. In: Gilbert RI Jr, Mielke JH(Eds.). The analysis of prehistoric diets[M]. London: Academic Press, 1985: 307-388 |
[12] | Suzuki T, Kikuchi M. Diachronic changes of tooth wear in the deciduous dentition of the Japanese[A]. In: Sasano T, Suzuki O(Eds.). Interface Oral Health Science 2009[C]. Tokyo: Springer, 2010: 148-149 |
[13] |
Marinelli A, Alarashi M, Defraia E, et al. Tooth wear in the mixed dentition:a comparative study between children born in the 1950s and the 1990s[J]. Angle Orthodontist, 2005, 75(3):340-343
pmid: 15898370 |
[14] | Davies TG, Pedersen PO. The degree of attrition of the deciduous teeth and first permanent molars of primitive and urbanized Greenland natives[J]. British Dental Journal, 1955, 19:35-43 |
[15] |
Corruccini RS, Townsend G, Brown T. Occlusal variation in Australian aboriginals[J]. American Journal of Physical Anthropology, 1990, 82(3):257-265
pmid: 2375378 |
[16] |
Campbell TD, Lewis AJ. The aborigines of South Australia: dental observations recorded at Ooldea[J]. Australian Dental Journal, 1926, 30:371-376
doi: 10.1111/adj.1985.30.issue-5 URL |
[17] |
Choudhary A, Pal SK, Jha K, et al. Deciduous tooth wear and associated risk factors in 5-10-year-old school children of Lucknow[J]. International Journal of Dental Science and Research, 2013, 2:1-5
doi: 10.1016/S2213-9974(15)00025-7 URL |
[18] |
Réjasse B, Lamare S, Legoy MD, et al. The distribution and severity of tooth wear and the relationship between erosion and dietary constituents in a group of children[J]. International Journal of Paediatric Dentistry, 2010, 4:151-157
doi: 10.1111/j.1365-263X.1994.tb00124.x URL |
[19] |
Bartlett DW, Coward PY, Nikkah C, et al. The prevalence of tooth wear in a cluster sample of adolescent schoolchildren and its relationship with potential explanatory factors[J]. British Dental Journal, 1998, 184:125-129
pmid: 9524373 |
[20] |
Restrepo CC, Manfredini D, Manrique R, et al. Association of dietary habits and parental reported sleep tooth grinding with tooth wear in children with mixed dentition[J]. BMC Oral Health, 2017, 17(1):156
doi: 10.1186/s12903-017-0447-5 pmid: 29262818 |
[21] |
Knight DJ, Leroux BG, Zhu C, et al. A longitudinal study of tooth wear in orthodontically treated patients[J]. American Journal of Orthodontics and Dentofacial Orthopedics, 1997, 112(2):194-202.
pmid: 9267232 |
[22] | Clement AF, Freyne A. A revised method for assessing tooth wear in the deciduous dentition[A]. In: Mitchell PD, Buckberry J(Eds.). Proceedings of the twelfth annual conference of the British Association for Biological Anthropology and Osteoarchaeology[C]. Oxford: Archaeopress British Archaeological Reports International Series, 2012: 119-129 |
[23] |
Skinner M. Dental wear in immature late Pleistocene European Hominines[J]. Journal of Archaeological Science, 1997, 24(8):677-700
doi: 10.1006/jasc.1996.0151 URL |
[24] | 贺乐天, 朱泓, 李文瑛. 新疆罗布泊小河墓地居民的口腔健康与饮食[J]. 人类学学报, 2014, 33(4):497-506 |
[25] | 张雅军, 仝涛, 李林辉. 西藏故如甲木墓地人群牙齿磨耗和食物结构的关系[J]. 人类学学报, 2019, 38(1):107-116 |
[26] |
Littleton J. Dental wear and age grading at Roonka, South Australia[J]. American Journal of Physical Anthropology, 2017, 163:519-530
doi: 10.1002/ajpa.23226 pmid: 28374451 |
[27] |
Harding MA, Whelton H, O’Mullane DM, et al. Dental erosion in 5-year-old Irish school children and associated factors: a pilot study[J]. Community Dental Health, 2003, 20(3):165-170
pmid: 12940307 |
[28] | Kazoulis S, Seow WK, Holcombe T, et al. Common dental conditions associated with dental erosion in schoolchildren in Australia[J]. International Journal of Paediatric Dentistry, 2007, 29:33-39 |
[29] | Luo Y, Zeng XJ, Du MQ, et al. The prevalence of dental erosion in preschool children in China[J]. Journal of dentistry for children, 2005, 33(2):115-121 |
[30] |
Mangueira DF, Sampaio FC, Oliveira AF. Association between socioeconomic factors and dental erosion in Brazilian schoolchildren[J]. Journal of Public Health Dentistry, 2009, 69(4):254-259
doi: 10.1111/j.1752-7325.2009.00131.x pmid: 19453863 |
[31] |
Dawson H, Brown KR. Exploring the relationship between dental wear and status in late medieval subadults from England[J]. American Journal of Physical Anthropology, 2013, 150(3):433-441
doi: 10.1002/ajpa.22221 pmid: 23341259 |
[32] | Hillson S. Dental anthropology[M]. Cambridge: Cambridge University Press, 1996 |
[33] |
Ganss C, Klimek J, Giese K. Dental erosion in children and adolescent: across-sectional and longitudinal investigation using study models[J]. Community Dentistry and Oral Epidemiology, 2001, 29(4):264-271
pmid: 11515640 |
[34] |
Agamatsu H, Abe S, Shiozaki K. Relationship between large tubules and dentin caries in human deciduous tooth[J]. Bulletin of Tokyo Dental College, 2005, 46(1-2):7-15
doi: 10.2209/tdcpublication.46.7 URL |
[35] |
Dugmore C, Rock WP. The prevalence of tooth erosion in 12-year-old children[J]. British Dental Journal, 2004, 196:279-282
pmid: 15017417 |
[36] | Rios D, Magalhaes AC, Honorio HM, et al. The prevalence of deciduous tooth wear in six-year-old children and its relationship with potential explanatory factors[J]. Oral Health & Preventive Dentistry, 2007, 5(3):167-171 |
[37] | Madlena M, Keszthelyi G, Alberth M, et al. The attrition of deciduous teeth[J]. Fogorov Sz, 1989, 82(9):273-276 |
[38] | Pihut M. Etiologia patologicznego starcia zębów[J]. Por Stom, 2003:23-26 |
[39] | Tabarini HS. Detal attrition of Maran Tzutujil children-a study based on longitidunal materials[J]. Bulletin of Tokyo Medical and Dental University, 1995, 42(1):31-50 |
[40] |
Camporesi M, Marinelli A, Baroni G, et al. Dental arch dimensions and tooth wear in two samples of children in the 1950s and 1990s[J]. British Dental Journal, 2009, 207:E24
doi: 10.1038/sj.bdj.2009.960 URL |
[41] | Muller H. Introduction a`la Pratique de l’Ortope`die Dentofaciale et de l’Ortodontie[M]. Paris: Ed Ageco, 1970: 51 |
[42] | Moyers RE, Wainright R. Skeletal contributions to occlusal development[A]. In: McNamara JA Jr(Ed.). The Biology of Occlusal Development, Monograph 7. Craniofacial Growth Series[M]. Ann Arbor: Center for Human Growth and Development, University of Michigan, 1977: 89-111 |
[43] | Tollaro I, Defraia E, Marinelli A, et al. Tooth abrasion in unilateral posterior crossbite in the deciduous dentition[J]. Angle Orthodontist, 2002, 72(5):426-430 |
[44] |
Whittaker DK, Ryan S, Weeks K, et al. Patterns of approximal wear in cheek teeth of a Romano-British population[J]. American Journal of Physical Anthropology, 1987, 73:389-396
pmid: 3303960 |
[45] |
Lysell L. Qualitative and quantitative determination of attrition and the ensuing tooth migration[J]. Acta Odontologica Scandinavica, 2009, 16(3):267-293
doi: 10.3109/00016355809064113 URL |
[46] |
Lunt DA. The dentition in a group of mediaeval Scottish children[J]. British Dental Journal. 1972, 132(11):443-446
pmid: 4560568 |
[47] |
Smith BJ, Knight JK. An index for measuring the wear of tooth[J]. British Dental Journal, 1984, 156(12):435-438
pmid: 6590081 |
[48] |
Carlsson GE, Johansson A, Lundqvist S. Occlusal wear:A follow up study of 18 subjects with extensively worn dentitions[J]. Acta Odontologica Scandinavica, 1985, 43:83-90
pmid: 3863449 |
[49] |
Liu W, Zhang QC, Wu XJ, Zhu H. Tooth wear and dental pathology of the Bronze-Iron Age people in Xinjiang, Northwest China: Implications for their diet and lifestyle[J]. HOMO-Journal of Comparative Human Biology, 2010, 61(2):102-116
doi: 10.1016/j.jchb.2010.02.002 pmid: 20167319 |
[50] | 刘武, 武仙竹, 吴秀杰, 等. 湖北郧西黄龙洞更新世晚期人类牙齿磨耗与使用痕迹[J]. 人类学学报, 2010, 29(1):1-14 |
[51] |
Meng Y, Zhang HQ, Pan F, et al. Prevalence of dental caries and tooth wear in a Neolithic population (6700-5600 years BP) from northern China[J]. Archives of Oral Biology, 2011, 56(11):1424-1435
doi: 10.1016/j.archoralbio.2011.04.003 URL |
[52] | 李海军, 陈峰, 戴成萍. 全新世中国北方人群下颌第一臼齿磨耗的比较研究[J]. 第四纪研究, 2017, 37(4):686-695 |
[53] | 张全超, 韩涛, 张群. 新疆鄯善洋海墓地出土人骨的牙齿微磨耗痕迹研究[J]. 西域研究, 2018, 111(3):88-93 |
[54] | 周亚威, 张晓冉, 顾万发. 郑州汪沟遗址仰韶文化居民的牙齿磨耗及口腔健康状况分析[J]. 人类学学报, 2018, 37(1):10-23 |
[55] | 李法军. 当代水族男性的牙齿磨耗特点及其成因[J]. 人类学学报, 2016, 35(2):283-299 |
[56] | 王丽娜, 张惠芳, 贾英霞, 等. 张家口市某社区学龄前儿童口腔疾病流行病学调查[J]. 解放军预防医学杂志, 2019, 37(3):113-116 |
[57] | 陆军, 冯俊苗. 230例乳齿反𬌗的病因分析[J]. 宁夏医学杂志, 2004, 26(12):831 |
[58] | 张靖, 魏朝, 杜杨格, 等. 武汉市12岁及15岁青少年牙齿磨耗状况及相关危险因素[J]. 口腔医学研究, 2015, 31(9):890-893 |
[59] | 朱芳武, 卢为善. 桂林甑皮岩新石器时代遗址2 例儿童的年龄问题[J]. 人类学学报, 1995, 14(2):147-150 |
[1] | 周亚威, 于雅婷, 顾万发. 河南双槐树新石器时代遗址儿童的古病理学[J]. 人类学学报, 2023, 42(04): 458-471. |
[2] | 申旭科, 李婷, 张东菊. 中国旧石器原料开发策略的研究进展[J]. 人类学学报, 2023, 42(02): 161-176. |
[3] | 陈晓颖, 游海杰, 宋美玲, 郭明晓, 肖雨妮, 曾雯. 广西敢造遗址史前居民口腔的健康状况[J]. 人类学学报, 2023, 42(01): 98-109. |
[4] | 雷帅, 郭怡. 生物考古学视野下人类的牙齿与饮食[J]. 人类学学报, 2022, 41(03): 501-513. |
[5] | 杨诗雨, 张群, 王龙, 张全超. 新疆吐鲁番胜金店墓地人骨的牙齿微磨耗[J]. 人类学学报, 2022, 41(02): 218-225. |
[6] | 熊建雪, 陈国科, 殷杏, 蒙海亮, 杨谊时, 陶驿辰, 谭婧泽, 李辉, 文少卿. 黑水国遗址汉代人群的上颌窦炎症[J]. 人类学学报, 2021, 40(05): 776-786. |
[7] | 李伟东, 阳高金, 吴琛帆, 杨斌, 张鹏. 非人灵长类声音通讯的研究进展[J]. 人类学学报, 2021, 40(04): 721-732. |
[8] | 华李成, Peter S UNGAR. 牙齿微痕研究在古食性重建中应用的简述[J]. 人类学学报, 2021, 40(02): 292-306. |
[9] | 周亚威, 张晓冉, 顾万发. 郑州汪沟遗址仰韶文化居民的牙齿磨耗及口腔健康状况[J]. 人类学学报, 2021, 40(01): 49-62. |
[10] | 邢松, 周蜜, 潘雷. 东亚中更新世古人类下颌第二臼齿釉质-齿质连接面三维形状和釉质厚度分布[J]. 人类学学报, 2020, 39(04): 521-531. |
[11] | 潘雷, 廖卫, 王伟, 刘建辉, 吉学平, 杨晓梅, 郝以鑫. 禄丰古猿蝴蝶种下第四前臼齿釉质-齿质交界面的三维几何形态[J]. 人类学学报, 2020, 39(04): 555-563. |
[12] | 隋哲峰, 王英, 萨仁高娃. 巴尔虎蒙古族少年儿童眼部特征的调查研究[J]. 人类学学报, 2020, 39(01): 135-142. |
[13] | 潘雷. 人类牙齿齿冠和齿根分离两种技术方法对牙釉质厚度测量的影响[J]. 人类学学报, 2019, 38(03): 398-406. |
[14] | 孙承凯, 孙小玲, 周蜜, 刘立群, 邢松. 山东新泰乌珠台人类牙齿的形态学特征[J]. 人类学学报, 2019, 38(03): 446-459. |
[15] | 张雅军, 仝涛, 李林辉, 赤列次仁. 西藏故如甲木墓地人群牙齿磨耗和食物结构的关系[J]. 人类学学报, 2019, 38(01): 107-118. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||