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本文引用的文献

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EXPERIMENTAL GINGIVITIS IN MAN.人类实验性牙龈炎
J Periodontol (1930). 1965 May-Jun;36:177-87. doi: 10.1902/jop.1965.36.3.177.
2
Epidemiological studies of periodontal diseases.牙周疾病的流行病学研究。
Am J Public Health Nations Health. 1968 Sep;58(9):1713-22. doi: 10.2105/ajph.58.9.1713.
3
Cell wall thickening and intracellular polysaccharide in microorganisms of the dental plaque.牙菌斑微生物中的细胞壁增厚和细胞内多糖。
Caries Res. 1971;5(1):30-43. doi: 10.1159/000259730.
4
Induction of periodontal destruction in gnotobiotic rats by a human oral strain of Actinomyces naeslundii.人源口腔内氏放线菌菌株在悉生大鼠中诱导牙周破坏
Arch Oral Biol. 1970 Oct;15(10):993-5. doi: 10.1016/0003-9969(70)90095-6.
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The Gingival Index, the Plaque Index and the Retention Index Systems.牙龈指数、菌斑指数和附着丧失指数系统。
J Periodontol. 1967 Nov-Dec;38(6):Suppl:610-6. doi: 10.1902/jop.1967.38.6.610.
6
A practical scheme for identification of the most numerous oral gram negative anaerobic rods.一种用于鉴定数量最多的口腔革兰氏阴性厌氧杆菌的实用方案。
Arch Oral Biol. 1965 Jul-Aug;10(4):723-5. doi: 10.1016/0003-9969(65)90017-8.
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Survival of human dental plaque flora in various transport media.人类牙菌斑菌群在各种运输培养基中的存活情况。
Appl Microbiol. 1972 Oct;24(4):638-44. doi: 10.1128/am.24.4.638-644.1972.
8
Efficiency of various growth media in recovering oral bacterial flora from human dental plaque.各种生长培养基从人类牙菌斑中恢复口腔细菌菌群的效率。
Appl Microbiol. 1973 Oct;26(4):459-65. doi: 10.1128/am.26.4.459-465.1973.
9
Numerical taxonomy and laboratory identification of Bacterionema matruchotii, Rothia dentocariosa, Actinomyces naeslundii, Actinomyces viscosus, and some related bacteria.变形放线杆菌、龋齿罗氏菌、内氏放线菌、粘性放线菌及一些相关细菌的数值分类和实验室鉴定
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10
Fluorometric determination of deoxyribonucleic acid in bacteria with ethidium bromide.用溴化乙锭荧光法测定细菌中的脱氧核糖核酸
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人类实验性牙龈炎的细菌学:菌斑龄的影响

Bacteriology of human experimental gingivitis: effect of plaque age.

作者信息

Syed S A, Loesche W J

出版信息

Infect Immun. 1978 Sep;21(3):821-9. doi: 10.1128/iai.21.3.821-829.1978.

DOI:10.1128/iai.21.3.821-829.1978
PMID:711336
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC422071/
Abstract

Twenty-five subjects with previously excellent hygiene and healthy gingiva developed heavy plaque accumulations and bleeding or nonbleeding gingivitis about certain papilla after 21 days of no oral hygiene. Gingival marginal plaque about a single papilla was collected at 0, 1, 2, and 3 weeks of no oral hygiene in each subject. The plaque was dispersed, serially diluted, and plated on MM10 sucrose agar in an oxygen-free atmosphere. From 50 to 100 colonies from a single high-dilution plate were characterized for each sample. Over 8,500 isolates were partially characterized and placed into one of 29 taxonomic species or groups. The flora was predominantly gram-positive at all time periods. Streptococcal species dominated in the 0- and 1-week-old plaques, i.e. 62 and 43% of the colonyforming units (CFU), but dropped to 26 to 32% of the CFU in the 2- and 3-week-old plaques. Actinomyces species dominated in the older plaques, i.e., 40 to 50% of the CFU. Actinomyces israelii was the most prominent species in the older plaques. Veillonella accounted for 15 to 20% of the CFU at all time periods. Although the other gram-negative species increased with time, collectively they averaged less than 5% of the CFU at week 3. The shift from a Streptococcus-dominated plaque to an Actinomyces-dominated plaque was the most striking microbial change observed as the plaque aged.

摘要

25名之前口腔卫生良好且牙龈健康的受试者,在停止口腔卫生护理21天后,特定牙乳头处出现了大量牙菌斑堆积以及出血性或非出血性牙龈炎。在每位受试者停止口腔卫生护理的第0、1、2和3周,收集单个牙乳头处的龈缘牙菌斑。将牙菌斑分散、连续稀释,并在无氧环境下接种于MM10蔗糖琼脂平板上。对每个样品单个高稀释度平板上的50至100个菌落进行特征鉴定。超过8500株分离菌被部分鉴定,并归入29个分类物种或类群中的一种。在所有时间段,菌群主要为革兰氏阳性菌。链球菌属在0周和1周龄的牙菌斑中占主导,即占菌落形成单位(CFU)的62%和43%,但在2周和3周龄的牙菌斑中降至CFU的26%至32%。放线菌属在较老的牙菌斑中占主导,即占CFU的40%至50%。以色列放线菌是较老牙菌斑中最主要的物种。韦荣球菌在所有时间段均占CFU的15%至20%。尽管其他革兰氏阴性菌随时间增加,但在第3周时它们合计平均占CFU的比例不到5%。随着牙菌斑老化,观察到的最显著的微生物变化是从以链球菌为主的牙菌斑转变为以放线菌为主的牙菌斑。