Suppr超能文献

[乳牙深龋时冠髓组织的组织病理学与细菌学研究]

[The study of histopathology and bacteriology of coronal pulp tissue in deciduous teeth with deep dentin caries].

作者信息

Wang X, Yang P, Yu Y

机构信息

Department of Pedodontics, Stomatology Hospital of Shandong Medical University, Jinan 250012, China.

出版信息

Zhonghua Kou Qiang Yi Xue Za Zhi. 2000 Sep;35(5):365-7.

Abstract

OBJECTIVE

To study the status of coronal pulp of deciduous teeth with deep caries and causes of pulpal histopathological changes.

METHODS

45 deciduous molars with occlusal deep caries were selected at random. The patients did not receive any antibiotic for one month. The coronal pulpal histopathology was observed with optical microscopic technique. The bacteria in pulp chamber were cultured by the ways of aerobic and anaerobic culture technique. The dentinal tubular structures and bacteria within the tubules of cavity basal part dentin were studied with scanning electron microscopic technique.

RESULTS

Coronal pulp tissue of 77.8% of deciduous teeth with deep caries showed chronic inflammation to various degrees or chronic pulpitis with acute attack. There were aerobic and anaerobic mixed infection in pulp chambers of 94.9% deciduous teeth with deep caries. It was found that coccus and bacillus invaded into dentinal tubules of cavity basal part. Coccus located inside tubules with intact tubular walls, while tubular walls were destroyed the bacillus was present.

CONCLUSION

There are aerobic and anaerobic mixed infection in pulp chamber of deciduous teeth with deep caries. The coronal pulp tissue shows chronic inflammation to various extent in over 2/3 deciduous teeth with deep caries. Bacillus has stronger destructive power to dental tubules.

摘要

目的

研究乳牙深龋患牙的冠髓状况及牙髓组织病理学变化的原因。

方法

随机选取45颗咬合面深龋的乳牙。患者1个月内未使用任何抗生素。采用光学显微镜技术观察冠髓组织病理学变化。采用需氧和厌氧培养技术培养髓室内细菌。采用扫描电子显微镜技术观察洞底牙本质小管结构及管内细菌。

结果

77.8%的乳牙深龋患牙冠髓组织呈现不同程度的慢性炎症或慢性牙髓炎急性发作。94.9%的乳牙深龋患牙髓室内存在需氧菌和厌氧菌混合感染。发现球菌和杆菌侵入洞底牙本质小管。球菌位于管壁完整的小管内,而杆菌所在处管壁被破坏。

结论

乳牙深龋患牙髓室内存在需氧菌和厌氧菌混合感染。超过2/3的乳牙深龋患牙冠髓组织呈现不同程度的慢性炎症。杆菌对牙本质小管的破坏作用更强。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验