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比较两种研究人工龋再矿化的定量方法。

Comparing two quantitative methods for studying remineralization of artificial caries.

机构信息

Faculty of Dentistry, University of Hong Kong, Hong Kong, China.

出版信息

J Dent. 2010 Apr;38(4):352-9. doi: 10.1016/j.jdent.2010.01.001. Epub 2010 Jan 14.

DOI:10.1016/j.jdent.2010.01.001
PMID:20079396
Abstract

OBJECTIVES

To compare the detection of changes before and after remineralization of artificial enamel and dentin caries by microCT scanning, polarized light microscopy (PLM) and transverse microradiography (TMR).

METHODS

Fourteen extracted premolars were cut into tooth blocks and painted with an acid-resistant varnish leaving one enamel and one dentin surface exposed. The tooth blocks were immersed into demineralizing solution for 4 days to produce artificial caries-like lesions and scanned by microCT. Then the 14 tooth blocks were randomly allocated into two groups. Seven tooth blocks in Group I were cut longitudinally through the exposed surface into 100-150 microm thick sections and microradiographs were taken. The other seven tooth blocks in Group II were left intact. All the tooth blocks and sections were then immersed into remineralizing solution for 5 days. PLM and TMR of the tooth sections in Group I were taken again. Depth of the lesion on the TMR was measured. Tooth blocks in Group II were scanned by microCT.

RESULTS

Mean lesion depth in Group I reduced by 13.0% and 8.2% after remineralization for enamel and dentin, respectively (paired t-test, P<0.001). In Group II, linear attenuation coefficient (LAC) of the region of interest (ROI) increased by 11.1% and 23.8% after remineralization for enamel and dentin lesions, respectively (paired t-test, P<0.001).

CONCLUSION

Both microCT and microradiography are able to detect a change of similar magnitude in the artificial caries lesions after remineralization. MicroCT may be used to substitute TMR and PLM in in vitro studies about caries.

摘要

目的

通过 microCT 扫描、偏光显微镜(PLM)和横向显微放射摄影术(TMR)比较人工釉质和牙本质龋再矿化前后的变化检测。

方法

将 14 颗离体前磨牙切成牙块,并用耐酸漆涂覆,仅露出一个釉质和一个牙本质表面。将牙块浸入脱矿溶液中 4 天,以产生类似人工龋的病变,并通过 microCT 扫描。然后将 14 个牙块随机分为两组。第 I 组的 7 个牙块沿暴露表面纵向切割成 100-150μm 厚的切片,并拍摄显微放射照片。第 II 组的另外 7 个牙块保持完整。所有牙块和切片随后浸入再矿化溶液中 5 天。再次对第 I 组牙切片进行 PLM 和 TMR 检查。测量 TMR 上病变的深度。第 II 组的牙块通过 microCT 扫描。

结果

第 I 组釉质和牙本质的病变深度分别减少了 13.0%和 8.2%(配对 t 检验,P<0.001)。在第 II 组中,感兴趣区域(ROI)的线性衰减系数(LAC)在釉质和牙本质病变再矿化后分别增加了 11.1%和 23.8%(配对 t 检验,P<0.001)。

结论

microCT 和显微放射摄影术都能够检测到再矿化后人工龋病变的相似程度的变化。microCT 可用于替代 TMR 和 PLM 进行体外龋病研究。

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