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量化不同牙髓切断术材料导致的乳牙冠部变色

Quantifying Coronal Primary Tooth Discoloration Caused by Different Pulpotomy Materials.

作者信息

Elbahary S, Bercovich R, Flaisher-Salem N, Azem H

出版信息

J Clin Pediatr Dent. 2020;44(3):142-147. doi: 10.17796/1053-4625-44.3.2.

DOI:10.17796/1053-4625-44.3.2
PMID:32644897
Abstract

: Bioceramic materials, gray and white mineral trioxide aggregate (GMTA, WMTA), have been shown to have high rates of success in various endodontic applications. A major drawback is their tendency to discolor teeth. Biodentine (BD), a recenlty developed bioceramic material, has been claimed not to discolor teeth. The aim of this study was to compare tooth discoloration after applying different pulpotomy base materials (BD, GMTA and WMTA). : Forty human fully developed primary incisors teeth were used in this study. Coronal access was achieved by a Tungsten Carbide drill, and the pulp chambers were accessed and chemo-mechanically debrided. Each material was placed in the pulp chamber, up to the cervical sectioning level. All specimens were incubated at 37°C and 100% humidity for 14 weeks and have been evaluated before the study and weekly. Color was assessed according to the CIE Lab* color space system. : The ΔE (delta E) of all experimental groups (GMTA, WMTA and BD) were significantly different from the control group at all time points. Color changes in the GMTA and WMTA groups showed significantly higher discoloration compared to BD group in the cervical part of the crown, since week 1. WMTA group showed significant discoloration in the cervical part as of week 1, and gradually increased over time. BD group showed no significant discoloration over time. GMTA group showed the most significant discoloration at week 1 and week 14 (P<0.05). : both GMTA and WMTA pulpotomy materials may discolor tooth structure over time in an extracted primary anterior tooth model. When choosing bioceramic pulpotomy material, BD may be preferable, mainly in esthetic area.

摘要

生物陶瓷材料,即灰色和白色的矿物三氧化物凝聚体(GMTA、WMTA),已被证明在各种牙髓治疗应用中成功率很高。一个主要缺点是它们有使牙齿变色的倾向。生物活性牙本质(BD)是一种最近开发的生物陶瓷材料,据称不会使牙齿变色。本研究的目的是比较应用不同的牙髓切断术基底材料(BD、GMTA和WMTA)后牙齿的变色情况。:本研究使用了40颗人类完全发育的乳切牙。通过碳化钨钻获得冠部通路,打开牙髓腔并进行化学机械清创。将每种材料放置在牙髓腔中,直至颈部剖切水平。所有标本在37°C和100%湿度下孵育14周,并在研究前和每周进行评估。根据CIE Lab*颜色空间系统评估颜色。:所有实验组(GMTA、WMTA和BD)的ΔE(色差)在所有时间点与对照组均有显著差异。自第1周起,GMTA组和WMTA组在牙冠颈部的变色明显高于BD组。WMTA组自第1周起在颈部出现明显变色,并随时间逐渐增加。BD组随时间未出现明显变色。GMTA组在第1周和第14周变色最明显(P<0.05)。:在拔除的乳前牙模型中,GMTA和WMTA牙髓切断术材料可能会随着时间的推移使牙齿结构变色。在选择生物陶瓷牙髓切断术材料时,BD可能更可取,主要是在美学区域。

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