Cervino Gabriele, Fiorillo Luca, Spagnuolo Gianrico, Bramanti Ennio, Laino Luigi, Lauritano Floriana, Cicciù Marco
Department of Medical Sciences and Odontostomatology, University of Messina, Messina, Italy.
Department of Neurosciences, Reproductive and Odontostomatological Sciences, University of Naples "Federico II", Napoli, Italy.
J Int Soc Prev Community Dent. 2017 Jan-Feb;7(1):64-68. doi: 10.4103/jispcd.JISPCD_521_16. Epub 2017 Feb 21.
Nowadays, the material that offers the best sealing characteristic in the field of endodontic treatment is the mineral trioxide aggregate (MTA), nevertheless, this material necessities an adhesive bonding agent to perfectly join to the dental surface. The aim of this study was to analyze using a scanning electron microscope (SEM) the possible microgap between the adhesive, MTA, and the dental surface.
Fourteen extracted molars were divided into two groups - group A was prepared with MTA-component adhesive and group B was prepared with MTA and composite dual etching. The observations were carried out with a SEM Phenom G2 Pro mode S.E.I. JMP® software was used for statistical analysis, and a -test was used for evaluating the difference between the two groups.
The gap of the areas at higher magnification (1000×) with a size greater than 5 microns in width and 20 microns in length were considered significant, and only group A recorded significant data.
The SEM analysis performed in the group A with interposition of adhesive and flow between the dental pulp chamber and MTA demonstrates the presence of a marginal gap of considerable amplitude in the all of the samples investigated.
如今,在牙髓病治疗领域具有最佳封闭特性的材料是三氧化矿物凝聚体(MTA),然而,这种材料需要一种粘合剂才能完美地与牙面结合。本研究的目的是使用扫描电子显微镜(SEM)分析粘合剂、MTA与牙面之间可能存在的微间隙。
14颗拔除的磨牙被分为两组——A组用MTA成分粘合剂制备,B组用MTA和复合双重蚀刻制备。使用SEM Phenom G2 Pro模式S.E.I.进行观察。使用JMP®软件进行统计分析,并用t检验评估两组之间的差异。
在放大倍数较高(1000×)时,宽度大于5微米且长度大于20微米的区域的间隙被认为是显著的,只有A组记录到了显著数据。
在A组中进行的SEM分析显示,在牙髓腔与MTA之间有粘合剂插入且有流动,在所研究的所有样本中均存在幅度相当大的边缘间隙。