Do Thuydung, Church Brent, Veríssimo Crisnicaw, Hackmyer Steven P, Tantbirojn Daranee, Simon James F, Versluis Antheunis
Department of Pediatric Dentistry, College of Dentistry, University of Tennessee Health Science Center, Memphis, Tenn., USA.
Department of Restorative Dentistry and Dental Materials, Universidade Federal de Uberlândia, Uberlândia, Minas Gerais, Brazil.
Pediatr Dent. 2014 Nov-Dec;36(7):468-73.
Evaluate cuspal flexure caused by polymerization shrinkage stress, bond integrity, and depth-of-cure of bulk-fill composites.
Twenty-eight extracted permanent molars were mounted in stainless steel rings. Slot-shaped Class II mesio-occlusal-distal preparations (four mm deep) were restored with Filtek Supreme Ultra (control; two two-mm increments) and bulk-fill composites (Tetric EvoCeram, Venus, Filtek Bulk Fill). The teeth were digitized using a 3D scanner before and after restoration. Before- and after-restoration scans were aligned, and cuspal flexure was calculated. Bond integrity along occlusal interfaces was assessed by dye penetration and measured after overnight immersion in basic fuchsin dye and cross-sectioning. Depth-of-cure was determined on the cross-sections using Vickers hardness. Statistical analysis was performed with one-way analysis of variance.
All composites caused inward cuspal flexure (10.4 to 13.6 μm). No statistical difference in flexure was found among the composites (P=.07). No significant difference in microhardness at any restoration depths was found for any composite (.35<P<.99). Dye penetration showed comparable bonding along occlusal interfaces for the tested composites.
Bulk-fill composites cured all the way through four-mm restoration depths. Cuspal flexure, caused by polymerization shrinkage, and bond integrity were not different between teeth restored with the bulk-fill and conventional incrementally placed restorative composites.
评估聚合收缩应力引起的牙尖弯曲、粘结完整性以及大块充填复合树脂的固化深度。
将28颗拔除的恒牙固定于不锈钢环中。用Filtek Supreme Ultra(对照;分两次每次2mm增量充填)和大块充填复合树脂(Tetric EvoCeram、Venus、Filtek Bulk Fill)修复近中-咬合-远中Ⅱ类洞形(深4mm)的槽形预备体。修复前后用三维扫描仪对牙齿进行数字化处理。将修复前后的扫描图像进行配准,并计算牙尖弯曲度。通过染料渗透评估沿咬合面的粘结完整性,在碱性品红染料中过夜浸泡并切片后进行测量。使用维氏硬度在切片上测定固化深度。采用单因素方差分析进行统计学分析。
所有复合树脂均引起牙尖向内弯曲(10.4至13.6μm)。各复合树脂之间弯曲度无统计学差异(P = 0.07)。任何复合树脂在任何修复深度的显微硬度均无显著差异(0.35 < P < 0.99)。染料渗透显示,受试复合树脂沿咬合面的粘结情况相当。
大块充填复合树脂可完全固化至4mm的修复深度。大块充填复合树脂修复的牙齿与传统分次放置修复性复合树脂修复的牙齿相比,由聚合收缩引起的牙尖弯曲和粘结完整性并无差异。