Jadhav Sameer, Hegde Vivek, Aher Gayatri, Fajandar Naylah
Department of Conservative Dentistry and Endodontics, M. A. Rangoonwala College of Dental Sciences and Research Centre, Pune, India.
J Conserv Dent. 2011 Jul;14(3):225-7. doi: 10.4103/0972-0707.85793.
Light polymerizable tooth colored restorative materials are most widely preferred for advantages such as esthetics, improved physical properties and operator's control over the working time. Since the introduction of these light polymerizable restorative materials, there has been a concern about the depth of appropriate cure throughout the restoration. Photopolymerization of the composite is of fundamental importance because adequate polymerization is a crucial factor for optimization of the physical and mechanical properties and clinical results of the composite material. Inadequate polymerization results in greater deterioration at the margins of the restoration, decreased bond strength between the tooth and the restoration, greater cytotoxicity, and reduced hardness. Therefore, the dentist must use a light curing unit that delivers adequate and sufficient energy to optimize composite polymerization. Varying light intensity affects the degree of conversion of monomer to polymer and depth of cure.
光固化牙齿颜色修复材料因其美观、物理性能改善以及操作者对工作时间的控制等优点而成为最广泛使用的材料。自从这些光固化修复材料问世以来,人们一直关注整个修复体中适当固化的深度。复合材料的光聚合至关重要,因为充分聚合是优化复合材料物理和机械性能以及临床效果的关键因素。聚合不足会导致修复体边缘的更大劣化、牙齿与修复体之间的粘结强度降低、更大的细胞毒性以及硬度降低。因此,牙医必须使用能提供足够能量以优化复合材料聚合的光固化装置。不同的光强度会影响单体向聚合物的转化程度和固化深度。