Thermal Sensing of Photo-Activated Dental Resin Composites Using Infrared Thermography

热电偶 复合数 热成像 材料科学 复合材料 臼齿 牙本质 固化(化学) 红外线的 牙科 光学 医学 物理
作者
Turki A. Bakhsh,Abdulaziz Alfaifi,Yousef G. Alghamdi,Mohannad Nassar,Roaa A. Abuljadyel
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:15 (20): 4117-4117 被引量:5
标识
DOI:10.3390/polym15204117
摘要

Objective: The goal of this study was to compare the pulp temperature increase during light curing of different composite thicknesses in deep class I cavities using two thermal sensing tools. Methodology: Round occlusal class I cavities with a remaining dentin thickness (RDT) of 1 mm from the cavity floor were performed on 15 extracted sound molars. Samples were divided into three groups (n = 5). In group A, cavities were restored using the Filtek Z350 XT conventional composite through the incremental filling technique, whereas group B cavities were restored using the Filtek Bulk-Fill flowable composite through the bulk-fill technique. Specimens of the Filtek Bulk-Fill flowable composite using the incremental filling technique were used to restore cavities in group C. An infrared thermal camera (IRT; Flir, Wilsonville, OR, USA) and K-type thermocouple (Perfect Prime TC0520, New York, NY, USA) were used to measure the heat generated during composite photo-polymerization. Results: There were no significant differences within the same group using either the thermocouple or IRT (p > 0.05). One-way ANOVA showed no significant differences between groups A and C (p > 0.05), whereas group B was significantly different from groups A and C with each sensing tool (p < 0.05). Conclusion: IRT and thermocouple heat readings were comparable. Based on the current findings, the bulk-fill technique resulted in the lowest heat generation among the groups. Therefore, increasing the light-curing time and the number of composite increments was directly correlated with increases in intra-pulpal temperature.
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