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Introduction: During curing of composite resins, polymerization shrinkage occurs and generates stress. The configuration factor (C-factors) is an important clinical parameter and is related to polymerization shrinkage, bond strength, and durability. High C-factors indicate situations in which the material polymerizes under greater external constraint.
Aim: To evaluate the effect of C-factor on the bond strength of universal dental adhesives to the dentin of the cavity floor and cavity wall in class-I composite restorations using nanohybrid composites.
Materials And Methods: Sixty noncarious human molars were randomly divided into four groups ( = 15). Then, each group was subdivided into two subgroups according to the type of adhesive used: Prime and Bond Universal (Dentsply) or Adper Single Bond 2 (3M). After the bonding procedure, nanohybrid composite was applied in 2 mm increments to fill the cavities. The teeth were sectioned into 2 mm sticks and micro-tensile bond strength (μTBS) was measured at two areas: cavity wall and cavity floor using a universal testing machine. Fracture pattern was analyzed using the stereomicroscope. Results were tabulated and statistical analysis was done using the Analysis of Variance with Tukey's test.
Results: Prime and Bond Universal had significantly better μTBS (mean = 8.53) as compared to Adper Single Bond 2 at the floor (mean = 6.64) of the cavity. At the wall of the cavity, Prime and Bond Universal was better, but the difference was not statistically significant ( < 0.05). The cohesive mode of fracture was common in all the groups.
Conclusion: To overcome high C-factor in Class I cavities, Prime and Bond universal had better bond strength when measured at the floor and wall of the cavity.
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http://dx.doi.org/10.4103/JCDE.JCDE_247_25 | DOI Listing |
Food Res Int
November 2025
Key Laboratory of Jianghuai Agricultural Product Fine Processing and Resource Utilization of Ministry of Agriculture and Rural Affairs, Anhui Engineering Research Center for High Value Utilization of Characteristic Agricultural Products, College of Food and Nutrition, Anhui Agricultural University,
Recently, the regulatory effect of natural antioxidants on oleogels has attracted the attention of scholars. Whether natural antioxidants with different structures can co-gel with gelators remains unclear. In this study, the impact of water-soluble (dihydroquercetin and epicatechin) and fat-soluble (lycopene and L-ascorbate palmitate) antioxidants on the physicochemical properties of diacylglycerol oleogels was investigated.
View Article and Find Full Text PDFACS Appl Mater Interfaces
September 2025
School of Materials Science and Engineering, Beihang University, Beijing 100191, P. R. China.
Nanostructured cubic boron nitride (NS-cBN) has attracted significant attention due to its high hardness and excellent thermal stability, yet a systematic strategy to balance strength and toughness through atomically structural design remains elusive. Here, we integrate plasticity theory with large-scale atomistic simulations to elucidate the size-dependent roles of internal defects, i.e.
View Article and Find Full Text PDFFood Chem
September 2025
Nantong Food and Drug Supervision and Inspection Center, Nantong 226001, PR China.
Different starch crystal structures significantly influence meat product quality, though their specific impacts on myofibrillar protein (MP) functionality remain unclear despite industry demand for optimized ingredients. This study compared how potato, corn, mung bean, and pea starches affect MP properties in minced pork. Our findings reveal that starch-protein interactions fundamentally regulate MP gel and emulsion properties through the following mechanisms: First, starch promotes protein aggregation by enhancing hydrophobic interactions and disulfide bond formation, affecting gel network crosslinking.
View Article and Find Full Text PDFPLoS One
September 2025
School of Health & Society, University of Salford, Salford, Greater Manchester, United Kingdom.
Background: Velocity-Based Training (VBT) is an emerging method in resistance training for objectively prescribing and monitoring training intensity and neuromuscular function. Given its growing popularity, assessing the validity and reliability of VBT devices is critical for strength and conditioning coaches.
Objective: The primary purpose of this review was twofold: (1) to identify and address methodological gaps in current assessments of VBT device validity and reliability, and (2) to propose and apply a novel, multi-layered, criterion-based framework-developed in collaboration with statisticians and domain experts-for evaluating these devices.
Phys Chem Chem Phys
September 2025
School of Physics, Changchun University of Science and Technology, Changchun 130022, China.
The design of carbon allotropes that simultaneously exhibit mechanical robustness and quantum functionalities remains a longstanding challenge. Here, we report a comprehensive first-principles study of cT16, a three-dimensional sp-hybridized carbon network with topologically interlinked graphene-like sheets. The structure features high ideal tensile and shear strengths, with pronounced anisotropy arising from strain-induced bond rehybridization and interlayer slipping mechanisms.
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