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Application of monolithic zirconia crowns (MZCs) with reduced thickness to the molar region has been proposed, but potential complications have yet to be fully evaluated in laboratory tests. The present study aimed to develop a clinically relevant load-to-failure test in combination with fatigue treatments involving thermal and mechanical cycling (TC and MC) to evaluate the fracture resistance of molar MZCs. MZCs with a minimal thickness of 0.5 mm were bonded to dies made of resin-based composite (RBC), epoxy resin (EP), or polyoxymethylene-copolymer (POM-C). The samples were either untreated (UT) or subjected to TC (5-55 °C for 1 × 10 cycles) and MC (300 N for 2.4 × 10 cycles). The stress generated by TC and MC was simulated by finite element modeling. The load-to-failure test was performed using an inverse V-shaped two-plane indenter and was followed by fractographic analysis. The median values of fracture load for MZC/RBC and MZC/EP in the TC group were significantly lower than those in the UT group. MC also decreased the median value of fracture load for MZC/RBC significantly, but not that for MZC/EP and MZC/POM-C. Fractography revealed that the fracture started in the cervical area in all groups, which is similar to clinically failed crowns. The simulation confirmed stress concentration at the cervical area in both TC and MC groups. The present study suggests that the load-to-failure test using a two-plane indenter could induce clinically relevant fracture of MZCs, the vulnerability of the MZCs depends largely on the die material employed, and MZCs are more likely to be damaged by thermal fatigue than mechanical fatigue.
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http://dx.doi.org/10.1016/j.jmbbm.2018.07.034 | DOI Listing |
Arch Orthop Trauma Surg
September 2025
Medical Faculty, University of Zurich (UZH), Zurich, Switzerland.
Background: Distal triceps tendon rupture is related to high complication rates with up to 25% failures. Elbow stiffness is another severe complication, as the traditional approach considers prolonged immobilization to ensure tendon healing. Recently, a dynamic tape was designed, implementing a silicone-infused core for braid shortening and preventing repair elongation during mobilization, thus maintaining constant tissue approximation.
View Article and Find Full Text PDFJ Am Acad Orthop Surg
August 2025
From the Department of Orthopedic Surgery (Kuttner), Ohio State University, Columbus, OH, the Department of Orthopedic Surgery (Cancio-Bello, Thompson, Sems, Cross, Hidden, Yuan), Mayo Clinic, Rochester, MN, and the Biomechanics Laboratory (Fitzsimmons, Berglund), Department of Orthopedic Surgery, M
Objectives: The Femoral Neck System (FNS) is a fixed-angle side plate device approved for use in fixation of femoral neck fractures. The FNS perforates the lateral cortex of the subtrochanteric femur, which may increase the risk of postoperative subtrochanteric fractures compared with the inverted triangle cannulated screw (CS) construct. The purpose of this biomechanical study was to compare forces required to create subtrochanteric fractures in FNS and CS constructs in a synthetic bone biomechanical model.
View Article and Find Full Text PDFJ Prosthodont Res
September 2025
Department of Prosthodontics, Medical Faculty and University Hospital Düsseldorf, Heinrich-Heine-University, Düsseldorf, Germany.
Purpose: To investigate the effect of ceramic material (lithium disilicate, LDS vs. composition-gradient multilayered zirconia [4Y-PSZ and 5-PSZ], Z) and ceramic layer thickness (0.5 mm, 1.
View Article and Find Full Text PDFDent Mater
August 2025
Department of Stomatology, Nanfang Hospital, Southern Medical University, Guangzhou, Guangdong, China. Electronic address:
Background: Restoring endodontically treated premolars (ETPMs) with mesio-occluso-distal (MOD) cavities poses clinical challenges due to reduced coronal thickness and heightened fracture risk. Despite advances in adhesive dentistry, the biomechanical effects of residual lateral wall (RLW) thickness and composite resin reinforcement on the performance of ceramic endocrowns in ETPMs remain underdefined. This study aims to evaluate how RLW thickness and resin reinforcement influence fracture resistance, stress distribution, and failure modes in ETPMs restored with ceramic endocrowns.
View Article and Find Full Text PDFOrthop J Sports Med
August 2025
Department of Research, Arthrex, Inc, Naples, Florida, USA.
Background: Reruptures and functional deficits can occur with conventional transosseous quadriceps tendon repair. Previous work has demonstrated the biomechanical superiority of adjustable transosseous metal cortical button fixation over conventional repair. Knotless all-suture anchor (ASA) buttons may provide a similar improvement but have not yet been investigated.
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