Medical Science Monitor Biomechanical Behavior of All-on-4 and M-4 Configurations in an Atrophic Maxilla: A 3D Finite Element Method - Article abstract #929908
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Last updated 13 abril 2025


Medical Science Monitor Biomechanical Behavior of All-on-4 and M-4 Configurations in an Atrophic Maxilla: A 3D Finite Element Method - Article abstract #929908

Biomechanical behavior of atrophic maxillary restorations using the all-on- four concept and long trans-sinus implants: A finite element analysis

PDF) Biomechanical Behavior of All-On-4 Concept and Alternative Designs Under Different Occlusal Load Configurations for Completely Edentulous Mandible: A 3-D Finite Element Analysis

A detailed finite element model of a mid-sized male for the investigation of traffic pedestrian accidents - Daniel Grindle, Wansoo Pak, Berkan Guleyupoglu, Bharath Koya, F Scott Gayzik, Eric Song, Costin Untaroiu

The all‐on‐4 concept in the maxilla–A biomechanical analysis involving high performance polymers - Ahmadi - 2021 - Journal of Biomedical Materials Research Part B: Applied Biomaterials - Wiley Online Library

Medical Science Monitor Biomechanical Behavior of All-on-4 and M-4 Configurations in an Atrophic Maxilla: A 3D Finite Element Method - Article abstract #929908

PDF) Biomechanical Behavior of All-on-4 and M-4 Configurations in an Atrophic Maxilla: A 3D Finite Element Method

Biomechanical behavior of customized scaffolds: A three-dimensional finite element analysis - ScienceDirect

Voxel-based finite element modeling - Support - 3D Slicer Community

Enhancing biomedical data validity with standardized segmentation finite element analysis

Biomechanical behavior of customized scaffolds: A three-dimensional finite element analysis - ScienceDirect

Frontiers Predicting Vertebral Bone Strength Using Finite Element Analysis for Opportunistic Osteoporosis Screening in Routine Multidetector Computed Tomography Scans—A Feasibility Study
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