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Although miniscrews have been used as absolute anchorage for a long time, their behavior under orthodontic loading is still unclear clinically.
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Systematic review of mini-implant displacement under orthodontic loading.
The present study then offers to propose a model development that allows for a better phenomenological description of PDL behaviour under static, near clinical, orthodontic loading conditions.
The aim of this research was to investigate the initial mechanical responses in periodontal ligament (PDL) under a realistic orthodontic loading for two parallel forces.
The anchor behavior under unidirectional loading and combined loading is important for anchor selection.
Finite element analysis has been used to predict knee implant biomechanical behavior under various loading conditions.
The study and design of structures under dynamic loads require a knowledge of the plastic response and deformation behavior under impact loading.
The design examples also exhibited ductile behavior under cyclic loading.
The segmental hollow column specimen also exhibited ductile behavior under cyclic loading.
Gardener et al. [18] compared the mechanical behavior under cyclic loading of LCP constructs and LCDCP constructs.
Open image in new window Fig. 3 Comparison of experimental and analytical brace behavior under cyclic loading.
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