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Comparative Study of Stress Distribution in Tissue Surrounding Dental Implant Flexure: Continuum vs Full Body Analysis

Article scientifique 2024 Anglais

Résumé

Abstract The use of dental implants has surged in popularity as an effective solution for individuals dealing with tooth loss. A successful dental implant must possess several essential qualities. It must be biocompatible to prevent any adverse reactions or rejection by the body. Furthermore, osseointegration, the fusion of the implant with the surrounding bone tissue, is crucial for stability and support. The implant should also demonstrate strength and durability to withstand biting and chewing forces without fracturing. Its long-lasting design is pivotal for ensuring durability over time. Additionally, the size and shape of the implant should be carefully selected to suit the patient's unique jawbone and surrounding tissues. To deepen our comprehension of dental implant behavior, we conducted a comparative study between a full-body diagram and the traditional continuum model for implant modeling. Our investigation revealed that incorporating a full-body diagram provides a more reliable and accurate simulation of the implant's response under various loading conditions. Moreover, the adaptability in size and shape of dental implants allows for the placement of different crown shapes and sizes, preserving the aesthetic appeal of the patient's teeth. By grasping the essential characteristics of successful dental implants and utilizing advanced modeling techniques, we can improve the outcomes of dental implant procedures.

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Elshourbagy, S. (2024). Comparative Study of Stress Distribution in Tissue Surrounding Dental Implant Flexure: Continuum vs Full Body Analysis. https://doi.org/10.21203/rs.3.rs-3948654/v1

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