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Updated: Jun 11, 2025

A Coupled Experiment-finite Element Modeling Methodology for Assessing High Strain Rate Mechanical Response of Soft Biomaterials
Published on: May 18, 2015
Comparative Study of the Influence of Dental Implant Design on the Stress and Strain Distribution using the Finite
Neha Srivastava Sahai1, Divya Yadav1, Srishti Madhav2
1Department of Prosthodontics, Rama Dental College Mandhana, Kanpur, Uttar Pradesh, India.
Background:
One emerging and important research method for biomechanical assessments in biological investigations is the finite element analysis (FEA). It is the best technique for simulating intricate structures and examining their mechanical characteristics.
Aim:
This study was conducted to compare the V-shaped design and square thread design regarding their influence on the stress and strain distribution using the finite element method.
Methods And Materials:
Forty dental implants with two different designs were used. These designs were V-shaped design and square design. Utilizing Creo 2.0, cortical bone, cancellous bone, and implants were modeled. FEM analysis was performed on forty model assemblies.
Results:
It was observed that mean load 1 values for squared thread design were lesser as compared to V-shaped thread design at coronal one-third middle one-third and apical one-third in the cancellous bone as well as implant surface.
Conclusion:
The design of implant is an important factor influencing the stress and strain distribution using the finite element method with a square design showing reduced concentration.
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