Evaluation of Efficacy of MV Loop for En masse Anterior Retraction as Compared to Opus and Snail Loop Using Finite Element Method and Clinical Intervention: A Research Protocol

Author:

Jadhav Vikrant V.1,Kamble Ranjit1,Shrivastav Sunita1,Thote Abhishek2,Tiwari Meenakshi3

Affiliation:

1. Department of Orthodontics and Dentofacial Orthopaedics, Sharad Pawar Dental College, Datta Meghe University of Medical Sciences, Wardha, India

2. Department of Mechanical Engineering, Dr. Vishwanath Karad MIT World Peace University, Pune, India

3. Department of Orthodontics and Dentofacial Orthopaedics R.R. Kambe Dental College, Akola, Maharashtra, India

Abstract

Abstract Background: In orthodontics, space closure after extraction is crucial. Frictionless mechanics in preadjusted “edgewise appliance” treatment in orthodontics are better alternatives to friction mechanics. The major benefit is dissipation of force, a high M: F ratio and a low load-deflection rate which is not there in friction mechanics. The retraction loops are Snail loop, Opus loop, K Sir loop, L loop etc. which are used as force system in frictionless mechanics. Objectives: To evaluate and compare the efficacy of Multiple Variability (MV) loop for qualitative and quantitative en masse anterior retraction as compared to Opus and Snail loop. Materials and Methods: The study will be carried out in the Department of Orthodontics and Dentofacial Orthopaedics, Sharad Pawar Dental College, Sawangi (M), Wardha with the technical assistance from NIT Engineering College, Pune. MV loop, Opus loop and Snail loop will be fabricated in “0.019 × 0.025, 0.017 × 0.025 inch Titanium Molybdenum alloy (TMA) and 0.017 × 0.025 inch Stainless Steel (SS) wire” with 1 and 2 mm preactivation bends will be analysed on Finite element method (FEM) Software. Then clinical trials will be carried out based on qualitative and quantitative assessment of records for evaluation of MV loop, opus loop and Snail loop. Expected Results: The FEM analysis and clinical trials will predict the perfect design of loop with adequate preactivation bends. Mainly on data access layer (DHAL) analysis MV loop showed 10:1 Moment to Force (M:F). Similar results are expected on FEM analysis and clinical trials. MV loop will show superior results as compared to Opus and Snail loop. Conclusion: Loop mechanics provide efficient intrusion and retraction in extraction cases. A loop to be effective and efficient needs to clinically as well as mechanically evaluated. MV loop was fabricated to fulfill all the requirements of loop. Clinical evaluation of loop will provide complete effectiveness of loop.

Publisher

Medknow

Reference12 articles.

1. On the management of extraction sites;Braun;Am J Orthod Dentofacial Orthop,1997

2. Clinical considerations in the use of retraction mechanics;Staggers;J Clin Orthod,1991

3. Optimizing anterior and canine retraction;Burstone;Am J Orthod,1976

4. The snail loop for low-friction space closure;Vibhute;J Clin Orthod,2008

5. Continuous arch wire closing loop design, optimization, and verification. Part I;Siatkowski;Am J Orthod Dentofacial Orthop,1997

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