An in vitro evaluation on polyurethane foam sheets of the insertion torque, removal torque values, and resonance frequency analysis (RFA) of a self-tapping threads and round apex implant

Author:

Tumedei Margherita1ORCID,Piattelli Adriano123,Falco Antonello4,De Angelis Francesco1,Lorusso Felice1,Di Carmine Maristella5,Iezzi Giovanna1

Affiliation:

1. Department of Medical, Oral and Biotechnological Sciences, University of Chieti-Pescara, Via dei Vestini, Chieti, Italy

2. Chair of Biomaterials Engineering, Catholic University of San Antonio de Murcia (UCAM), Av. de los Jerónimos, Guadalupe, Murcia, Spain

3. Fondazione Villa Serena per la Ricerca, Città Sant’Angelo (PE), Italy

4. Private Practice, Pescara (PE), Italy

5. Private Practice, Loreto Aprutino (PE), Italy

Abstract

The dental implant primary stability and micromovement absence represent critical factor for dental implant osseointegration. The aim of the present in vitro investigation was to simulate the bone response on different polyurethane densities the effect of self-tapping threads and round apex implant geometry. A total of 40 implants were positioned in D1, D2, D3 and D4 polyurethane block densities following a calibrated drilling protocol. The Insertion, removal Torque and resonance frequency analysis (RFA) means were calculated. All experimental conditions showed insertion torque values >30 Ncm. A significant higher insertion torque, removal and RFA was present in D1 polyurethane. Similar evidences were evidenced for D3 and D4. The effectiveness of the present study suggested a valuable clinical advantage for self-tapping threads and round apex implant using, such as in case of reduced bone density in the posterior maxilla

Publisher

SAGE Publications

Subject

Organic Chemistry,Polymers and Plastics

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