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Rafael Vidal Peres

Researcher / Dentistry · University Estácio de Sá / IDOMED

https://researchid.co/rafaelvidalperes
@portal.estacio.br
191Google Scholar Citations
4Google Scholar h-index
3Google Scholar i10-index

Research Interests

3d printing, biomaterials, Dentistry, orthodontics

Biography

I dedicated more than 14 years to orofacial rehabilitation and I believe that biomaterials, 3D modeling and 3D printing together will play a big role in the biomedical field. The researching journey to bring innovative solutions to the market has brought me an amazing experience about product creation, selling and customer development. I have been sharing these experiences in my lectures and selling my inventions.

Education

• Ph.D Materials Science - Military Institute of Engineering (2012-2016). Monofilament extrusion, 3D printing and characterization of bioresorbable polymer for tissue engineering (article 1, article 2 ) • M.Sc Materials Science - Military Institute of Engineering (2010-2012). Shape Memory Alloys for orthodontic application (article 1, article 2) • ACADEMIA-INDUSTRY TRAINING PROGRAME – SWISSNEX (Ecole Polytechnique Fédérale de Lausanne, SWITZERLAND) - (1 week course - 2016) • Prointerbio – SEBRAE (2019). Technological development and the internationalization of micro and small ent...

Recent Google Scholar Publications

  1. ACCURACY OF CAD/CAM SURGICAL GUIDES OF TITANIUM AND THERMOPLASTIC TO GENIOPLASTY
    Revista Contemporânea 3 (12), 28991-29013 , 2023, 2023 | Citations: 1.0
  2. Dental implants and bone augmentation in HIV‐infected patients under HAART: Case report and review of the literature
    Special Care in Dentistry 37 (3), 150-155 , 2017, 2017 | Citations: 22.0
  3. Development of 70/30 Poly- l - dl -Lactic Acid Filaments for 3D Printers (Part 1): Filament Manufacturing and Characterization of Printed Samples for Use as …
    JOM 69 (1), 71-77 , 2017, 2017 | Citations: 4.0
  4. Development of 70/30 Poly-L-DL-Lactic Acid Filaments for 3D Printers (Part 2): Mechanical and Surface Properties of Bioabsorbable Printed Plates for Biomedical Applications
    JOM 69 (1), 78-83 , 2017, 2017 | Citations: 2.0
  5. Mechanical Performance of Nickel-titanium Archwires
    Materials Research 18 (6), 1264-1277 , 2015, 2015 | Citations: 15.0

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