Implant, Biomedical engineering, Dentistry, Osseointegration and Composite material are his primary areas of study. His Implant research is multidisciplinary, relying on both Fixation and Bioceramic. His research in Biomedical engineering intersects with topics in Implant surface, Morphology and X-ray photoelectron spectroscopy.
His studies in Dentistry integrate themes in fields like Bone healing, Implant placement, Dog model, Proximal tibia and Dental prosthesis. His Osseointegration research incorporates elements of Titanium, Nanotechnology, Bone area and Beagle. His Dental implant study integrates concerns from other disciplines, such as Implant abutment and Implant design.
Paulo G. Coelho mostly deals with Dentistry, Implant, Biomedical engineering, Osseointegration and Composite material. The concepts of his Dentistry study are interwoven with issues in Fixation, Tibia and Bone remodeling. His research investigates the connection between Implant and topics such as Abutment that intersect with problems in Dental Abutments.
His Biomedical engineering research includes themes of Surgery, Bioceramic and Scanning electron microscope. His study in Osseointegration is interdisciplinary in nature, drawing from both Titanium, Osteotomy, Insertion torque and Bone area. His Composite material study frequently links to adjacent areas such as Molar.
His primary scientific interests are in Biomedical engineering, Implant, Composite material, Osseointegration and Dentistry. Paulo G. Coelho has researched Biomedical engineering in several fields, including Dipyridamole and Regeneration. His Implant research includes elements of Biocompatibility, Osteotomy, Bone remodeling and Abutment.
When carried out as part of a general Osseointegration research project, his work on Implant surface is frequently linked to work in Surgical instrumentation, therefore connecting diverse disciplines of study. His biological study spans a wide range of topics, including Medullary cavity and Significant difference. His Scanning electron microscope study incorporates themes from Composite number and Epoxy.
Paulo G. Coelho mainly focuses on Biomedical engineering, Implant, Scaffold, Regeneration and Bone regeneration. Paulo G. Coelho works on Implant which deals in particular with Osseointegration. The Implant surface research he does as part of his general Osseointegration study is frequently linked to other disciplines of science, such as Standard error, therefore creating a link between diverse domains of science.
Paulo G. Coelho interconnects Bone forming, Statistical difference and Dentistry in the investigation of issues within Implant surface. Paulo G. Coelho combines subjects such as Tissue engineering, Dipyridamole, Ceramic, Soft tissue and Bone growth with his study of Scaffold. In his study, Adenosine, Osteoclast, Osteoblast, Bone marrow and Mesenchymal stem cell is inextricably linked to Bone healing, which falls within the broad field of Bone regeneration.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
Classification of osseointegrated implant surfaces: materials, chemistry and topography
David M. Dohan Ehrenfest;Paulo G. Coelho;Byung Soo Kang;Young Taeg Sul.
Trends in Biotechnology (2010)
Basic research methods and current trends of dental implant surfaces
Paulo G. Coelho;José M. Granjeiro;George E. Romanos;Marcelo Suzuki.
Journal of Biomedical Materials Research Part B (2009)
Monolithic CAD/CAM lithium disilicate versus veneered Y-TZP crowns: comparison of failure modes and reliability after fatigue.
Petra C Guess;Ricardo A Zavanelli;Nelson R F A Silva;Estevam A Bonfante.
International Journal of Prosthodontics (2010)
Performance of Dental Ceramics Challenges for Improvements
E.D. Rekow;N.R.F.A. Silva;P.G. Coelho;Y. Zhang.
Journal of Dental Research (2011)
All-ceramic systems: laboratory and clinical performance.
Petra C. Guess;Stefan Schultheis;Estevam A. Bonfante;Paulo G. Coelho.
Dental Clinics of North America (2011)
Fatigue testing of two porcelain-zirconia all-ceramic crown systems.
P.G. Coelho;N.R. Silva;E.A. Bonfante;P.C. Guess.
Dental Materials (2009)
Laboratory Simulation of Y-TZP All-ceramic Crown Clinical Failures
P.G. Coelho;E.A. Bonfante;N.R.F. Silva;E.D. Rekow.
Journal of Dental Research (2009)
Influence of implant shape, surface morphology, surgical technique and bone quality on the primary stability of dental implants
Carlos Nelson Elias;Felipe Assis Rocha;Ana Lucia Nascimento;Paulo Guilherme Coelho.
Journal of The Mechanical Behavior of Biomedical Materials (2012)
Osseointegration: Hierarchical designing encompassing the macrometer, micrometer, and nanometer length scales
Paulo G. Coelho;Paulo G. Coelho;Ryo Jimbo;Nick Tovar;Estevam A. Bonfante.
Dental Materials (2015)
In vitro evaluation of the implant abutment connection sealing capability of different implant systems.
P. G. Coelho;P. Sudack;M. Suzuki;K. S. Kurtz.
Journal of Oral Rehabilitation (2008)
If you think any of the details on this page are incorrect, let us know.
We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:
King's College London
New York University
State University of Campinas
New York University
University of British Columbia
University of Gothenburg
University of Chieti-Pescara
University of Pennsylvania
Osaka University
Columbia University
Halmstad University
Microsoft (United States)
Hasso Plattner Institute
University of Waikato
Koç University
Polytechnique Montréal
University of Alaska Anchorage
AstraZeneca (United Kingdom)
University of Kent
University of Montpellier
University of Edinburgh
Columbia University
Oregon Health & Science University
University of Erlangen-Nuremberg
National Academies of Sciences, Engineering, and Medicine
Fermilab