Evaluation of Chemical Mechanical Polishing-Based Surface Modification on 3D Dental Implants Compared to Alternative Methods
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Title
Evaluation of Chemical Mechanical Polishing-Based Surface Modification on 3D Dental Implants Compared to Alternative Methods
Authors
Keywords
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Journal
Materials
Volume 11, Issue 11, Pages 2286
Publisher
MDPI AG
Online
2018-11-16
DOI
10.3390/ma11112286
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Related references
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- (2016) Pietro Mandracci et al. Coatings
- Implant surface characteristics and their effect on osseointegration
- (2015) A. Barfeie et al. BRITISH DENTAL JOURNAL
- Effect of interface shape on advancing and receding fluid-contact angles around spherical particles
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- Electrochemical coating of dental implants with anodic porous titania for enhanced osteointegration
- (2015) Amirreza Shayganpour et al. Beilstein Journal of Nanotechnology
- Cellular Responses Evoked by Different Surface Characteristics of Intraosseous Titanium Implants
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- Surface Modifications and Their Effects on Titanium Dental Implants
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- Retracted: Influence of the implant design on osseointegration and crestal bone resorption of immediate implants: a histomorphometric study in dogs
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- The Role of Pad Topography in Chemical-Mechanical Polishing
- (2014) Sanha Kim et al. IEEE TRANSACTIONS ON SEMICONDUCTOR MANUFACTURING
- Role of metal ions of Langmuir–Blodgett film in hydrophobic to hydrophilic transition of HF-treated Si surface
- (2012) J.K. Bal et al. MATERIALS CHEMISTRY AND PHYSICS
- Prospective study of tapered resorbable blasting media surface implant stability in the maxillary posterior area
- (2012) Young-Kyun Kim et al. Oral Surgery Oral Medicine Oral Pathology Oral Radiology
- Biomechanical evaluation of dental implants with different surfaces: Removal torque and resonance frequency analysis in rabbits
- (2010) Jung-Woo Koh et al. Journal of Advanced Prosthodontics
- Surface characterization of commercial oral implants on the nanometer level
- (2009) Lory Melin Svanborg et al. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS
- High concentration of residual aluminum oxide on titanium surface inhibits extracellular matrix mineralization
- (2008) A. Canabarro et al. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A
- Osteoblastic cell behaviour on different titanium implant surfaces
- (2007) Laurent Le Guehennec et al. Acta Biomaterialia
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