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Meeting 2015 TMS Annual Meeting & Exhibition
Symposium Advanced Materials in Dental and Orthopedic Applications
Sponsorship TMS Structural Materials Division
TMS: Biomaterials Committee
Organizer(s) Tolou Shokuhfar, University of Illinois at Chicago
Terry Lowe, Colorado School of Mines
Elizabeth Trillo, Southwest Research Institue
Grant Crawford, South Dakota School of Mines and Technology
Scope The focus of this symposium is on materials for dental and orthopedic applications, including emerging metals, ceramics, polymers, composites, and adhesives. Next generation biomedical materials are expected to revolutionize the future of restorative dentistry and orthopedics. This symposium provides an opportunity for the medical and dental communities to be exposed to new materials and implant technologies. Materials researchers and engineers will be able to learn about the clinical applications of orthopedic/dental materials and the patient needs from medical and dental research community perspectives.
In particular we encourage researchers to submit abstracts within any of the following themes of this symposium:
- Synthesis and characterization of novel biomaterials for prosthodontics and orthopedics
- The interface between orthopedic/dental materials and living cells and tissue
- Corrosion and tribocorrosion behavior of orthopedic/dental materials
- Mechanical behavior of orthopedic/dental materials
- Results of clinical evaluations of new orthopedic/dental materials
Abstracts Due 07/15/2014
Proceedings Plan Planned: A print-only volume

A Comparative Assessment of Magnetoelectropolishing (MEP) and Anodization (ANO) Based Surface Modification Techniques in Evaluating the Surface, Mechanical and Cellular Responses of Novel Titanium Implant Materials
Alkali-route Synthetized TiO2 Nanotubes Used in Dental Composites
Animal Models of PMMA-NVP Hydrogels for Orthotropic, Self-Inflating Tissue Expanders
Application of Bio-Degradable Polymers for Controlling Release Rate of Drug Eluting Implants
Biological Interactions of Cathodically Polarized Titanium
Bioresorbable Iron-Manganese for Orthopedic Applications – The Effect of Microstructure and Surface Morphology on Degradation Behavior
Characterization of Chitin for Bone Tissue Regeneration
Color Tone and Exfoliation Resistance of White Oxide Layer Formed on Ti-Nb-Ta-Zr Alloys
Comparing the Adhesion Strength of a Chitosan Coating using Four Different Solvents
Development of Ti-10Mo-Zr Alloys for Biomedical Applications
Effects of Air Abrasion Surface Treatments on the Fracture Behaviour of a Veneered Dental Zirconia Ceramic
Fabrication and Characterization of Titanium Nano Hydroxyapatite Surface Composites for Osseointegrated Implant Applications
Fabrication of Biocompatible Beta-Ti-30Nb-4Sn Alloy Using High Energy Ball Milled Powder
Fatigue Analysis of Nitinol and Beta Titanium Arch Wires
In Vitro Studies of Secondary Caries Formation and Strategies for Prevention
Influence of Testing Environment on the Degradation Behavior of Magnesium Alloys for Bioabsorbable Implants
Innovative Multifunctional Calcium-Rich Surfaces for Dental Implant Applications: An Overview About Nanotoxicology Applied to Dental Implants
Interplay Between Bio-Tribocorrosion and Osteoblastic Cells Cultured on Titanium Surfaces
J10: The Effect of Heat Treatments on the Mechanical Properties of Chill Cast Co-20 wt. %Cr Alloy
J11: Elastic Modulus of Oxidized Ti-Nb Alloys
J12: Effect of Aging on the Microstructure and Selected Mechanical Properties of Ti-15Zr-Mo Alloys for Use as Biomaterial
J13: Effects of Aging Heat Treatment on Mechanical Behavior of Beta Ti-Mo Alloys
J1: Deposited Layer Thickness and the Corrosion Resistance Behavior of 316L Stainless Steel by Ti Coated
J2: Obtaining Self-Organized Nanotubes on Biomedical Ti-Mo Alloys
J3: Effect of Niobium on the Electrochemical Behavior of a New Beta Ti Alloy System with Low Elastic Modulus
J4: Effect of Sn Addition on Phase Transformations and Mechanical Properties in Ti-Mo System
J5: Synthesis of Bioactive Coating Formed on Biodegradable Magnesium Implants via One-Step Process of Plasma Electrolytic Oxidation
J6: Thermal and Mechanical Characterization of Nano Hydroxyapatite/ Poly(hydroxybutyrate) Composite for Odontological Application
J7: Comparing Biologically Compatible Solvents Used to Adhere a Bioactive Coating to Titanium
J8: Formation of Hierarchically Structured Macroporous Hydroxyapatite Scaffolds via Polystyrene Particle Templates for Bone Grafting
J9: Evolution of Cold-rolled Microstructure and Mechanical Properties of Biomedical Co-Cr Alloys
Mechanical and Electrochemical Performance of Mg-HA Nanocomposites Fabricated by Combined HSS and SPD
Mechanical Properties of Biocompatible Ti-13Nb-13Zr Alloys Processed by SPD
Microstructure and Mechanical Properties of a Directionally Solidified Co-20 wt.% Cr Alloy for Biomedical Applications
Multifunctional Nanotubes for Better Dental and Orthopedic Implants
Nanoscale Mechanical Properties of Apatite Crystals
Nanostructured Metals for Dental and Orthopedic Applications
Nanostructured Metals for Innovation Applications in Dentistry and Orthopedics
Nature of Inflammatory Response in Metal-on-Metal Surface Replacement Compared to Metal-On-Polyethylene Bearings with Corroded Modular Junctions
Novel Fabrication of Transparent Titania Nanotubes on Zirconia Bio-Implant
Processing, Microstructure Characterization and Biological Response of Cold Sprayed Biocomposite Coatings
Strength and Fracture Toughness of Zirconia Y-TZP Core Veneered with Aesthetic Feldspathic Ceramic
Strong Osseo-Integration in Dental and Orthopaedic Implants by Surface TiO2 Nanotubes
Surface Treatment of Ti-45Nb Open Porous Structures Towards Biomedical Applications: A Modified Approach
The Analysis of Mechanical and Electrical Property Effects of Bovine Bone Hydroxyapatite Composites Produced with the Addition of LiCO3 on Biocompatibility
Tissue Response and Degradation Performance of a Novel Biodegradable Mg-Ca-Sr for Orthopedic Applications
Titanium Anodic Oxidation: A Powerful Technique for Tailoring Surfaces Properties for Biomedical Applications
Tribocorrosion Studies on Surface Modified Medical Grade Stainless Steel

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