Resources

Scientific & Clinical Impact of Nanovis’ Surface Technologies

Clinical Impact Series

Nanotechnology Enhanced Spinal Fusion Devices for Bone Growth
Todd Bonvallet, MD
Nanotechnology Enhanced Spinal Fusion Devices for Bone Growth
Wade Ceola, MD, FAANS
nanoVIS Ti™ Surface Technology Enhanced Spinal Fusion Devices for Bone Growth
Douglas Pahl, MD
Multi-level Lumbar Revision with Nanotechnology-Enhanced Pelvic Fixation
Alan McGee Jr, MD

White Papers

NanoVIS Ti Surface Technology Increases Mineralization of Extracellular Matrix Produced by Osteoblasts & Mesenchymal Stem Cells
Rapid Vascular On-Growth with Titanium Nanotube vs. Machine Finished Surfaces
Nanotube Diameter Influence MSC Osteogenic Differentiotion
Anti-Aging Nanosurface to Preserve Nanosurface Functionality
Pedicle Screw extraction from a Horse Model
Titanium Nanotubes Improve Osteoporotic Outcomes in a Rat Model
Acelerated Human Osteoblast Differentiation on CP Titanium
Titanium Nanotube Surfaces Improve Osseointegration in a Diabetic Rat Model
Improved Pedicle Screw Fixation in a Sheep Micromotion Model
nanoVIS Ti™ Surface Technology Increases Mineralization of Extracellular Matrix
Anti-Aging Nanosurface to preserver Nanosurface Functionality
Nanotube Diameter Influences MSC Osteogenic Differentiation

Publications

Effects of Ti02 Nanotubes on Gene Expression & Osseointegration
Evaluating Osseointegration Into a Deeply Porous Titanium Scaffold
Todd Bonvallet, MD

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