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Printable Handouts
Navigable Slide Index
- Introduction
- Nanotechnology and tissue engineering - definition
- Closer look at nanotechnology in biomedicine
- Closer look at tissue engineering - successful use
- Common things in nanotech/tissue engineering
- Our tissues are nanostructured
- Use of nanotechnology in tissue engineering
- Objective
- Overview of the talk
- Nano - spherical ceramics
- Nanospherical ceramic synthesis
- AFM of nanophase and conventional titania
- Cell adhesion on nanophase alumina
- Osteoblast adhesion on nanophase ceramics
- Best grain size for osteoblast adhesion
- Calcium deposition of nanophase ceramics
- Nanospherical ceramics coating
- Nanospherical ceramics coating - animal studies
- Nanospherical ceramics resist bacterial infection
- Nanofiber ceramics
- Bone is a nano-fibered material
- Nanofiber ceramic synthesis
- Nanofiber ceramics in orthopedic implants
- Osteoblast adhesion on nano-fiber alumina
- Carbon nanofibers
- Carbon nanofiber synthesis
- Carbon nanofibers in orthopedic implants
- SEM of carbon fiber compacts
- PCU:CNF composites
- Why CNF increase osteoblast adehesion
- CNF topography casting to polymers
- SEM of PLGA casts of CNF compacts
- Bone: aligned nanostructures
- CNF alignment in poly-urethane composites
- CNF surface alignment in composites
- SEM image of aligned CNT/CNF in PCU
- CNF surface - cells alignment
- CNF alignment controls mineral deposition
- Self-assembled nanostructures
- Helical Rosette Nanotube (HRN)
- HRN - 3-D structure
- HRN networks on titania surface
- HRN as 3-D tissue engineering scaffolds
- Nanostructured ceramic:polymer composites
- Ceramic/polymer nanocomposites
- Osteoblast function on Ti/PLGA nanocomposites
- Nano-structured metals
- Nano-structured metals - materials and methods
- Ti compacts - conventional and nanophase
- Ti6AI4V compacts - conventional and nanophase
- CoCrMo compacts - conventional and nanophase
- Enhanced osteoblast adhesion to nano-surface
- Other solutions - anodized titanium
- Osteoblast functions on anodized titanium
- Anticancer bone implants
- Nanomaterials in nervous system
- Examples for the use of neuronal probes
- Carbon nanofibers for neural implants
- Neurites align with nanofibers
- Experiment of treating MCAO in rat
- Stem cells and nanofibers for neural repair (1)
- Stem cells and nanofibers for neural repair (2)
- Nanotechnology in treatment of vascular damage
- Vascular tissue
- Polymer surface feature dimension reduction
- Chemically treated and cast PLGA
- Chemically treated and cast PU
- Metals: stents
- Nanostructured Ti increases endothelial adhesion
- Discussion
- Acknowledgements
- Lab members
- Past Nanomedicine Lab Members
Topics Covered
- Nanomedicine
- Nanotechnology
- Tissue engineering
- Orthopaedics
- Cartilage
- Vascular
- Bladder
- Central and peripheral nervous system
Talk Citation
Webster, T.J. (2007, October 1). Nanotechnology for tissue engineering [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved April 15, 2025, from https://doi.org/10.69645/WJNW9429.Export Citation (RIS)
Publication History
- Published on October 1, 2007
Financial Disclosures
- Prof. Thomas J. Webster has not informed HSTalks of any commercial/financial relationship that it is appropriate to disclose.