Review: unraveling the less explored flocking technology for tissue engineering scaffolds
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Summary
This review will serve as a comprehensive reference for understanding the vital pre-requisite properties of scaffolds, and the principles and factors governing the flocking of scaffold and the improved properties of flock scaffolds and promote flocking technology as a plausible candidate to spearhead TE scaffold fabrication.
- Type
- article
- Published
- 2015-08-25
- Cited by
- 11
- References
- 79
- OpenAlex
- https://openalex.org/W1895716310
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93338174
Keywords
Flocking (texture), Nanotechnology, Tissue engineering, Computer science, Biomedical engineering
References
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- Abrasion Properties of Upholstery Flocked Fabrics
Cited by
- Electrostatic flocking of chitosan fibres leads to highly porous, elastic and fully biodegradable anisotropic scaffolds.
- Electrically conductive nanofibrous scaffolds based on poly(ethylene glycol)s-modified polyaniline and poly(ε-caprolactone) for tissue engineering applications
- Factors affecting the mechanical and geometrical properties of electrostatically flocked pure chitosan fiber scaffolds
- Three-dimensional stretchable fabric-based electrode for supercapacitors prepared by electrostatic flocking
- Chemically and Physically Modified Flame-Retardant Silicone-Acrylic Emulsion Adhesive for Electrostatic Flocking
- Development of a Bioinspired, Self‐Adhering, and Drug‐Eluting Laryngotracheal Patch
- Electrostatic Flocking of Insulative and Biodegradable Polymer Microfibers for Biomedical Applications
- Development of Three-Dimensional (3D) Biodegradable Polyglycolic Acid Fiber (PGA) Preforms for Scaffold Applications: Experimental Patterning and Fiber Volume Fraction-Porosity Modeling Study
- Advancements in textile techniques for cardiovascular tissue replacement and repair
- Skin- and hair- inspired nanofibrious hydrogel composite as multimodal sensor for polysomnographic monitoring in sleep apnea syndrome.
- Investigation of Composition, Structure, Electrical Properties, and Ageing Resistance of Conductive Flocked Fabric for Automotive Applications
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