Received: 2017-6-26
Accepted: 2017-8-28
Published Online: 2017-10-28
Published in Print: 2017-10-26
© 2017
Articles in the same Issue
- Sub-micron sized saccharide fibres via electrospinning
- Modeling early stage bone regeneration with biomimetic electrospun fibrinogen nanofibers and adipose-derived mesenchymal stem cells
- Fabrication and characterization of air-impedance electrospun polydioxanone templates
- Using Electrospun Scaffolds to Promote Macrophage Phenotypic Modulation and Support Wound Healing
- A review of electrospinning manipulation techniques to direct fiber deposition and maximize pore size
- Commercializing Electrospun Scaffolds for Pluripotent Stem Cell-based Tissue Engineering Applications
- Correlation between electrospinning parameters and magnetic properties of BiFeO3 nanofibers
- Decellularized extracellular matrices for tissue engineering applications
- Electrospun polystyrene/Aliquat 336 for preconcentration and determination of thiocyanate in flow analysis
- Electrospun fibers/branched-clusters as building units for tissue engineering
Keywords for this article
Electrospinning;
Polymer;
Fibre;
Extracting polymer wool;
Flow Injection Analysis
Creative Commons
BY-NC-ND 4.0
Articles in the same Issue
- Sub-micron sized saccharide fibres via electrospinning
- Modeling early stage bone regeneration with biomimetic electrospun fibrinogen nanofibers and adipose-derived mesenchymal stem cells
- Fabrication and characterization of air-impedance electrospun polydioxanone templates
- Using Electrospun Scaffolds to Promote Macrophage Phenotypic Modulation and Support Wound Healing
- A review of electrospinning manipulation techniques to direct fiber deposition and maximize pore size
- Commercializing Electrospun Scaffolds for Pluripotent Stem Cell-based Tissue Engineering Applications
- Correlation between electrospinning parameters and magnetic properties of BiFeO3 nanofibers
- Decellularized extracellular matrices for tissue engineering applications
- Electrospun polystyrene/Aliquat 336 for preconcentration and determination of thiocyanate in flow analysis
- Electrospun fibers/branched-clusters as building units for tissue engineering