This thesis explores the integration of electrospun polymeric structures in two fields; fibrous scaffolds as cell culture substrates for biomedical applications and fiber carrier networks in metal matrix polymer composites as thermal interface materials in microsystems. Electrospinning has been found to carry great potential for a range of future biomedical engineering applications. To exploit possible benefits of using electrospun scaffolds further investigations of how imposed physical cues emanating from fibrous extrinsic cellular microenvironments affects cell behaviour are needed. In this thesis, electrospun polyurethane (PU) fiber architectures have been fabricated, characterized and studied as cell culture scaffolds. Previous studie...
The ultimate goal of tissue engineering is to replace damaged tissues by applying engineering techno...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Tissue engineering makes use of the principles of medicine, biology and engineering and integrates t...
This thesis explores the integration of functional electrospun micro- and nanofiber based materials ...
This thesis demonstrates the use of electrospinning and the novel properties of electrospun material...
Current culture methods to generate large quantities of cells destined for tissue engineering and re...
Development of artificial scaffolds for tissue engineering is a key area of research in the regenera...
Electrospinning is a very versatile technology that enables production of nanofibrous structures wit...
As the population gets older, the demands for new medical treatments increase since many of our most...
Current conventional cell culture methods for the expansion of cells to large quantities for tissue ...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
Symposium K: Micro-and Nanoscale Processing of Materials for Biomedical DevicesSession K2Scientific ...
Electrospinning has emerged as a very promising technology enabling the production of synthetic poly...
This PhD Thesis is focused on the development of fibrous polymeric scaffolds for tissue engineering ...
Tissue Engineering is an interdisciplinary field aiming at the restoration of the function of damage...
The ultimate goal of tissue engineering is to replace damaged tissues by applying engineering techno...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Tissue engineering makes use of the principles of medicine, biology and engineering and integrates t...
This thesis explores the integration of functional electrospun micro- and nanofiber based materials ...
This thesis demonstrates the use of electrospinning and the novel properties of electrospun material...
Current culture methods to generate large quantities of cells destined for tissue engineering and re...
Development of artificial scaffolds for tissue engineering is a key area of research in the regenera...
Electrospinning is a very versatile technology that enables production of nanofibrous structures wit...
As the population gets older, the demands for new medical treatments increase since many of our most...
Current conventional cell culture methods for the expansion of cells to large quantities for tissue ...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
Symposium K: Micro-and Nanoscale Processing of Materials for Biomedical DevicesSession K2Scientific ...
Electrospinning has emerged as a very promising technology enabling the production of synthetic poly...
This PhD Thesis is focused on the development of fibrous polymeric scaffolds for tissue engineering ...
Tissue Engineering is an interdisciplinary field aiming at the restoration of the function of damage...
The ultimate goal of tissue engineering is to replace damaged tissues by applying engineering techno...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Tissue engineering makes use of the principles of medicine, biology and engineering and integrates t...