The aimof this work is to demonstrate that the structural and fluidic properties of polymer foamtissue scaffolds, post-fabrication but prior to the introduction of cells, can be engineered via exposure to high power ultrasound. Our analysis is supported by measurements of fluid uptake during insonification and imaging of the scaffold microstructure via X-ray computed tomography, scanning electron microscopy and acoustic microscopy. The ultrasonic treatment is performed with a frequency of 30 kHz, average intensities up to 80,000 Wm-2 and exposure times up to 20 h. The treatment is found to increase the mean pore size by over 10%. More striking is the improvement in fluid uptake: for scaffolds with only 40% water uptake via standard immersio...
The results of experimental investigations into foaming process of poly(ε-caprolactone) using superc...
Three dimensional scaffolds were created from a biodegradable polymer (polylactide) and the mineral ...
The effect of scaffold pore size and interconnectivity as well as porosity are undoubtedly crucial f...
Post-processing of polymer foam tissue scaffolds with high power ultrasound: a route to increase
Abstract: A novel technique is presented in this paper for the fabrication of tissue engineering sca...
The design and manufacture of optimised structural components is desired by many areas of engineerin...
A variety of materials require functionally graded cellular microstructures whose porosity is engine...
Functionally graded cellular microstructures whose porosity (i.e.volume fraction of void to solid) i...
Many materials require functionally graded cellular microstructures whose porosity (i.e. ratio of th...
Ultrasound – stimulated healing in porous scaffolds has generated much interest in recent years. Mos...
Functionally graded materials engineered to meet specific requirements are being increasingly sought...
The design of multifunctional materials offers great potential for numerous applications in areas ra...
Successful intracellular drug and gene delivery represents a major goal for medical researchers. Son...
The objective of this work was to determine the effects of high intensity ultrasound application on ...
One promising strategy to reconstruct bone defects relies on 3D printed porous structures. In spite ...
The results of experimental investigations into foaming process of poly(ε-caprolactone) using superc...
Three dimensional scaffolds were created from a biodegradable polymer (polylactide) and the mineral ...
The effect of scaffold pore size and interconnectivity as well as porosity are undoubtedly crucial f...
Post-processing of polymer foam tissue scaffolds with high power ultrasound: a route to increase
Abstract: A novel technique is presented in this paper for the fabrication of tissue engineering sca...
The design and manufacture of optimised structural components is desired by many areas of engineerin...
A variety of materials require functionally graded cellular microstructures whose porosity is engine...
Functionally graded cellular microstructures whose porosity (i.e.volume fraction of void to solid) i...
Many materials require functionally graded cellular microstructures whose porosity (i.e. ratio of th...
Ultrasound – stimulated healing in porous scaffolds has generated much interest in recent years. Mos...
Functionally graded materials engineered to meet specific requirements are being increasingly sought...
The design of multifunctional materials offers great potential for numerous applications in areas ra...
Successful intracellular drug and gene delivery represents a major goal for medical researchers. Son...
The objective of this work was to determine the effects of high intensity ultrasound application on ...
One promising strategy to reconstruct bone defects relies on 3D printed porous structures. In spite ...
The results of experimental investigations into foaming process of poly(ε-caprolactone) using superc...
Three dimensional scaffolds were created from a biodegradable polymer (polylactide) and the mineral ...
The effect of scaffold pore size and interconnectivity as well as porosity are undoubtedly crucial f...