The possibility to shape stimulus-responsive optical polymers, especially hydrogels, by means of laser 3D printing and ablation is fostering a new concept of “smart” micro-devices that can be used for imaging, thermal stimulation, energy transducing and sensing. The composition of these polymeric blends is an essential parameter to tune their properties as actuators and/or sensing platforms and to determine the elasto-mechanical characteristics of the printed hydrogel. In light of the increasing demand for micro-devices for nanomedicine and personalized medicine, interest is growing in the combination of composite and hybrid photo-responsive materials and digital micro-/nano-manufacturing. Existing works have exploited multiphoton laser pho...
The integration of chemo-responsive hydrogels into fragile microelectromechanical systems (MEMS) wit...
The present thesis work deals with the development of a novel manufacturing protocol for the realiza...
H2020-ICT-2014-1,TransFlexTeg645241 ERC-CoG-2014, CapTherPV, 647596 Pest-UID/FIS/00068/2013The use o...
Hydrogels are soft polymers comprising of a three-dimensional network capable of absorbing significa...
Rapid fabricating and harnessing stimuli-responsive behaviors of microscale bio-compatible hydrogels...
The fabrication of high-precision scaffolds with excellent biocompatibility for tissue engineering h...
The additive manufacturing technique of direct laser writing by two-photon polymerization (2PP-DLW) ...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
In this study, a novel approach to create arbitrarily shaped 3D hydrogel objects is presented, where...
textAs one of the few 3D microfabrication techniques available to researchers, multiphoton lithogra...
Background: Laser-assisted bioprinting of multi-cellular replicates in accordance with CAD blueprint...
Supramolecular photo-responsive hydrogels are prepared from partial methacrylation of branched polye...
Additive manufacturing techniques enable the fabrication of sophisticated micro- and nanostructures ...
Engineered blood vessels generally recapitulate vascular function in vitro and can be utilized in dr...
The integration of chemo-responsive hydrogels into fragile microelectromechanical systems (MEMS) wit...
The present thesis work deals with the development of a novel manufacturing protocol for the realiza...
H2020-ICT-2014-1,TransFlexTeg645241 ERC-CoG-2014, CapTherPV, 647596 Pest-UID/FIS/00068/2013The use o...
Hydrogels are soft polymers comprising of a three-dimensional network capable of absorbing significa...
Rapid fabricating and harnessing stimuli-responsive behaviors of microscale bio-compatible hydrogels...
The fabrication of high-precision scaffolds with excellent biocompatibility for tissue engineering h...
The additive manufacturing technique of direct laser writing by two-photon polymerization (2PP-DLW) ...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
In this study, a novel approach to create arbitrarily shaped 3D hydrogel objects is presented, where...
textAs one of the few 3D microfabrication techniques available to researchers, multiphoton lithogra...
Background: Laser-assisted bioprinting of multi-cellular replicates in accordance with CAD blueprint...
Supramolecular photo-responsive hydrogels are prepared from partial methacrylation of branched polye...
Additive manufacturing techniques enable the fabrication of sophisticated micro- and nanostructures ...
Engineered blood vessels generally recapitulate vascular function in vitro and can be utilized in dr...
The integration of chemo-responsive hydrogels into fragile microelectromechanical systems (MEMS) wit...
The present thesis work deals with the development of a novel manufacturing protocol for the realiza...
H2020-ICT-2014-1,TransFlexTeg645241 ERC-CoG-2014, CapTherPV, 647596 Pest-UID/FIS/00068/2013The use o...