In the last decade Optical Tweezers (OT) and Two Photon Polymerization (TPP), two already established techniques for contactless manipulation of micro-objects in liquids and for the fabrication of three-dimensional micro-objects of arbitrary shape, respectively, have consolidated their presence in the laboratory practice, not only as subject of scientific and technical investigations, but also as convenient tools for applications to other fields. This thesis tries to combines these worlds, using TPP to fabricate micro-objects that could be trapped and actuated by OT, with the aim of pushing forward the possibilities of producing new tools, in particular for cell biology studies. We demonstrated here a convenient scheme for the fabrication ...
Functional three-dimensional (3D) microstructures incorporating accessible interiors have emerged as...
Recent technological advances in micro-robotic systems have demonstrated much potential for biomedic...
Additive manufacturing techniques enable the fabrication of sophisticated micro- and nanostructures ...
We introduce a method that combines two-photon polymerization (TPP) and surface functionalization to...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
Optical Tweezers are very useful systems to manipulate micro-scale objects in confined spaces. To pr...
Two-photon polymerization of optically curing resins is a powerful method to fabricate micron sized ...
The work presented in this thesis explores new multi-disciplinary applications of optical tweezers i...
International audienceOptical manipulation is a technology that enables accurate manipulation of mic...
Optical tweezers (OT) can be viewed as a robot that uses a highly focused laser beam for precise man...
This doctoral work aims to advance two-photon lithography (TPL) using a hybrid approach that integra...
Microfabrication techniques have opened up new ways to study the dynamics of microsystems expanding ...
Rapid advances in the research and development of robotic and automation technologies have completel...
Two-photon photopolymerization of optically curable resins is a powerful tool for fabricating microm...
Functional three-dimensional (3D) microstructures incorporating accessible interiors have emerged as...
Functional three-dimensional (3D) microstructures incorporating accessible interiors have emerged as...
Recent technological advances in micro-robotic systems have demonstrated much potential for biomedic...
Additive manufacturing techniques enable the fabrication of sophisticated micro- and nanostructures ...
We introduce a method that combines two-photon polymerization (TPP) and surface functionalization to...
The goal of this work is to investigate the usefulness of the optical tweezers for biological sample...
Optical Tweezers are very useful systems to manipulate micro-scale objects in confined spaces. To pr...
Two-photon polymerization of optically curing resins is a powerful method to fabricate micron sized ...
The work presented in this thesis explores new multi-disciplinary applications of optical tweezers i...
International audienceOptical manipulation is a technology that enables accurate manipulation of mic...
Optical tweezers (OT) can be viewed as a robot that uses a highly focused laser beam for precise man...
This doctoral work aims to advance two-photon lithography (TPL) using a hybrid approach that integra...
Microfabrication techniques have opened up new ways to study the dynamics of microsystems expanding ...
Rapid advances in the research and development of robotic and automation technologies have completel...
Two-photon photopolymerization of optically curable resins is a powerful tool for fabricating microm...
Functional three-dimensional (3D) microstructures incorporating accessible interiors have emerged as...
Functional three-dimensional (3D) microstructures incorporating accessible interiors have emerged as...
Recent technological advances in micro-robotic systems have demonstrated much potential for biomedic...
Additive manufacturing techniques enable the fabrication of sophisticated micro- and nanostructures ...