In this work we fabricate and validate two optofludic devices for the manipulation and analysis of single cells. The chips are fabricated by femtosecond laser micromachining exploiting the 3D capabilities of the technique and the inherent perfect alignment between microfluidic channels and optical networks. Both devices have been validated by probing the mechanical properties of different cancer cell lines, which are expected to show different elasticity because of their different metastatic potential
Cellular mechanical properties constitute good markers to characterize tumor cells, to study cell po...
The combination of microfluidic systems with laser optical manipulation of suspended objects extends...
Cancer cells undergo dramatic morphology changes when migrating in confined spaces narrower than the...
Two optofludic devices for the manipulation, analysis and imaging of cancer cells by laser light are...
The authors present the design and optimization of an optofluidic monolithic chip, able to provide o...
Optofludic lab-on-chips are compact microsystems that allow the manipulation, the analysis and the i...
We report on the fabrication by a femtosecond laser of an optofluidic device for optical trapping a...
Trapping and stretching of single cells in an optofluidic chip fabricated by a femtosecond lase
Single cell trapping and stretching in a femtosecond laser fabricated optofluidic chi
Manipulation, sorting and recovering of specific live cells from samples containing less than a few ...
We report on the fabrication by a femtosecond laser of an optofluidic device for optical trapping an...
This paper provides an overview of the rather new field concerning the applications of femtosecond l...
ic f s eq mi in d s. T nm as v ere on tia gle grated with optical waveguides is that no interconnect...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
Optical micromanipulation techniques and microfluidic techniques can be used in same platform for ma...
Cellular mechanical properties constitute good markers to characterize tumor cells, to study cell po...
The combination of microfluidic systems with laser optical manipulation of suspended objects extends...
Cancer cells undergo dramatic morphology changes when migrating in confined spaces narrower than the...
Two optofludic devices for the manipulation, analysis and imaging of cancer cells by laser light are...
The authors present the design and optimization of an optofluidic monolithic chip, able to provide o...
Optofludic lab-on-chips are compact microsystems that allow the manipulation, the analysis and the i...
We report on the fabrication by a femtosecond laser of an optofluidic device for optical trapping a...
Trapping and stretching of single cells in an optofluidic chip fabricated by a femtosecond lase
Single cell trapping and stretching in a femtosecond laser fabricated optofluidic chi
Manipulation, sorting and recovering of specific live cells from samples containing less than a few ...
We report on the fabrication by a femtosecond laser of an optofluidic device for optical trapping an...
This paper provides an overview of the rather new field concerning the applications of femtosecond l...
ic f s eq mi in d s. T nm as v ere on tia gle grated with optical waveguides is that no interconnect...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
Optical micromanipulation techniques and microfluidic techniques can be used in same platform for ma...
Cellular mechanical properties constitute good markers to characterize tumor cells, to study cell po...
The combination of microfluidic systems with laser optical manipulation of suspended objects extends...
Cancer cells undergo dramatic morphology changes when migrating in confined spaces narrower than the...