We show that spectral phase shaping of fs-laser pulses can be used to optimize laser-cell membrane interactions in water environment. The energy and peak intensity thresholds required for cell poration with single pulse in the nJ range can be significantly reduced (25% reduction in energy and 88% reduction in peak intensity) by using temporal Airy pulses, controlled by positive third order dispersion, as compared to bandwidth limited pulses. Temporal Airy pulses are also effective to control the morphology of the induced pores, with prospective applications from cellular to tissue opto-surgery and transfection
We present a time-resolved photographic analysis of the pulse-to-pulse interaction. In particular, w...
Abstract. We investigated the working mechanisms of femtosecond laser nanoprocessing in biomaterials...
Controlled permeability can be conferred to cell membranes by exposing cells to a microsecond electr...
We show that spectral phase shaping of fs-laser pulses can be used to optimize laser-cell membrane i...
We report on the first study of live cell opto-poration by single temporally shaped femtosecond lase...
Improvement of methods to modify and control the genetic expression of cells in terms of efficiency,...
Femtosecond laser optoporation is a powerful technique to introduce membrane-impermeable molecules, ...
The use of ultrashort femtosecond pulsed lasers to effect membrane permeabilisation and initiate bot...
AbstractFemtosecond laser optoporation is a powerful technique to introduce membrane-impermeable mol...
Highly focused pulsed laser radiation (pulsed laser microbeams) provide the ability to deposit energ...
We demonstrate controllable poration within ≈1 µm regions of individual cells, mediated by a near-IR...
In this work we present a review and discussion on the enhancement of femtosecond (fs) laser for use...
In recent years, femtosecond (fs)-lasers have evolved into a versatile tool for high precision micro...
There is a need for new methodologies to investigate cell apoptosis and recovery, cell adhesion, and...
In deep tissue imaging, pulsed near-infrared lasers commonly provide high peak powers needed for non...
We present a time-resolved photographic analysis of the pulse-to-pulse interaction. In particular, w...
Abstract. We investigated the working mechanisms of femtosecond laser nanoprocessing in biomaterials...
Controlled permeability can be conferred to cell membranes by exposing cells to a microsecond electr...
We show that spectral phase shaping of fs-laser pulses can be used to optimize laser-cell membrane i...
We report on the first study of live cell opto-poration by single temporally shaped femtosecond lase...
Improvement of methods to modify and control the genetic expression of cells in terms of efficiency,...
Femtosecond laser optoporation is a powerful technique to introduce membrane-impermeable molecules, ...
The use of ultrashort femtosecond pulsed lasers to effect membrane permeabilisation and initiate bot...
AbstractFemtosecond laser optoporation is a powerful technique to introduce membrane-impermeable mol...
Highly focused pulsed laser radiation (pulsed laser microbeams) provide the ability to deposit energ...
We demonstrate controllable poration within ≈1 µm regions of individual cells, mediated by a near-IR...
In this work we present a review and discussion on the enhancement of femtosecond (fs) laser for use...
In recent years, femtosecond (fs)-lasers have evolved into a versatile tool for high precision micro...
There is a need for new methodologies to investigate cell apoptosis and recovery, cell adhesion, and...
In deep tissue imaging, pulsed near-infrared lasers commonly provide high peak powers needed for non...
We present a time-resolved photographic analysis of the pulse-to-pulse interaction. In particular, w...
Abstract. We investigated the working mechanisms of femtosecond laser nanoprocessing in biomaterials...
Controlled permeability can be conferred to cell membranes by exposing cells to a microsecond electr...