International audienceWe characterize experimentally the influence of sample structure and beam focusing on signal level in third-harmonic generation (THG) microscopy. In the case of a homogeneous spherical sample, the dependence of the signal on the size of the sphere can be controlled by modifying the Rayleigh length of the excitation beam. More generally, the influence of excitation focusing on the signal depends on sample geometry, allowing one to highlight certain structures within a complex system. We illustrate this point by focusing-based contrast modulation in THG images of Drosophila embryos
International audienceWe demonstrate image-based aberration correction in a third-harmonic generatio...
Nonlinear microscopy can be used to probe the intrinsic optical properties of biological tissues. Us...
Second harmonic generation (SHG) and third harmonic generation (THG) microscopies have emerged as po...
International audienceWe characterize experimentally the influence of sample structure and beam focu...
International audienceThird-harmonic generation (THG) microscopy can provide structural information ...
Third Harmonic Generation (THG) from the vicinity of interfaces, using focused laser beams can be ob...
International audienceWe use a vector field model to analyze third-harmonic generation (THG) from mo...
This work aimed at developing third-harmonic generation microscopy for biology, a recent technique a...
The interaction of cells within their microenvironmental niche is fundamental to cell migration, pos...
International audienceWe demonstrate the association of third-harmonic generation (THG) microscopy a...
International audienceThird-harmonic generation (THG) imaging of thick samples or large organisms re...
International audienceNonlinear microscopy can be used to probe the intrinsic optical properties of ...
Nonlinear microscopy has become an indispensable tool in the study of biological systems. It include...
<p>(<b>a</b>) Schematic representation of the non-linear microscope configuration. Two paths are use...
International audienceWe study theoretically and numerically third-harmonic generation (THG) from mo...
International audienceWe demonstrate image-based aberration correction in a third-harmonic generatio...
Nonlinear microscopy can be used to probe the intrinsic optical properties of biological tissues. Us...
Second harmonic generation (SHG) and third harmonic generation (THG) microscopies have emerged as po...
International audienceWe characterize experimentally the influence of sample structure and beam focu...
International audienceThird-harmonic generation (THG) microscopy can provide structural information ...
Third Harmonic Generation (THG) from the vicinity of interfaces, using focused laser beams can be ob...
International audienceWe use a vector field model to analyze third-harmonic generation (THG) from mo...
This work aimed at developing third-harmonic generation microscopy for biology, a recent technique a...
The interaction of cells within their microenvironmental niche is fundamental to cell migration, pos...
International audienceWe demonstrate the association of third-harmonic generation (THG) microscopy a...
International audienceThird-harmonic generation (THG) imaging of thick samples or large organisms re...
International audienceNonlinear microscopy can be used to probe the intrinsic optical properties of ...
Nonlinear microscopy has become an indispensable tool in the study of biological systems. It include...
<p>(<b>a</b>) Schematic representation of the non-linear microscope configuration. Two paths are use...
International audienceWe study theoretically and numerically third-harmonic generation (THG) from mo...
International audienceWe demonstrate image-based aberration correction in a third-harmonic generatio...
Nonlinear microscopy can be used to probe the intrinsic optical properties of biological tissues. Us...
Second harmonic generation (SHG) and third harmonic generation (THG) microscopies have emerged as po...