International audienceAberrations limit the resolution, signal intensity and achievable imaging depth in microscopy. Coherence-gated wavefront sensing (CGWS) allows the fast measurement of aberrations in scattering samples and therefore the implementation of adaptive corrections. However, CGWS has been demonstrated so far only in weakly scattering samples. We designed a new CGWS scheme based on a Linnik interferometer and a SLED lightsource, which is able to compensate dispersion automatically and can be implemented on any microscope. In the highly scattering rat brain tissue,where multiply scattered photons falling within the temporal gate of the CGWS can no longer be neglected, we have measured known defocus andspherical aberrations up to...
We demonstrate a direct Shack-Hartmann wavefront sensing method that allows depth-resolved measureme...
Shack-Hartmann wavefront sensors (SH-WFS) have little sensitivity in depth and hence are unsuitable ...
The imaging depth of two-photon excitation fluorescence microscopy is partly limited by the inhomoge...
Abstract: Aberrations limit the resolution, signal intensity and achievable imaging depth in microsc...
Coherence-gated wavefront sensing (CGWS) allows the determination of wavefront aberrations in strong...
Deep imaging in turbid media such as biological tissue is challenging due to scattering and optical ...
The image quality of a two−photon microscope is often degraded by wavefront aberrations induced by t...
In this thesis coherence-gated wave-front sensing (CGWS), a new approach for measuring wave-fronts i...
In this thesis coherence-gated wave-front sensing (CGWS), a new approach for measuring wave-fronts i...
The image quality of a two-photon microscope is often degraded by wavefront aberrations induced by t...
In this report we demonstrate results of measuring wavefront aberrations from different depths in a ...
The focus of a two-photon microscope is often degraded by inhomogeneities in the refractive index wi...
The focus of a two-photon microscope is often degraded by inhomogeneities in the refractive index wi...
In this report we investigate the possibility of narrowing the depth range of a physical Shack-Hartm...
Deep fluorescence imaging in mammalian brain tissues remains challenging due to scattering and optic...
We demonstrate a direct Shack-Hartmann wavefront sensing method that allows depth-resolved measureme...
Shack-Hartmann wavefront sensors (SH-WFS) have little sensitivity in depth and hence are unsuitable ...
The imaging depth of two-photon excitation fluorescence microscopy is partly limited by the inhomoge...
Abstract: Aberrations limit the resolution, signal intensity and achievable imaging depth in microsc...
Coherence-gated wavefront sensing (CGWS) allows the determination of wavefront aberrations in strong...
Deep imaging in turbid media such as biological tissue is challenging due to scattering and optical ...
The image quality of a two−photon microscope is often degraded by wavefront aberrations induced by t...
In this thesis coherence-gated wave-front sensing (CGWS), a new approach for measuring wave-fronts i...
In this thesis coherence-gated wave-front sensing (CGWS), a new approach for measuring wave-fronts i...
The image quality of a two-photon microscope is often degraded by wavefront aberrations induced by t...
In this report we demonstrate results of measuring wavefront aberrations from different depths in a ...
The focus of a two-photon microscope is often degraded by inhomogeneities in the refractive index wi...
The focus of a two-photon microscope is often degraded by inhomogeneities in the refractive index wi...
In this report we investigate the possibility of narrowing the depth range of a physical Shack-Hartm...
Deep fluorescence imaging in mammalian brain tissues remains challenging due to scattering and optic...
We demonstrate a direct Shack-Hartmann wavefront sensing method that allows depth-resolved measureme...
Shack-Hartmann wavefront sensors (SH-WFS) have little sensitivity in depth and hence are unsuitable ...
The imaging depth of two-photon excitation fluorescence microscopy is partly limited by the inhomoge...