The wavelength dependence of the incoherent point spread function in a wide-field microscope was investigated experimentally. Dispersion in the sample and optics can lead to significant changes in the point spread function as wavelength is varied over the range commonly used in fluorescence microscopy. For a given sample, optical conditions can generally be optimized to produce a point spread function largely free of spherical aberration at a given wavelength. Unfortunately, deviations in wavelength from this value will result in spherically aberrated point spread functions. Therefore, when multiple fluorophores are used to localize different components in the same sample, the image of the distribution of at least one of the fluorophores wi...
International audiencePenalized regression with a combination of sparseness and an interframe penalt...
Fluorescence microscopy is an indispensable tool in the areas of cell biology, histology and materia...
Three dimensional (3-D) fluorescence microscopes, including conventional instruments with digital de...
The wavelength dependence of the incoherent point spread function in a wide-field microscope was inv...
The fluorescence microscope is routinely used to study cellular structure in many biomedical researc...
In this paper, image formation under single-photon (1-p), two-photon (2-p) and three-photon (3-p) fl...
We show that the use of multiple depth-variant point-spread functions in 3D fluorescence intensity r...
International audienceThe standard two-dimensional (2D) image recorded in bright-field fluorescence ...
Quantitative imaging and image de-convolution have become standard techniques for the modern cell bi...
Multiphoton microscopy has evolved into a powerful bioimaging tool in three dimensions. However, the...
We present a method to acquire both fluorescence and high-resolution bright-field images with correc...
A three-dimensional (3-D) point spread function (PSF) model for wide-field fluorescence microscopy, ...
Fluorescence microscopy is a powerful technique in biology, because of the immense variety of marker...
International audiencePenalized regression with a combination of sparseness and an interframe penalt...
Fluorescence microscopy is an indispensable tool in the areas of cell biology, histology and materia...
Three dimensional (3-D) fluorescence microscopes, including conventional instruments with digital de...
The wavelength dependence of the incoherent point spread function in a wide-field microscope was inv...
The fluorescence microscope is routinely used to study cellular structure in many biomedical researc...
In this paper, image formation under single-photon (1-p), two-photon (2-p) and three-photon (3-p) fl...
We show that the use of multiple depth-variant point-spread functions in 3D fluorescence intensity r...
International audienceThe standard two-dimensional (2D) image recorded in bright-field fluorescence ...
Quantitative imaging and image de-convolution have become standard techniques for the modern cell bi...
Multiphoton microscopy has evolved into a powerful bioimaging tool in three dimensions. However, the...
We present a method to acquire both fluorescence and high-resolution bright-field images with correc...
A three-dimensional (3-D) point spread function (PSF) model for wide-field fluorescence microscopy, ...
Fluorescence microscopy is a powerful technique in biology, because of the immense variety of marker...
International audiencePenalized regression with a combination of sparseness and an interframe penalt...
Fluorescence microscopy is an indispensable tool in the areas of cell biology, histology and materia...
Three dimensional (3-D) fluorescence microscopes, including conventional instruments with digital de...