International audienceWe propose a statistical framework for noise variance estimation in the case of experimental microscopic images enhanced by an image intensifier. Instrumentally induced noise is modeled and corrected to cope with optical aberrations. In this paper, the spatially varying noise is exploited for denoising applications. Our approach does not need variance stabilization since the algorithm is able to adapt to local noise statistics. Performances are demonstrated on real samples on both widefield and confocal imaging combined with frequency domain fluorescence lifetime imaging (FD FLIM)
In certain image acquisitions processes, like in fluorescence microscopy or astronomy, only a limite...
The point spread function (PSF) is of central importance in the image restoration of three-dimension...
Fluorescence confocal microscopy images present a low signal to noise ratio and a time intensity dec...
International audienceWe propose a statistical framework for noise variance estimation in the case o...
Due to photo-toxicity, fluorescence microscopy imaging is a trade-off between signal to noise ratio,...
International audienceWe present a nonparametric regression method for denoising 3-D image sequences...
Abstract- Fluorescence microscopy imaging is a constant trade off between signal to noise ratio, tot...
In this paper we study the noise stability of iterative algorithms developed for attenuation correct...
We present a non-parametric regression method for denoising 3D image sequences acquired in fluoresce...
International audienceIn this paper, we present a new fully automatic approach for noise parameter e...
In fluoroscopy quantum noise is dominant with respect to other common noise sources, whose effects c...
International audienceA framework and an algorithm are presented in order to remove stationary noise...
Purpose: Fluoroscopy is an invaluable tool in various medical practices such as catheterization or i...
Background: Low-dose X-ray images have become increasingly popular in the last decades, due to the n...
Due to the random nature of photon emission and the various internal noise sources of the detectors,...
In certain image acquisitions processes, like in fluorescence microscopy or astronomy, only a limite...
The point spread function (PSF) is of central importance in the image restoration of three-dimension...
Fluorescence confocal microscopy images present a low signal to noise ratio and a time intensity dec...
International audienceWe propose a statistical framework for noise variance estimation in the case o...
Due to photo-toxicity, fluorescence microscopy imaging is a trade-off between signal to noise ratio,...
International audienceWe present a nonparametric regression method for denoising 3-D image sequences...
Abstract- Fluorescence microscopy imaging is a constant trade off between signal to noise ratio, tot...
In this paper we study the noise stability of iterative algorithms developed for attenuation correct...
We present a non-parametric regression method for denoising 3D image sequences acquired in fluoresce...
International audienceIn this paper, we present a new fully automatic approach for noise parameter e...
In fluoroscopy quantum noise is dominant with respect to other common noise sources, whose effects c...
International audienceA framework and an algorithm are presented in order to remove stationary noise...
Purpose: Fluoroscopy is an invaluable tool in various medical practices such as catheterization or i...
Background: Low-dose X-ray images have become increasingly popular in the last decades, due to the n...
Due to the random nature of photon emission and the various internal noise sources of the detectors,...
In certain image acquisitions processes, like in fluorescence microscopy or astronomy, only a limite...
The point spread function (PSF) is of central importance in the image restoration of three-dimension...
Fluorescence confocal microscopy images present a low signal to noise ratio and a time intensity dec...