International audienceIn developmental biology, quantification of cellular morphological features is a critical step to get insight into tissue morphogenesis. The efficacy of the quantification tools rely heavily on robust segmentation techniques which can delineate individual cells/nuclei from cluttered environment. Application of popular neural network methods is restrained by the availability of ground truth necessary for 3D nuclei segmentation. Consequently, we propose a convolutional neural network method, combined with graph theoretic approach for 3D nuclei segmentation of mouse embryo cardiomyocytes, imaged by light-sheet microscopy. The designed neural network architecture encapsulates both membrane and nuclei cues for 2D detection....
Background: Due to the large amount of data produced by advanced microscopy, automated image analysi...
Abstract Background Reliable segmentation of cell nuclei from three dimensional (3D) microscopic ima...
Methods for measuring the properties of individual cells within their native 3D environment will ena...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceIn developmental biology, quantitative tools to extract features from fluoresc...
International audienceConfocal fluorescence microscopy has become a standard tool to image thick 3D ...
Recent advances in fluorescence microscopy enable deeper cellular imaging in living tissues with nea...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
The scale of biological microscopy has increased dramatically over the past ten years, with the deve...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
Recent advances in fluorescence microscopy enable deeper cellular imaging in living tissues with nea...
Background: Due to the large amount of data produced by advanced microscopy, automated image analysi...
Background: Due to the large amount of data produced by advanced microscopy, automated image analysi...
Abstract Background Reliable segmentation of cell nuclei from three dimensional (3D) microscopic ima...
Methods for measuring the properties of individual cells within their native 3D environment will ena...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellu...
International audienceIn developmental biology, quantitative tools to extract features from fluoresc...
International audienceConfocal fluorescence microscopy has become a standard tool to image thick 3D ...
Recent advances in fluorescence microscopy enable deeper cellular imaging in living tissues with nea...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
The scale of biological microscopy has increased dramatically over the past ten years, with the deve...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
Recent advances in fluorescence microscopy enable deeper cellular imaging in living tissues with nea...
Background: Due to the large amount of data produced by advanced microscopy, automated image analysi...
Background: Due to the large amount of data produced by advanced microscopy, automated image analysi...
Abstract Background Reliable segmentation of cell nuclei from three dimensional (3D) microscopic ima...
Methods for measuring the properties of individual cells within their native 3D environment will ena...