International audienceAdvances in tissue engineering for cardiac regenerative medicine require cellular-level understanding of the mechanism of cardiac muscle growth during embryonic developmental stage. Computational methods to automatize cell segmentation in 3D and deliver accurate, quantitative morphology of cardiomyocytes, are imperative to provide insight into cell behavior underlying cardiac tissue growth. Detecting individual cells from volumetric images of dense tissue, poised with low signal-to-noise ratio and severe intensity in homogeneity, is a challenging task. In this article, we develop a robust segmentation tool capable of extracting cellular morphological parameters from 3D multifluorescence images of murine heart, captured...
Organogenesis depends on orchestrated interactions between individual cells and morphogenetically re...
Currently, there is a limited ability to interactively study developmental cardiac mechanics and phy...
During embryogenesis, a mammalian heart develops from a simple tubular shape into a complex 4-chambe...
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, quantification of cellular morphological features is...
International audienceIn developmental biology, quantitative tools to extract features from fluoresc...
International audienceConfocal fluorescence microscopy has become a standard tool to image thick 3D ...
The 'cardiosphere' is a 3D cluster of cardiac progenitor cells recapitulating a stem cell niche-like...
Computer assisted image acquisition techniques, including confocal microscopy, require efficient too...
A method for displaying quantitative information in 3D reconstructions of the embryonic heart was de...
Human embryonic stem cells (hESCs) differentiated into cardiomyocytes (CM) often develop into comple...
Abstract Direct reprogramming of fibroblasts into cardiomyocytes is a promising approach for cardiac...
During embryogenesis, a mammalian heart develops from a simple tubular shape into a complex 4-chambe...
Organogenesis depends on orchestrated interactions between individual cells and morphogenetically re...
Currently, there is a limited ability to interactively study developmental cardiac mechanics and phy...
During embryogenesis, a mammalian heart develops from a simple tubular shape into a complex 4-chambe...
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, quantification of cellular morphological features is...
International audienceIn developmental biology, quantitative tools to extract features from fluoresc...
International audienceConfocal fluorescence microscopy has become a standard tool to image thick 3D ...
The 'cardiosphere' is a 3D cluster of cardiac progenitor cells recapitulating a stem cell niche-like...
Computer assisted image acquisition techniques, including confocal microscopy, require efficient too...
A method for displaying quantitative information in 3D reconstructions of the embryonic heart was de...
Human embryonic stem cells (hESCs) differentiated into cardiomyocytes (CM) often develop into comple...
Abstract Direct reprogramming of fibroblasts into cardiomyocytes is a promising approach for cardiac...
During embryogenesis, a mammalian heart develops from a simple tubular shape into a complex 4-chambe...
Organogenesis depends on orchestrated interactions between individual cells and morphogenetically re...
Currently, there is a limited ability to interactively study developmental cardiac mechanics and phy...
During embryogenesis, a mammalian heart develops from a simple tubular shape into a complex 4-chambe...