Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as prostate cancer recapitulate key aspects of the architecture and histology of solid cancers. Morphometric analysis of multicellular 3D organoids is particularly important when additional components such as the extracellular matrix and tumour microenvironment are included in the model. The complexity of such models has so far limited their successful implementation. There is a great need for automatic, accurate and robust image segmentation tools to facilitate the analysis of such biologically relevant 3D cell culture models. We present a segmentation method based on Markov random fields (MRFs) and illustrate our method using 3D stack image data from a...
Organoids are three-dimensional (3D) structures that can be derived from stem cells or adult tissue ...
Glandular epithelial cells differentiate into complex multicellular or acinar structures, when em...
At very fine resolution the stochastic nature of gene expression and penetrance leading to phenotypi...
International audienceOrganotypic, three dimensional (3D) cell culture models of epithelial tumour t...
International audienceOrganotypic, three dimensional (3D) cell culture models of epithelial tumour t...
Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as prostate ...
International audienceOrganotypic, three dimensional (3D) cell culture models of epithelial tumour t...
<div><p>Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as p...
Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as prostate ...
Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as prostate ...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
Organoids are three-dimensional (3D) structures that can be derived from stem cells or adult tissue ...
Glandular epithelial cells differentiate into complex multicellular or acinar structures, when em...
At very fine resolution the stochastic nature of gene expression and penetrance leading to phenotypi...
International audienceOrganotypic, three dimensional (3D) cell culture models of epithelial tumour t...
International audienceOrganotypic, three dimensional (3D) cell culture models of epithelial tumour t...
Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as prostate ...
International audienceOrganotypic, three dimensional (3D) cell culture models of epithelial tumour t...
<div><p>Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as p...
Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as prostate ...
Organotypic, three dimensional (3D) cell culture models of epithelial tumour types such as prostate ...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery an...
Organoids are three-dimensional (3D) structures that can be derived from stem cells or adult tissue ...
Glandular epithelial cells differentiate into complex multicellular or acinar structures, when em...
At very fine resolution the stochastic nature of gene expression and penetrance leading to phenotypi...