International audienceAutomated segmentation of multi-part anatomical objects in images is a challenging task. In this paper, we propose a similarity-based appearance-prior to fit a compartmental geometric atlas of the mouse brain in gene expression images. A subdivision mesh which is used to model the geometry is deformed using a Markov random field (MRF) framework. The proposed appearance-prior is computed as a function of the similarity between local patches at corresponding atlas locations from two images. In addition, we introduce a similarity-saliency score to select the mesh points that are relevant for the computation of the proposed prior. Our method significantly improves the accuracy of the atlas fitting, especially in the region...
To better understand the development and function of the mammalian brain, researchers have begun to ...
In order to analyse body composition of MRI (Magnetic Resonance Imaging) volumes, atlas-based segmen...
Abstract. To better understand the development and function of the mammalian brain, researchers have...
International audienceAutomated segmentation of multi-part anatomical objects in images is a challen...
International audienceAn accurate labeling of a multi-part, complex anatomical structure (e.g., brai...
The quantification and comparison of gene expression data across images plays a key role in understa...
Abstract — Associating specific gene activity with functional locations in the brain results in a gr...
In the development of an automatic image mapping system for mouse brain images, we focus on obtainin...
Abstract. Associating specific gene activity with functional locations in the brain results in a gre...
International audienceAnalysis of gene expression patterns in brain images obtained from high-throug...
The acquisition of high quality maps of gene expression in the rodent brain is of fundamental import...
To better understand the development and function of the mammalian brain, researchers have begun to ...
In order to analyse body composition of MRI (Magnetic Resonance Imaging) volumes, atlas-based segmen...
Abstract. To better understand the development and function of the mammalian brain, researchers have...
International audienceAutomated segmentation of multi-part anatomical objects in images is a challen...
International audienceAn accurate labeling of a multi-part, complex anatomical structure (e.g., brai...
The quantification and comparison of gene expression data across images plays a key role in understa...
Abstract — Associating specific gene activity with functional locations in the brain results in a gr...
In the development of an automatic image mapping system for mouse brain images, we focus on obtainin...
Abstract. Associating specific gene activity with functional locations in the brain results in a gre...
International audienceAnalysis of gene expression patterns in brain images obtained from high-throug...
The acquisition of high quality maps of gene expression in the rodent brain is of fundamental import...
To better understand the development and function of the mammalian brain, researchers have begun to ...
In order to analyse body composition of MRI (Magnetic Resonance Imaging) volumes, atlas-based segmen...
Abstract. To better understand the development and function of the mammalian brain, researchers have...