International audienceA computational challenge raised by chromosome conformation capture (3C) experiments is to reconstruct spatial distances and three-dimensional genome structures from observed contacts between genomic loci. We propose a two-step algorithm, ShRec3D, and assess its accuracy using both in silico data and human genome-wide 3C (Hi-C) data. This algorithm avoids convergence issues, accommodates sparse and noisy contact maps, and is orders of magnitude faster than existing methods
International audienceIn recent years, significant technical advances have been made to better obser...
International audienceGenome-wide derivatives of the chromosome conformation capture (3C) technique ...
The development and widespread implementation of chromosome conformation capture (3C) technology has...
International audienceBackground: The recent experimental technique of chromosome conformational cap...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] 3D genome structures are impo...
The three-dimensional (3D) structure of the genome is important for orchestration of gene expression...
Abstract Background The development of chromosomal conformation capture techniques, particularly, th...
Chromosome conformation capture technology has provided a route to studying genome structure through...
The spatial organization of genomes is studied using microscopy- and chromosome conformation capture...
| openaire: EC/H2020/748354/EU//NonnegativeRankThe spatial organization of the genome in the cell nu...
Recent technological advances allow the measurement, in a single Hi-C experiment, of the frequencies...
The three-dimensional (3D) configuration of chromosomes within the eukaryote nucleus is consequentia...
<div><p>The use of 3C-based methods has revealed the importance of the 3D organization of the chroma...
The use of 3C-based methods has revealed the importance of the 3D organization of the chromatin for ...
Background: Reconstructing three-dimensional structures of chromosomes is useful for visualizing the...
International audienceIn recent years, significant technical advances have been made to better obser...
International audienceGenome-wide derivatives of the chromosome conformation capture (3C) technique ...
The development and widespread implementation of chromosome conformation capture (3C) technology has...
International audienceBackground: The recent experimental technique of chromosome conformational cap...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] 3D genome structures are impo...
The three-dimensional (3D) structure of the genome is important for orchestration of gene expression...
Abstract Background The development of chromosomal conformation capture techniques, particularly, th...
Chromosome conformation capture technology has provided a route to studying genome structure through...
The spatial organization of genomes is studied using microscopy- and chromosome conformation capture...
| openaire: EC/H2020/748354/EU//NonnegativeRankThe spatial organization of the genome in the cell nu...
Recent technological advances allow the measurement, in a single Hi-C experiment, of the frequencies...
The three-dimensional (3D) configuration of chromosomes within the eukaryote nucleus is consequentia...
<div><p>The use of 3C-based methods has revealed the importance of the 3D organization of the chroma...
The use of 3C-based methods has revealed the importance of the 3D organization of the chromatin for ...
Background: Reconstructing three-dimensional structures of chromosomes is useful for visualizing the...
International audienceIn recent years, significant technical advances have been made to better obser...
International audienceGenome-wide derivatives of the chromosome conformation capture (3C) technique ...
The development and widespread implementation of chromosome conformation capture (3C) technology has...