AbstractIn the recent years it has become clear that our genome is not randomly organized and its architecture is tightly linked to its function. While genomic studies have given much insight into genome organization, they mostly rely on averaging over large populations of cells, are not compatible with living cells and have limited resolution. For studying genome organization in single living cells, microscopy is indispensable. In addition, the visualization of biological structures helps to understand their function. Up to now, fluorescence microscopy has allowed us to probe the larger scale organization of chromosome territories in the micron length scales, however, the smaller length scales remained invisible due to the diffraction limi...
The spatial organisation of the genome is essential for its functions including gene expression, DNA...
Over the years, our vision of the genome has changed from a linear molecule to that of a complex 3D ...
The human genome is extensively folded into 3-dimensional organization. However, the detailed 3D chr...
AbstractIn the recent years it has become clear that our genome is not randomly organized and its ar...
Recent studies have suggested that chromosomes are hierarchically organized into topologically assoc...
Chromatin fiber organization is essential for gene function in all cell types. Moreover it helps to ...
Recent studies have suggested that chromosomes are hierarchically organized into topologically assoc...
© 2018, The Author(s). To investigate three-dimensional (3D) genome organization in prokaryotic and ...
Recent advances in experimental fluorescence microscopy allow high accuracy determination (resolutio...
The past two decades have seen enormous progress towards understanding eukaryotic genes and genomes....
Over the last decades, technological breakthroughs in super-resolution microscopy have allowed us to...
Chromatin organization play a vital role in gene regulation and genome maintenance in normal biologi...
International audienceUnderstanding how chromatin is folded in the nucleus is fundamental to underst...
International audienceBackground : The 3D organization of the chromatin fiber in cell nuclei plays a...
Recent studies have suggested that chromosomes are hierarchically organized into topologically assoc...
The spatial organisation of the genome is essential for its functions including gene expression, DNA...
Over the years, our vision of the genome has changed from a linear molecule to that of a complex 3D ...
The human genome is extensively folded into 3-dimensional organization. However, the detailed 3D chr...
AbstractIn the recent years it has become clear that our genome is not randomly organized and its ar...
Recent studies have suggested that chromosomes are hierarchically organized into topologically assoc...
Chromatin fiber organization is essential for gene function in all cell types. Moreover it helps to ...
Recent studies have suggested that chromosomes are hierarchically organized into topologically assoc...
© 2018, The Author(s). To investigate three-dimensional (3D) genome organization in prokaryotic and ...
Recent advances in experimental fluorescence microscopy allow high accuracy determination (resolutio...
The past two decades have seen enormous progress towards understanding eukaryotic genes and genomes....
Over the last decades, technological breakthroughs in super-resolution microscopy have allowed us to...
Chromatin organization play a vital role in gene regulation and genome maintenance in normal biologi...
International audienceUnderstanding how chromatin is folded in the nucleus is fundamental to underst...
International audienceBackground : The 3D organization of the chromatin fiber in cell nuclei plays a...
Recent studies have suggested that chromosomes are hierarchically organized into topologically assoc...
The spatial organisation of the genome is essential for its functions including gene expression, DNA...
Over the years, our vision of the genome has changed from a linear molecule to that of a complex 3D ...
The human genome is extensively folded into 3-dimensional organization. However, the detailed 3D chr...