Funder: European Molecular Biology Laboratory; Id: http://dx.doi.org/10.13039/100013060DECIPHER (https://www.deciphergenomics.org) is a free web platform for sharing anonymised phenotype-linked variant data from rare disease patients. Its dynamic interpretation interfaces contextualise genomic and phenotypic data to enable more informed variant interpretation, incorporating international standards for variant classification. DECIPHER supports almost all types of germline and mosaic variation in the nuclear and mitochondrial genome: sequence variants, short tandem repeats, copy-number variants and large structural variants. Patient phenotypes are deposited using Human Phenotype Ontology (HPO) terms, supplemented by quantitative data, which i...
This is the final version. Available on open access from Elsevier via the DOI in this recordMore tha...
Abstract Background Rare diseases collectively affect...
Improving our understanding of rare disease and developing new therapies can only succeed through gl...
Patients with developmental disorders often harbour sub-microscopic deletions or duplications that l...
Rare disease diagnostics and disease gene discovery have been revolutionized by whole-exome and geno...
Collectively, rare genetic disorders affect a substantial portion of the world’s population. In most...
Copy number variations (CNVs) are genomic structural variations (deletions, duplications, or translo...
Thanks to the affordability of DNA sequencing, hundreds of thousands of individuals with rare disord...
Many patients suffering from developmental disorders harbor submicroscopic deletions or duplications...
BACKGROUND: Human genome sequencing has transformed our understanding of genomic variation and its r...
Copy number variations (CNVs) are genomic structural variations (deletions, duplications, or translo...
Background: Genome-wide data are increasingly important in the clinical evaluation of human disease....
Despite thousands of genetic loci identified to date, a large proportion of genetic variation predis...
SummaryBackgroundHuman genome sequencing has transformed our understanding of genomic variation and ...
Many patients suffering from developmental disorders have submicroscopic deletions or duplications a...
This is the final version. Available on open access from Elsevier via the DOI in this recordMore tha...
Abstract Background Rare diseases collectively affect...
Improving our understanding of rare disease and developing new therapies can only succeed through gl...
Patients with developmental disorders often harbour sub-microscopic deletions or duplications that l...
Rare disease diagnostics and disease gene discovery have been revolutionized by whole-exome and geno...
Collectively, rare genetic disorders affect a substantial portion of the world’s population. In most...
Copy number variations (CNVs) are genomic structural variations (deletions, duplications, or translo...
Thanks to the affordability of DNA sequencing, hundreds of thousands of individuals with rare disord...
Many patients suffering from developmental disorders harbor submicroscopic deletions or duplications...
BACKGROUND: Human genome sequencing has transformed our understanding of genomic variation and its r...
Copy number variations (CNVs) are genomic structural variations (deletions, duplications, or translo...
Background: Genome-wide data are increasingly important in the clinical evaluation of human disease....
Despite thousands of genetic loci identified to date, a large proportion of genetic variation predis...
SummaryBackgroundHuman genome sequencing has transformed our understanding of genomic variation and ...
Many patients suffering from developmental disorders have submicroscopic deletions or duplications a...
This is the final version. Available on open access from Elsevier via the DOI in this recordMore tha...
Abstract Background Rare diseases collectively affect...
Improving our understanding of rare disease and developing new therapies can only succeed through gl...