Ultrastructural Details of Mammalian Chromosome Architecture is a research paper published in Molecular Cell (2020). On theSindex it has a DataRank of 8.7. It has been cited 667 times, with 200 citing works in its 1-hop citation network.
Scored on demand from live citation data
Linked data & code
DataRank reads this dataset's downstream impact straight off the citation graph — no black box, no proprietary weighting. How is this computed?
FAIR checklist signals are shown for context only and do not affect DataRank scoring.
We only score data papers we can read in full — never from an abstract alone.
Base Score Contribution
0.976
From this paper's citation signal
Citation Network Contribution
7.8
From 200 citing papers with measurable signal
Ranked by each citer's contribution to N(p) — log1p(Cq) divided by its reference count — out of 200 citers.
NIDDK NIH HHS
Grant: U54 DK107980
NIGMS NIH HHS
Grant: R01 GM114190
National Institutes of Health
Grant: 3U54DK107980-04S1
Center for 3D Structure and Physics of the Genome
National Institutes of Health
Howard Hughes Medical Institute
Human Frontier Science Program
Howard Hughes Medical Institute
FWCI
27.89
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 1 of Mustache: multi-scale detection of chromatin loops from Hi-C and Micro-C maps using scale-space representation
Additional file 1 of Mustache: multi-scale detection of chromatin loops from Hi-C and Micro-C maps using scale-space representation
Additional file 2 of Mustache: multi-scale detection of chromatin loops from Hi-C and Micro-C maps using scale-space representation
Additional file 2 of Mustache: multi-scale detection of chromatin loops from Hi-C and Micro-C maps using scale-space representation
Additional file 2 of Characterizing chromatin interactions of regulatory elements and nucleosome positions, using Hi-C, Micro-C, and promoter capture Micro-C
Additional file 2 of Characterizing chromatin interactions of regulatory elements and nucleosome positions, using Hi-C, Micro-C, and promoter capture Micro-C
Additional file 1 of HiCognition: a visual exploration and hypothesis testing tool for 3D genomics
Additional file 1 of HiCognition: a visual exploration and hypothesis testing tool for 3D genomics
Additional file 2 of HiCognition: a visual exploration and hypothesis testing tool for 3D genomics
Additional file 2 of HiCognition: a visual exploration and hypothesis testing tool for 3D genomics
Additional file 1 of An intronic LINE-1 regulates IFNAR1 expression in human immune cells
Additional file 1 of An intronic LINE-1 regulates IFNAR1 expression in human immune cells
Additional file 1 of ChIPr: accurate prediction of cohesin-mediated 3D genome organization from 2D chromatin features
Additional file 1 of ChIPr: accurate prediction of cohesin-mediated 3D genome organization from 2D chromatin features
Additional file 1 of β-actin mediated H3K27ac changes demonstrate the link between compartment switching and enhancer-dependent transcriptional regulation
Additional file 1 of β-actin mediated H3K27ac changes demonstrate the link between compartment switching and enhancer-dependent transcriptional regulation
Additional file 3 of β-actin mediated H3K27ac changes demonstrate the link between compartment switching and enhancer-dependent transcriptional regulation
Additional file 3 of β-actin mediated H3K27ac changes demonstrate the link between compartment switching and enhancer-dependent transcriptional regulation
Additional file 5 of ChIPr: accurate prediction of cohesin-mediated 3D genome organization from 2D chromatin features
Additional file 5 of ChIPr: accurate prediction of cohesin-mediated 3D genome organization from 2D chromatin features