Cellular diversity of the regenerating caudal fin is a research paper published in Science Advances (2020). On theSindex it has a DataRank of 0. It has been cited 75 times.
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National Institutes of Health
Grant: R01HG007175
National Institutes of Health
Grant: U24ES026699
American Cancer Society
Grant: RSG-14-049-01-DMC
National Institutes of Health
Grant: U41HG010972
National Institutes of Health
Grant: U01HG009391
NIDA NIH HHS
Grant: R25 DA027995
NCI NIH HHS
Grant: P30 CA091842
NCI NIH HHS
Grant: U01 CA200060
National Institutes of Health
Grant: 5R01HG007175-02
DECODING THE IMPACT OF TRANSPOSABLE ELEMENTS ON GENE REGULATION
National Institutes of Health
Grant: 5U41HG010972-02
The WashU-UCSC-EBI Human Genome Reference Center
National Institutes of Health
Grant: 5U01HG009391-03
Connecting transposable elements and regulatory innovation using ENCODE data
National Institutes of Health
Grant: 1F99HG013039-01
Leveraging natural and engineered genetic barcodes from single cell RNA sequencing to investigate cellular evolution, clonal expansion, and associations between cellular genotypes and phenotypes
National Institutes of Health
Grant: 5U24ES026699-04
THE WASHU TARGET ENVIRONMENTAL EPIGENOMICS DATA COORDINATION CENTER
FWCI
2.61
Citation Percentile
0.9%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of CUT&Tag applied to zebrafish adult tail fins reveals a return of embryonic H3K4me3 patterns during regeneration
Additional file 1 of CUT&Tag applied to zebrafish adult tail fins reveals a return of embryonic H3K4me3 patterns during regeneration
Additional file 2 of CUT&Tag applied to zebrafish adult tail fins reveals a return of embryonic H3K4me3 patterns during regeneration
Additional file 2 of CUT&Tag applied to zebrafish adult tail fins reveals a return of embryonic H3K4me3 patterns during regeneration