Single-Cell RNA Sequencing of Human, Macaque, and Mouse Testes Uncovers Conserved and Divergent Features of Mammalian Spermatogenesis is a research paper published in Developmental Cell (2020). On theSindex it has a DataRank of 0. It has been cited 292 times.
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National Institutes of Health
Grant: 1R21HD090371-01A1
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FWCI
32.20
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 3 of Epigenetic landscape of testis specific histone H2B variant and its influence on sperm function
Additional file 3 of Epigenetic landscape of testis specific histone H2B variant and its influence on sperm function
Additional file 1 of Genome-wide annotation of protein-coding genes in pig
Additional file 1 of Genome-wide annotation of protein-coding genes in pig
Additional file 1 of Analysis of Notch1 signaling in mammalian sperm development
Additional file 1 of Analysis of Notch1 signaling in mammalian sperm development
Additional file 2 of Analysis of Notch1 signaling in mammalian sperm development
Additional file 2 of Analysis of Notch1 signaling in mammalian sperm development
Additional file 1 of Integrated analysis of the ubiquitination mechanism reveals the specific signatures of tissue and cancer
Additional file 1 of Integrated analysis of the ubiquitination mechanism reveals the specific signatures of tissue and cancer
Additional file 1 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions
Additional file 1 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions
Additional file 2 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions
Additional file 2 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions
Additional file 9 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions
Additional file 9 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions
Additional file 1 of Mouse testicular macrophages can independently produce testosterone and are regulated by Cebpb
Additional file 1 of Mouse testicular macrophages can independently produce testosterone and are regulated by Cebpb
Additional file 5 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions
Additional file 8 of Single-cell transcriptome analyses reveal critical regulators of spermatogonial stem cell fate transitions