Revisiting structure/functions of the human epididymis is a research paper published in Andrology (2019). On theSindex it has a DataRank of 3.1. It has been cited 127 times, with 105 citing works in its 1-hop citation network.
Scored on demand from live citation data
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Base Score Contribution
0.728
From this paper's citation signal
Citation Network Contribution
2.3
From 83 citing papers with measurable signal
National Institutes of Health
Grant: HD 040793 and HD069623
Canadian Institutes for Health Research
Grant: NRF 126176
NICHD NIH HHS
Grant: R01 HD069623
NICHD NIH HHS
Grant: R01 HD040793
FWCI
8.55
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Expression of NELL2/NICOL-ROS1 lumicrine signaling-related molecules in the human male reproductive tract
Additional file 1 of Expression of NELL2/NICOL-ROS1 lumicrine signaling-related molecules in the human male reproductive tract
Additional file 12 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 12 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 11 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 7 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 7 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 8 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 10 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 8 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 9 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 9 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 10 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 11 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 6 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 3 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 4 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 5 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 2 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation
Additional file 3 of Single-cell and spatial transcriptomic investigation reveals the spatiotemporal specificity of the beta-defensin gene family during mouse sperm maturation