Male infertility due to testicular disorders is a research paper published in The Journal of Clinical Endocrinology & Metabolism (2020). On theSindex it has a DataRank of 0. It has been cited 257 times.
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National Institute for Health Research (NIHR)
Grant: CL-2009-21-004
National Institute for Health Research (NIHR)
Grant: PDF-2017-10-098
Academy of Medical Sciences
Grant: AMS-SGCL5-Jayasena
National Institute for Health Research (NIHR)
Grant: 17/68/01
Medical Research Council
National Institute for Health Research (NIHR)
National Institutes of Health
FWCI
14.43
Citation Percentile
1.0%
Influential Citations
9
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 2 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 3 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 2 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 3 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 4 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 4 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 5 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 5 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 6 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 6 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 7 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 7 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 8 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 8 of Constructing a seventeen-gene signature model for non-obstructive azoospermia based on integrated transcriptome analyses and WGCNA
Additional file 1 of Octanoic acid mitigates busulfan-induced blood-testis barrier damage by alleviating oxidative stress and autophagy
Additional file 1 of Octanoic acid mitigates busulfan-induced blood-testis barrier damage by alleviating oxidative stress and autophagy
Additional file 2 of Octanoic acid mitigates busulfan-induced blood-testis barrier damage by alleviating oxidative stress and autophagy
Additional file 2 of Octanoic acid mitigates busulfan-induced blood-testis barrier damage by alleviating oxidative stress and autophagy
Additional file 1 of Interpretable machine learning models for predicting clinical pregnancies associated with surgical sperm retrieval from testes of different etiologies: a retrospective study
Additional file 1 of Interpretable machine learning models for predicting clinical pregnancies associated with surgical sperm retrieval from testes of different etiologies: a retrospective study