Mitochondrial signal transduction is a research paper published in Cell Metabolism (2022). On theSindex it has a DataRank of 6.1. It has been cited 642 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
0.970
From this paper's citation signal
Citation Network Contribution
5.2
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.
National Institutes of Health
Grant: R35GM119793
National Institute of Mental Health
Grant: R01MH119336
National Institute of Mental Health
Grant: R01MH122706
National Institute of Mental Health
Grant: R21MH123927
National Institute on Aging
Grant: R01AG066828
National Institutes of Health
Grant: 5R35GM119793-04
Mitochondrial Stress Signal Transduction from Organelle to Organism
National Institutes of Health
Grant: 5R01MH122706-02
Mitochondrial regulation of stress reactivity in humans
National Institutes of Health
Grant: 5R21MH123927-02
Psychobiological Regulation of Cell-Free Mitochondrial DNA in Human Saliva
National Institutes of Health
Grant: 5R01AG066828-02
Metabolic regulation of human DNA methylation clocks
National Institutes of Health
Grant: 5R01MH119336-02
Transduction of Psychological Stress into Systematic Inflammation by Mitochondrial DNA Signaling
FWCI
42.53
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Kynurenine in IDO1high cancer cell-derived extracellular vesicles promotes angiogenesis by inducing endothelial mitophagy in ovarian cancer
Additional file 1 of Kynurenine in IDO1high cancer cell-derived extracellular vesicles promotes angiogenesis by inducing endothelial mitophagy in ovarian cancer
Additional file 1 of Lack of detectable sex differences in the mitochondrial function of Caenorhabditis elegans
Additional file 1 of Lack of detectable sex differences in the mitochondrial function of Caenorhabditis elegans
Additional file 1 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 1 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 3 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 3 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 4 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 4 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 6 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 6 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 7 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 7 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 9 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 9 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 10 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 10 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 11 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons
Additional file 11 of Single-mitochondrion sequencing uncovers distinct mutational patterns and heteroplasmy landscape in mouse astrocytes and neurons