Polymorphisms in SLC44A1 are associated with cognitive improvement in children diagnosed with fetal alcohol spectrum disorder: an exploratory study of oral choline supplementation is a research paper published in American Journal of Clinical Nutrition (2021). On theSindex it has a DataRank of 0.930. It has been cited 34 times, with 18 citing works in its 1-hop citation network.
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Repositories this paper deposited data in (declared in PubMed).
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Base Score Contribution
0.533
From this paper's citation signal
Citation Network Contribution
0.397
From 13 citing papers with measurable signal
Ranked by each citer's contribution to N(p) — log1p(Cq) divided by its reference count — out of 18 citers.
NIH
Grant: R01AA011085
NIH
Grant: R01AA022999
NIH
Grant: R01AA024123
NIH
Grant: R21AA019580
NIH
Grant: R33AA019580
NIH
Grant: R01DK115380
NIH
Grant: R01DK056350
NIDDK NIH HHS
Grant: P30 DK056350
NIAAA NIH HHS
Grant: R56 AA024123
National Institutes of Health
Grant: 1R21AA019580-01
Postnatal Choline Supplementation in Children with Prenatal Alcohol Exposure
National Institutes of Health
Grant: 2R01AA011085-27
Craniofacial Morphogenesis in Prenatal Alcohol Exposure
National Institutes of Health
Grant: 7R01AA022999-04
Prenatal alcohol exposure disrupts maternal-fetal iron metabolism in FASD
National Institutes of Health
Grant: 5R01AA024123-05
Choline Supplementation as a Neurodevelopmental Intervention in Fetal Alcohol Spectrum Disorders
UNC
FWCI
3.88
Citation Percentile
0.9%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 1 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 2 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 2 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 3 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 3 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 4 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 4 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 5 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 5 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 6 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus
Additional file 6 of Chromatin accessibility and H3K9me3 landscapes reveal long-term epigenetic effects of fetal-neonatal iron deficiency in rat hippocampus