Methylation status of VTRNA2-1 / nc886 is stable across populations, monozygotic twin pairs and in majority of tissues is a research paper published in Epigenomics (2022). On theSindex it has a DataRank of 0.449. It has been cited 19 times.
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Base Score Contribution
0.449
From this paper's citation signal
Citation Network Contribution
0
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This paper's DataRank is currently driven only by its base citation score. Citation network data was not refreshed for this result.
Learn more about DataRank methodology →Yrjö Jahnssonin Säätiö
Grant: 20197181, 20197212, 20207299, 20217416
Swedish Research Council
Grant: 2015-03255, 2019-01272, 2020-06101
Suomen Akatemia
Grant: 275323, 297908, 309504, 314181, 328685, 330809, 335249, 338395, 341750, 346509, 349708
the Tampere University Hospital Medical Funds
Grant: 9AB059, 9AC077, 9S054, 9X047
H2020 European Research Council
Grant: 742927
Ancestral environmental exposures and offspring health – a multigenerational epidemiologic cohort study across 3 generations
Swedish Research Council
Grant: unidentified
unidentified
European Commission
Grant: 848146
A high-dimensional approach for unwinding immune-metabolic causes of cardiovascular disease-depression multimorbidities
Research Council of Finland
Grant: 328685
Epigenetic pathways to obesity
Research Council of Finland
Grant: 297908
Epigenetic pathways to obesity
Research Council of Finland
Grant: 314181
Risk of metabolic dysfunction in middle aged women: systemic and intracrine oestrogen and microRNAs as mediating factors (EsmiRs)
European Commission
Grant: 755320
A multidisciplinary approach for the stratification of patients with carotid artery disease
Research Council of Finland
Grant: 349708
Improving the early prediction of cardiovascular diseases by developing novel data-driven machine learning and multiomics approaches
European Commission
Grant: 305739
Personalized diagnostics and treatment of high risk coronary artery disease patients.
Research Council of Finland
Grant: 346509
Investigating causal interactions between physical activity and cardiometabolic disease via polygenic risk scores (GenActive)
Research Council of Finland
Grant: 277079
Pregnancy as a window to future health of mothers and children
Research Council of Finland
Grant: 341750
Investigating causal interactions between physical activity and cardiometabolic disease via polygenic risk scores (GenActive)
Research Council of Finland
Grant: 309504
Risk of metabolic dysfunction in middle aged women: systemic and intracrine estrogen and microRNAs as mediating factors (EsmiRs)
Research Council of Finland
Grant: 275323
Female steroid hormone mediated regulation of apoptosis as a mechanism of muscle aging and sarcopenia (ERMA)
Laboratoriolääketieteen edistämissäätiö sr
Päivikki and Sakari Sohlberg foundation
Pirkanmaa Regional Fund of Finnish Cultural Foundation
Signe ja Ane Gyllenbergin Säätiö
the Sigrid Juselius Foundation
Juho Vainio Foundation
Karolinska Institutet Strategic Research Program in Epidemiology
FWCI
3.59
Citation Percentile
0.9%
Influential Citations
1
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 2 of Systemic interindividual DNA methylation variants in cattle share major hallmarks with those in humans
Additional file 2 of Systemic interindividual DNA methylation variants in cattle share major hallmarks with those in humans
Additional file 3 of Systemic interindividual DNA methylation variants in cattle share major hallmarks with those in humans
Additional file 3 of Systemic interindividual DNA methylation variants in cattle share major hallmarks with those in humans
Additional file 1 of Systemic interindividual DNA methylation variants in cattle share major hallmarks with those in humans
Additional file 1 of Systemic interindividual DNA methylation variants in cattle share major hallmarks with those in humans
Methylation status of VTRNA2-1/nc886 is stable across populations, monozygotic twin pairs and in majority of tissues. Supplementary data
Methylation status of VTRNA2-1/nc886 is stable across populations, monozygotic twin pairs and in majority of tissues. Supplementary data