scholarly article | Q13442814 |
P2093 | author name string | Keiji Tamaki | |
Chie Morimoto | |||
Sho Manabe | |||
Shuntaro Fujimoto | |||
Yuya Hamano | |||
P2860 | cites work | Epigenetic predictor of age | Q21135613 |
Aging of blood can be tracked by DNA methylation changes at just three CpG sites | Q21183983 | ||
DNA methylation age of human tissues and cell types | Q21183994 | ||
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Development of a methylation marker set for forensic age estimation using analysis of public methylation data and the Agena Bioscience EpiTYPER system | Q30489495 | ||
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Identification and evaluation of age-correlated DNA methylation markers for forensic use. | Q50682958 | ||
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Reversal of PCR bias for improved sensitivity of the DNA methylation melting curve assay. | Q54580076 | ||
Methylation of ELOVL2 gene as a new epigenetic marker of age | Q56979743 | ||
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Estimating human age from T-cell DNA rearrangements | Q57397550 | ||
Telomere Length as an Indicator of Biological Aging | Q59275532 | ||
Development of a forensically useful age prediction method based on DNA methylation analysis | Q59697370 | ||
Buccal swabs but not mouthwash samples can be used to obtain pretransplant DNA fingerprints from recipients of allogeneic bone marrow transplants | Q73540161 | ||
Epigenetic age signatures in the forensically relevant body fluid of semen: a preliminary study | Q85338057 | ||
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DNA methylation-based forensic age prediction using artificial neural networks and next generation sequencing | Q33567569 | ||
Differential DNA methylation with age displays both common and dynamic features across human tissues that are influenced by CpG landscape | Q33742677 | ||
Age estimation: the state of the art in relation to the specific demands of forensic practise. | Q33956710 | ||
A refined, rapid and reproducible high resolution melt (HRM)-based method suitable for quantification of global LINE-1 repetitive element methylation | Q34113164 | ||
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Cigarette smoking reduces DNA methylation levels at multiple genomic loci but the effect is partially reversible upon cessation | Q36216466 | ||
A novel strategy for forensic age prediction by DNA methylation and support vector regression model | Q36346444 | ||
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DNA methylation-based age prediction from saliva: High age predictability by combination of 7 CpG markers | Q38831916 | ||
The EpiTect Methyl qPCR Assay as novel age estimation method in forensic biology | Q38876880 | ||
Examination of DNA methylation status of the ELOVL2 marker may be useful for human age prediction in forensic science | Q39089554 | ||
Evaluation of DNA methylation markers and their potential to predict human aging. | Q40903314 | ||
Detection and measurement of PCR bias in quantitative methylation analysis of bisulphite-treated DNA. | Q41086676 | ||
Age estimation by amino acid racemization in human teeth | Q43012932 | ||
Identification of body fluid-specific DNA methylation markers for use in forensic science | Q43776384 | ||
Developing a DNA methylation assay for human age prediction in blood and bloodstain | Q43955967 | ||
Discrimination of tiger using a novel high resolution melting (HRM) and multiplex SNP-specific HRM (MSS-HRM) technique | Q46860808 | ||
Forensic age prediction for dead or living samples by use of methylation-sensitive high resolution melting | Q47285841 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | saliva | Q155925 |
cigarette butt | Q199349 | ||
P304 | page(s) | 10444 | |
P577 | publication date | 2017-09-05 | |
P1433 | published in | Scientific Reports | Q2261792 |
P1476 | title | Forensic age prediction for saliva samples using methylation-sensitive high resolution melting: exploratory application for cigarette butts | |
P478 | volume | 7 |
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