2731 - 2733 |
Forensic analysis McCord B |
2734 - 2741 |
Development of a quantitation approach for total human and male DNA based on real time PCR followed by high resolution melting analysis Ginart S, Caputo M, Alechine E, Corach D, Sala A |
2742 - 2750 |
Automation of DNA and miRNA co-extraction for miRNA-based identification of human body fluids and tissues Kulstein G, Marienfeld R, Miltner E, Wiegand P |
2751 - 2758 |
Forensic discrimination of vaginal epithelia by DNA methylation analysis through pyrosequencing Antunes J, Silva DSBS, Balamurugan K, Duncan G, Alho CS, McCord B |
2759 - 2766 |
A collaborative exercise on DNA methylation based body fluid typing Jung SE, Cho S, Antunes J, Gomes I, Uchimoto ML, Oh YN, Di Giacomo L, Schneider PM, Park MS, van der Meer D, Williams G, McCord B, Ahn HJ, Choi DH, Lee YH, Lee SD, Lee HY |
2767 - 2779 |
Discovery of potential DNA methylation markers for forensic tissue identification using bisulphite pyrosequencing Vidaki A, Giangasparo F, Court DS |
2780 - 2788 |
High-throughput miRNA sequencing and identification of biomarkers for forensically relevant biological fluids Seashols-Williams S, Lewis C, Calloway C, Peace N, Harrison A, Hayes-Nash C, Fleming S, Wu QN, Zehner ZE |
2789 - 2799 |
Development of a rapid 21-plex autosomal STR typing system for forensic applications Yang M, Yin CY, Lv YX, Yang YR, Chen J, Yu ZL, Liu X, Xu MB, Chen F, Wu HJ, Yan JW |
2800 - 2806 |
Potential of 13 linked autosomal short tandem repeat loci in pairwise kinship analysis Liu QL, Xue L, Wu WW, He X, Liu KY, Zhao H, Lu DJ |
2807 - 2816 |
The use of direct analysis in real time (DART) to assess the levels of inhibitors co-extracted with DNA and the associated impact in quantification and amplification Moreno LI, McCord BR |
2817 - 2821 |
Rapid amplification of the RM-Yplex assay Abuidrees AS, Alghafri RH, Hadi S |
2822 - 2831 |
ISO 17025 validation of a next-generation sequencing assay for relationship testing Buchard A, Kampmann ML, Poulsen L, Borsting C, Morling N |
2832 - 2840 |
Massively parallel sequencing of customised forensically informative SNP panels on the MiSeq Mehta B, Daniel R, Phillips C, Doyle S, Elvidge G, McNevin D |
2841 - 2847 |
An assessment of a massively parallel sequencing approach for the identification of individuals from mass graves of the Spanish Civil War (1936-1939) Calafell F, Anglada R, Bonet N, Gonzalez-Ruiz M, Prats-Munoz G, Rasal R, Lalueza-Fox C, Bertranpetit J, Malgosa A, Casals F |
2848 - 2861 |
Validation of Expressmarker mtDNA-SNP60: A mitochondrial SNP kit for forensic application Zhang C, Li H, Zhao XY, Ma K, Nie YC, Liu WB, Jiao HT, Zhou HG |
2862 - 2866 |
Detection of single nucleotide polymorphisms (SNP) in equine coat color genes using SNaPshot (TM) multiplex kit or pluronic F-108 tri-block copolymer and capillary electrophoresis Martin L, Damaso N, Mills D |
2867 - 2874 |
Use of finger-prick dried blood spots (fpDBS) and capillary electrophoresis for carbohydrate deficient transferrin (CDT) screening in forensic toxicology Bertaso A, Sorio D, Vandoros A, De Palo EF, Bortolotti F, Tagliaro F |
2875 - 2881 |
Online sample concentration and analysis of drugs of abuse in human urine by micelle to solvent stacking in capillary zone electrophoresis Aturki Z, Fanali S, Rocco A |
2882 - 2890 |
Separation and identification of antidepressants by acrylate-based monolithic column capillary electrochromatography with UV detection Fu HZ, McCord BR |
2891 - 2895 |
Authenticity screening of seized whiskey samples using electrophoresis microchips coupled with contactless conductivity detection Rezende KCA, Moreira RC, Logrado LPL, Talhavini M, Coltro WKT |
2896 - 2902 |
A new CE with contactless conductivity detection method for the determination of complex cationic compositions: Application to the analysis of pen inks Saiz J, Martin-Alberca C, Mai TD, Garcia-Ruiz C |