Literature DB >> 21863732

[Evaluation of visualization of biological stains with the use of alternative light source (ALS) for the purpose of genetic identification. Part I. Blood and saliva stains analysis].

Michał Szeremeta1, Witold Pepiński, Anna Niemcunowicz-Janica, Małgorzata Skawrońska, Adam Sackiewicz, Iwona Ptaszyńska-Sarosiek, Magdalena Okłota.   

Abstract

The objective of the investigation was evaluation of visualization of human blood and saliva stains with the use of alternative light source for the purpose of genetic identification. Experimental bloodstains on the bright base were the most clearly seen in the natural light and white light, up to blood dilution of 1:600. Complete typeability of AmpFISTR SGM Plus kit profiles was obtained from bloodstains at dilution 1:1500. Partial AmpFISTR SGM Plus kit profiles were typed from bloodstains at dilutions 1:1750 and 1:2000. Experimental saliva stains on the light-colored base were completely invisible in the natural light and white light, while they were visualized at wavelength range 300-415 nm through yellow goggles, and at wavelength range 300-455 nm through orange goggles at saliva dilution 1: 600. Complete typeability of AmpFISTR SGM Plus kit loci was obtained from saliva stains at dilution 1:1750. Partial AmpFISTR SGM Plus kit profiles were typed from saliva stains at dilution 1:2000. The wavelength of 455 nm and orange goggles were the optimal set for visualization of bloodstains on various, noncontrasting materials. Other useful wavelength/combinations of goggles were CSS light/red goggles. In case of saliva, the most useful general condition for visualization of stains on various, non-contrasting materials was with the wavelength set to 300-415 nm, while wearing yellow goggles. Other useful combinations of wavelength/goggles were 300-455 nm/orange or red goggles, and also CSS light/orange or red goggles.

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Year:  2010        PMID: 21863732

Source DB:  PubMed          Journal:  Arch Med Sadowej Kryminol        ISSN: 0324-8267


  2 in total

1.  Searching for biological traces on different materials using a forensic light source and infrared photography.

Authors:  V Sterzik; S Panzer; M Apfelbacher; M Bohnert
Journal:  Int J Legal Med       Date:  2015-10-26       Impact factor: 2.686

2.  Visualizing old biological traces on different materials without using chemicals.

Authors:  V Sterzik; P Hinderberger; S Panzer; M Bohnert
Journal:  Int J Legal Med       Date:  2017-09-05       Impact factor: 2.686

  2 in total

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