Forensic trace DNA: a review

Следовая ДНК в судебной экспертизе: обзор
R.A. van Oorschot, Kaye N. Ballantyne, R.J. Mitchell
2010-01-01

DNA extractionDNA profilingforensic DNA analysisforensic trace DNAprofile interpretation
DNA analysis is frequently used to acquire information from biological material to aid enquiries associated with criminal offences, disaster victim identification and missing persons investigations. As the relevance and value of DNA profiling to forensic investigations has increased, so too has the desire to generate this information from smaller amounts of DNA. Trace DNA samples may be defined as any sample which falls below recommended thresholds at any stage of the analysis, from sample detection through to profile interpretation, and can not be defined by a precise picogram amount. Here we review aspects associated with the collection, DNA extraction, amplification, profiling and interpretation of trace DNA samples. Contamination and transfer issues are also briefly discussed within the context of trace DNA analysis. Whilst several methodological changes have facilitated profiling from trace samples in recent years it is also clear that many opportunities exist for further improvements.
1
Further methodological improvements are needed to enhance the analysis and interpretation of trace DNA samples.
2
Methodological advances have enabled DNA profiling from progressively smaller trace samples in recent years.
3
The review covers collection, extraction, amplification, profiling, interpretation, contamination, and transfer issues relevant to trace DNA analysis.
4
Trace DNA analysis remains vulnerable to contamination and transfer, which must be considered during forensic interpretation.
5
Trace DNA encompasses samples falling below recommended thresholds at any analytical stage, rather than samples defined by a fixed DNA quantity.

forensic trace DNA samples

the collection, extraction, amplification, profiling, interpretation, contamination, and transfer of trace DNA samples in forensic investigations

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2010-01-01
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Authors
R.A. van Oorschot
Kaye N. Ballantyne
R.J. Mitchell
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