PubMed · 1991 · 251 citations · 22 references
The detection of DNA polymorphisms by RFLP analysis is having a major impact on identity testing in forensic science. At present, this approach is the best effort a forensic scientist can make to exclude an individual who has been falsely associated with an evidentiary sample found at a crime scene. When an analysis fails to exclude a suspect as a potential contributor of an evidentiary sample, a means should be provided to assess suitable weight to the putative match. Most important, the statistical analysis should not place undue weight on a genetic profile derived from an unknown sample that is attributed to an accused individual. The method must allow for limitations in conventional agarose-submarine-gel electrophoresis and Southern blotting procedure, limited sample population data, possible subpopulation differences, and potential sampling error. A conservative statistical method was developed based on arbitrarily defined fixed bins. This approach permits classification of continuous allelic data, provides for a simple and portable data-base system, and is unlikely to underestimate the frequency of occurrence of a set of alleles. This will help ensure that undue weight is not placed on a sample attributed to an accused individual.
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Individual-specific ‘fingerprints’ of human DNA
A.J. Jeffreys, Victoria Wilson, Swee Lay Thein · Nature · 1985 · 2.2K citations · Full text
Dna, Human Dna, Engineering +10
Variable Number of Tandem Repeat (VNTR) Markers for Human Gene Mapping
Yusuke Nakamura, Mark Leppert, P. O’Connell et al. · Science · 1987 · 1.7K citations
Forensic application of DNA ‘fingerprints’
Peter Gill, Alec J. Jeffreys, David J. Werrett · Nature · 1985 · 1.2K citations
Analysis of the VNTR locus D1S80 by the PCR followed by high-resolution PAGE.
Bruce Budowle, Ranajit Chakraborty, A M Giusti et al. · PubMed · 1991 · 920 citations