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Evaluation of Forensic DNA Mixture Evidence: Protocol for Evaluation, Interpretation, and Statistical Calculations Using the Combined Probability of Inclusion

NCJ Number
251243
Journal
Bmc Genetics Volume: 17 Dated: August 2016
Author(s)
F. R. Bieber; J. S. Buckleton; B. Budowle; J. M. Butler; M. D. Coble
Date Published
August 2016
Length
15 pages
Annotation
This study identified key elements needed for the interpretation and statistical evaluation of forensic DNA mixtures, with a focus on the Combined Probability of Inclusion/Exclusion (CPI/CPE), which is the most common method for statistical evaluation of DNA mixtures in many parts of the world, including the United States.
Abstract
The evaluation and interpretation of forensic DNA mixture evidence faces greater interpretational challenges due to increasingly complex mixture evidence. These challenges include casework involving low quantity or degraded evidence leading to allele and locus dropout; allele sharing of contributors leading to allele stacking; and differentiation of PCR stutter artifacts from true alleles. There is variation in statistical approaches used to evaluate the strength of the evidence when inclusion of a specific known individual(s) is determined, and the approaches used must be supportable. There are concerns that methods used for interpretation of complex forensic DNA mixtures may not be implemented properly in some casework. Guidance and details of a DNA mixture interpretation protocol is provided for application of the CPI/CPE method in the analysis of more complex forensic DNA mixtures. This description, in turn, should help reduce the variability of interpretation with application of this methodology and thereby improve the quality of DNA mixture interpretation throughout the forensic community. Guidance and details of a DNA mixture interpretation protocol is provided for application of the CPI/CPE method in the analysis of more complex forensic DNA mixtures. This description, in turn, should help reduce the variability of interpretation with application of this methodology and thereby improve the quality of DNA mixture interpretation throughout the forensic community. Similar questions are being raised in a number of U.S. jurisdictions, leading to some confusion about mixture interpretation for current and previous casework. 8 figures, 2 tables, and 50 references