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20 results on '"Ballantyne KN"'

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1. The forensic examination of structural fires in Victoria, Australia: Decision-making processes and impact on judicial outcomes.

3. Communicating forensic science opinion: An examination of expert reporting practices.

4. Corrigendum to "Development of an Italian RM Y-STR haplotype database: Results of the 2013 GEFI collaborative exercise" [Forensic. Sci. Int. Genet. 15 (2015) 56-63].

5. WITHDRAWN: Corrigendum to 'Development of an Italian RM Y-STR haplotype database: results of the 2013 GEFI collaborative exercise' [Forensic. Sci. Int. Genet. 15 (2015) 56-63].

6. Transfer and persistence of non-self DNA on hands over time: Using empirical data to evaluate DNA evidence given activity level propositions.

7. Transfer and persistence of DNA on the hands and the influence of activities performed.

8. Following the transfer of DNA: How does the presence of background DNA affect the transfer and detection of a target source of DNA?

9. DNA transfer by examination tools--a risk for forensic casework?

10. Development of an Italian RM Y-STR haplotype database: Results of the 2013 GEFI collaborative exercise.

11. RNA/DNA co-analysis from human menstrual blood and vaginal secretion stains: results of a fourth and fifth collaborative EDNAP exercise.

12. An investigation of admixture in an Australian Aboriginal Y-chromosome STR database.

13. MtDNA SNP multiplexes for efficient inference of matrilineal genetic ancestry within Oceania.

14. DNA-based eye colour prediction across Europe with the IrisPlex system.

15. A new future of forensic Y-chromosome analysis: rapidly mutating Y-STRs for differentiating male relatives and paternal lineages.

16. Developmental validation of the IrisPlex system: determination of blue and brown iris colour for forensic intelligence.

17. Increased amplification success from forensic samples with locked nucleic acids.

18. IrisPlex: a sensitive DNA tool for accurate prediction of blue and brown eye colour in the absence of ancestry information.

19. Decreasing amplification bias associated with multiple displacement amplification and short tandem repeat genotyping.

20. Molecular crowding increases the amplification success of multiple displacement amplification and short tandem repeat genotyping.

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