Traces (remnants of a past event under scrutiny) provide a great deal of useful information, however many aspects of selection and recovery need further exploration. The increased use of trace DNA has prompted extensive research into recovery rates of DNA profiles from various surfaces and collection methods. While recovery rates inform trace targeting, the utility of a profile reflects its actual contribution to an investigation. Utility is defined as the added value the use of a trace provides to an investigation, which if measured would increase knowledge for trace selection and analysis. This project analysed 47,097 data points relating to trace DNA samples3 collected during 2022 within New South Wales, Australia. Recovery rates of these exhibits were calculated for comparison. Further, a subset of 1206 data points were analysed to ascertain the utility or added value of the trace DNA profiles found, i.e. did the recovered profile add value to the investigation? Results showed that when considering recovery and the added value of an exhibit collectively, trace DNA profiles from steering wheels, weapons, motorcycle or bikes, paper or porous items and plastic items demonstrated comparatively high performance. Items with high recovery rates such as clothing were seen to not add comparatively as much value to investigations. It was noted, however, that when clothing profiles did add value, there was a higher percentage of identifications to persons not previously connected to the investigation (defined as cold links), when compared to other exhibit types. This project developed and tested an integrated approach that considers profile recovery rates, the utility of a profile and the investigative context of traces. Together, these provide a more holistic, context-sensitive view of trace DNA effectiveness, supporting an initial decision-support framework to assist crime-scene officers in trace selection.
What happens if a human body is fed to pigs? Although a popular notion in the entertainment industry, no scientific published literature exists that documents this porcine feeding behaviour, nor, more importantly, what elements of the cadaver may survive such a process. A study conducted in 2020, born out of a casework enquiry, aimed to investigate the following two questions; Would pigs feed on a human body? And, if so, what could be recovered post feeding event? Kangaroo carcasses, porcine carcasses (as human analogues) and 90 human teeth were prepared, and fed, to two domestic pigs, in a variety of feed scenarios. Biological traces including bones, bone fragments, teeth and tooth fragments were recovered both post-digestion from the faeces of the pigs, as well as uneaten from the porcine enclosure. 29% of all human teeth were recovered from the study; 35% of which were recovered post-digestion from the faeces and 65% were recovered uneaten from the porcine enclosure, Of the recovered human teeth, 81% were deemed suitable for identification by a forensic odontologist. From the 447 bones recovered from the enclosure, 94% could be identified to a bone type and species. From all 3338 bone fragments recovered from the faeces of the pigs, none retained any morphological traits that would allow further intelligence to be generated. Overall, it was found that pigs will feed on human analogues and will consume soft tissue, bones, and human teeth. Biological traces in the form of bones, bone fragments, teeth and tooth fragments may be recovered both post-digestion from the faeces, or from the porcine enclosure. The biological traces can be used for identification of an individual via forensic odontology, identification of a species via forensic anthropology and may be suitable for DNA analysis. The outcomes of this study generated new avenues for investigation in the case and may be used to inform future operational resources.
Forensic DNA Phenotyping (FDP) is an established but evolving field of DNA testing. It provides intelligence regarding the appearance (externally visible characteristics), biogeographical ancestry and age of an unknown donor and, although not necessarily a requirement for its casework application, has been previously used as a method of last resort in New South Wales (NSW) Police Force investigations. FDP can further assist law enforcement agencies by re-prioritising an existing pool of suspects or generating a new pool of suspects. In recent years, this capability has become ubiquitous with a wide range of service providers offering their expertise to law enforcement and the public. With the increase in the number of providers offering FDP and its potential to direct and target law enforcement resources, a thorough assessment of the applicability of these services was undertaken. Six service providers of FDP were assessed for suitability for NSW Police Force casework based on prediction accuracy, clarity of reporting, limitations of testing, cost and turnaround times. From these assessment criteria, a service provider for the prediction of biogeographical ancestry, hair and eye colour was deemed suitable for use in NSW Police Force casework. Importantly, the study highlighted the need for standardisation of terminology and reporting in this evolving field, and the requirement for interpretation by biologists with specialist expertise to translate the scientific data to intelligence for police investigators.
Forensic genetic genealogy, a technique leveraging new DNA capabilities and public genetic databases to identify suspects, raises specific considerations in a law enforcement context. Use of this technique requires consideration of its scientific and technical limitations, including the composition of current online datasets, and consideration of its scientific validity. Additionally, forensic genetic genealogy needs to be considered in the relevant legal context to determine the best way in which to make use of its potential to generate investigative leads while minimising its impact on individual privacy. This article presents these issues from an Australian perspective, with the observations and conclusions likely to be applicable to other jurisdictions.