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310 result(s) for "Forensic sciences in motion pictures"
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Forensic Science in Contemporary American Popular Culture
This book identifies, traces, and interrogates contemporary American culture's fascination with forensic science. It looks to the many different sites, genres, and media where the forensic has become a cultural commonplace. It turns firstly to the most visible spaces where forensic science has captured the collective imagination: crime films and television programs. In contemporary screen culture, crime is increasingly framed as an area of scientific inquiry and, even more frequently, as an area of concern for female experts. One of the central concerns of this book is the gendered nature of expert scientific knowledge, as embodied by the ubiquitous character of the female investigator. Steenberg argues that our fascination with the forensic depends on our equal fascination with (and suspicion of) women's bodies-with the bodies of the women investigating and with the bodies of the mostly female victims under investigation.
The Rise & Fall of the Colosseum
The Colosseum: the jewel of Ancient Rome. It wowed crowds with extraordinary battles. It pushed the boundaries of technology and exhibited Rome’s wealth and power. Leaders spread the Colosseum’s design throughout the Empire, and it helped them conquer the ancient world. But just as the structure embodied Rome’s power, so too did it contribute to the Empire’s downfall. From Secrets of the Dead.
Biometric face phylogeny tree reconstruction using optimal texture extraction model
In recent years, the increasing prevalence of digital imagery has heightened the need for robust methods to authenticate and analyze images. The proposed framework focuses on identifying image duplications and applies advanced image processing techniques to boost the accuracy and efficiency of reconstructing phylogeny trees. Selected for its cultural diversity, the Indian Movie Face collection offers a unique set of challenges and opportunities for analysis. Image phylogeny, which involves tracing the evolutionary relationships among multiple images, is becoming increasingly vital in digital forensics and image analysis. Various transformation methods, including Cosine, Gaussian, Wavelet, and Fourier transforms, are utilized to enhance the framework. The performance of this framework is benchmarked against existing methods using standard metrics such as accuracy, precision, recall, and the F1 score. Results highlight the framework’s effectiveness, particularly in addressing the unique challenges presented by the Indian Movie Face and Labelled Faces in the Wild collections.
Cost-Effective Next Generation Sequencing-Based STR Typing with Improved Analysis of Minor, Degraded and Inhibitor-Containing DNA Samples
Forensic DNA profiles are established by multiplex PCR amplification of a set of highly variable short tandem repeat (STR) loci followed by capillary electrophoresis (CE) as a means to assign alleles to PCR products of differential length. Recently, CE analysis of STR amplicons has been supplemented by high-throughput next generation sequencing (NGS) techniques that are able to detect isoalleles bearing sequence polymorphisms and allow for an improved analysis of degraded DNA. Several such assays have been commercialised and validated for forensic applications. However, these systems are cost-effective only when applied to high numbers of samples. We report here an alternative, cost-efficient shallow-sequence output NGS assay called maSTR assay that, in conjunction with a dedicated bioinformatics pipeline called SNiPSTR, can be implemented with standard NGS instrumentation. In a back-to-back comparison with a CE-based, commercial forensic STR kit, we find that for samples with low DNA content, with mixed DNA from different individuals, or containing PCR inhibitors, the maSTR assay performs equally well, and with degraded DNA is superior to CE-based analysis. Thus, the maSTR assay is a simple, robust and cost-efficient NGS-based STR typing method applicable for human identification in forensic and biomedical contexts.
The (Mis)appropriation of Biological Anthropology in Race Science and the Implications for Forensic Anthropology
Most biological anthropologists acknowledge that phenotypic human variation is distinct from human race. However, there is the potential for the research on human variation to be (mis)interpreted by the public as a reification of biological races. To explore this possible misuse, this study is a content analysis of articles (n = 1146) in the prominent race science journals Mankind Quarterly; The Journal of Social, Political, and Economic Studies; and The Occidental Quarterly. The goal is to investigate how race science employs research in biological and forensic anthropology to justify arguments. Articles were evaluated according to country affiliation, discipline, data sets, racial/ethnic terminology, position on racial hierarchy, position on racial segregation and eugenics, focus of study, views of scientific community, and the average power index (PI). Additionally, specific examples of (mis)appropriation are highlighted. Though the primary discipline represented in these publications is psychology, biological anthropology maintains a presence. Skeletal and dental traits, genetics, and paleoanthropological data are used to argue for biological racial differences and taxonomic distinctions. The research of forensic ancestry estimation was regularly used to legitimize the concept of biological race. While the PIs of the articles are low, they are present on the internet and circulate within social media. The continued use of biological anthropology to reinforce racial essentialism should force practitioners to question the ethical implications of their research. Finally, we provide discussion regarding shiftsin methodology and terminology to address how biological and forensic anthropologists can rectify the damage this research may directly and indirectly cause.
The effect of relative humidity on the effectiveness of the cyanoacrylate fuming process for fingermark development and on the microstructure of the developed marks
Research has been conducted to establish the effect that changes in relative humidity have on both the effectiveness of the cyanoacrylate fuming technique and the microstructures formed by the polymerisation reaction during the development of the marks. The study investigated ‘natural’ fingermarks and deliberately groomed eccrine and sebaceous marks, all exposed to relative humidity levels in the range 60–100%. It was found that the optimum level of relative humidity for the development of the most high quality marks is approximately 80%, in accord with current recommendations for operational implementation which are based on previous unpublished work. The eccrine constituents of the fingerprints are most influenced by humidity changes. Three humidity regimes were identified, each giving different polycyanoacrylate microstructures. Humidity levels of 60% give flat, film-like structures whereas in the range 70–90% the characteristic noodle-like structure is formed. At higher humidities, thin, flat thread-like growth is observed with some ‘collapsed sphere’ structures observed close to pores and significant background development. The noodle-like structures are thought to scatter more light and retain fluorescent dye better than the structures formed at other humidity levels. Sebaceous marks produce a very different polymer microstructure, resembling a flat film with some fine nodular structures.
A comparison of multi-metal deposition processes utilising gold nanoparticles and an evaluation of their application to ‘low yield’ surfaces for finger mark development
This paper reports a comparison of the effectiveness and practicality of using different multi-metal deposition processes for finger mark development. The work investigates whether modifications can be made to improve the performance of the existing process published by Schnetz. Secondly, we compare the ability of different multi-metal deposition processes to develop finger marks on a range of surfaces with that of other currently used development processes. All published multi-metal deposition processes utilise an initial stage of colloidal gold deposition followed by enhancement of the marks with using a physical developer. All possible combinations of colloidal gold and physical developer stages were tested. The method proposed by Schnetz was shown to be the most effective process, however a modification which reduced the pH of the enhancement solution was revealed to provide the best combination of effectiveness and practicality. In trials comparing the modified formulation with vacuum metal deposition, superglue and powder suspensions on surfaces which typically give low finger mark yields (cling film, plasticised vinyl, leather and masking tape), the modified method produced significantly better results over existing processes for cling film and plasticised vinyl. The modified formulation was found to be ineffective on both masking tape and leather. It is recommended that further tests be carried out on the modified multi-metal deposition formulation to establish whether it could be introduced for operational work on cling film material in particular.
A novel microassay for measuring blood alcohol concentration using a disposable biosensor strip
A novel disposable amperometric biosensor strip for determination of blood alcohol concentration (BAC) with small volume of sample has been constructed using screen-printed electrodes (SPE), nanocomposite film and alcohol dehydrogenase (ADH). Firstly, the GNPs–MWCNT–Nafion nanocomposite film modified on a working electrode was made of Nafion-117, multi-wall carbon nanotubes (MWCNT) and gold nanoparticles (GNPs). After that Meldola's blue (MB) acted as an electron transfer mediator and the mixed solution of ADH, nicotinamide adenine dinucleotide (NAD +) were modified in order on the nanocomposite film. At last, a hydrophilic membrane which had an eyehole in center was placed at the outermost of the working area to make a reaction tank of 5 μL, then the hydrophilic membrane/ADH–NAD +/GNPs–MWCNT–MB–Nafion/SPE was prepared. The detection of BAC can be accomplished with 5 μL of blood sample obtained precisely by siphonage. Optimum conditions of the biosensor were experimentally determined by varying several important parameters: working potential, solution pH value, environmental temperature and interferences. Experimental results indicated that the biosensor possessed a good accuracy and stability, the linear response range was 2.0 × 10 −4 to 25 × 10 −3 mol/L and the detection limit of the biosensor was 5.0 × 10 −5 mol/L (S/N = 3). In the measurement of blood samples, the proposed biosensor had excellent detection performance for measuring BAC and showed a good correlation with gas chromatography. The prepared biosensor strip can be valid for the analysis of BAC.
An efficient strategy to detect latent fingermarks on metallic surfaces
The aim of this work is to use metal sputtering for the development of latent fingermarks on metallic surfaces by taking advantage of the prints’ topography. In order to promote the preferential deposition onto fingerprints’ ridges the deposition parameters should be optimized. After a previous selection, copper and gold thin films were deposited by magnetron sputtering onto stainless steel substrates where fingermarks were intentionally placed. After optimizing the deposition parameters, the influence of the fingermarks’ age was studied. The quality of the developed fingermarks was evaluated visually and through optical and scanning electron microscopy. The morphology of the copper and gold thin films was examined by high resolution scanning electron microscopy. The preferential magnetron sputtering deposition of copper and gold thin films, 20–30nm thick, allows latent fingermarks to be successfully developed. The gold films are more promising, especially for detecting non-fresh fingermarks and for conserving the developed marks. It was possible to detect the contours of the ridges and localize minutiae features in a one-month aged impression developed by gold deposition. These films present discontinuous surface and columnar cross-sections, while copper thin films have a featureless morphology.