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The advent of large-scale, population genetic databases (PGDs) in several countries around the world marks a significant development in human DNA banking and genetic research. The European countries that have led the way in the development of PGDs are Iceland, Sweden, Estonia and the U.K. In legal terms, the emergence of PGDs has been far from straightforward as such projects pose a range of difficult and complex issues for the law to address. This article canvasses the current law in Iceland, Estonia, Sweden and the U.K. on four fundamental issues of principle pertaining to PGDs, in order to illustrate the difficulties that have emerged around PGDs, highlight key areas of legal concern, and shed light on possible ways forward. It compares and contrasts the differing legal positions and lawmakers' responses to date in these four European countries that have established PGDs or are seeking to do so. The four fundamental issues examined are: (1) consent, especially for secondary research purposes; (2) ownership of biological samples, data and databases; (3) the rights of certain third parties to gain access to, and to use, PGD biological samples and data; and (4) benefit sharing, including the provision of feedback and genetic counselling to participants. This analysis may offer some guidance for policymakers in other jurisdictions where PGDs have been proposed or are being established.  相似文献   
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Two women were found dead inside a residence. Choke causes death in one that had been naked in a bed and contusion injury in another that was found on a sofa. Were received samples of vaginal and anal swabs of the two victims of homicide with suspected of having suffered sexual violence. References also received samples of two victims and a suspect. We performed genetic analysis for identification of samples from the meeting of any possibility of overlap between patterns and profiles of sequences of deoxyribonucleic acid (DNA) based on genetic relationship between those involved. The reference samples were subjected to the procedure of extraction of nuclear DNA by Chelex method and the swabs samples by differential extraction. For all the samples were performed for amplification of STRs loci and autosomal STRs of chromosome Y. The profiles of DNA sequences were obtained by the Polymerase Chain Reaction (PCR), using sequences starting with marked substances emitting fluorescence detected by reading the optical laser in 3100 Avant automatic sequencer from Applied Biosystems. The information of consecutive loci of Short Repeats or STRs of autosomal chromosomes and the Y chromosome was obtained using the systems or products sold in multilocus, methodologies recommended by the supplier and valid for analysis of DNA. We used the multilocus Identifiler and YFiler system of Applied Biosystems to the amplification of samples. The validation of results has shown a genetic profile in male anal secretion of the victims with a complete coincidence with the suspect.  相似文献   
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Latent fingerprints were successfully visualized using fluorescence lifetime imaging (FLIM) on paper which emits strong fluorescence with a lifetime close to that of fingerprints and thus from which it is difficult for time-resolved spectroscopy to visualize fingerprints. Latent fingerprint samples on paper were excited using a 450 nm or 532 nm nanosecond pulsed-laser, and time-resolved fluorescence images were obtained at a delay time of 6–16 ns in intervals of 1 ns, to the excitation pulse. The excitation beam was expanded using a lens, and the fluorescence from the fingerprints was captured using an intensified CCD camera. Because of the large fluorescence intensity of the background paper of approximately two to four orders of magnitude larger than that of the fingerprint, the fingerprint was not visualized on each fluorescence image by time-resolved spectroscopy. However, the fingerprint was visualized in a FLIM image constructed using a series of the fluorescence images for the case with the fluorescence intensity of the background paper being four orders of magnitude larger than that of the fingerprint. The difference in fluorescence lifetime in the FLIM image of the visualized fingerprint and background paper was in the order of 0.1 ns, which was an order of magnitude smaller than the inherent fluorescence lifetime of a few nanoseconds for the fingerprints and paper. It was demonstrated that, at a background fluorescence intensity with a certain order of magnitude larger than that of fingerprints, FLIM has the potential to visualize latent fingerprints which cannot be visualized by time-resolved spectroscopy.  相似文献   
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An event-related potential (ERP) was recorded, using photographs as stimuli, in 12 subjects for attended, 9 subjects for non-attended conditions and 14 subjects for a simulated criminal investigation. An ERP was detected only when a subject recognized a familiar image (target) mixed with other, unfamiliar images (non-target), regardless of whether he was asked to attend to or neglect the target image. ERPs in the subject who watched each picture but tried to ignore the relevant picture (non-attended) were more activated at the parietal region than at the central region, in contrast with ERPs in the subjects who paid attention to each picture without trying to ignore the relevant picture (attended). In the simulated criminal investigation, only a simulated thief, but not a simulated innocent subject elicited ERP only after the picture of a criminal site or thing was intermingled with pictures bearing no relationship to the crime. These findings indicate that the ERP using photographs as stimuli is useful as an objective indicator of crime-relevance.  相似文献   
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