132 resultados para pacs: neural computing technologies


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Differences in personality factors between individuals may manifest themselves with different patterns of neural activity while individuals process stimuli with emotional content. We attempted to verify this hypothesis by investigating emotional susceptibility (ES), a specific emotional trait of the human personality defined as the tendency to "experience feelings of discomfort, helplessness, inadequacy and vulnerability" after exposure to stimuli with emotional valence. By administering a questionnaire evaluating the individuals' ES, we selected two groups of participants with high and low ES respectively. Then, we used functional magnetic resonance imaging to investigate differences between the groups in the neural activity involved while they were processing emotional stimuli in an explicit (focusing on the content of the stimuli) or an incidental (focusing on spatial features of the stimuli, irrespectively of their content) way. The results showed a selective difference in brain activity between groups only in the explicit processing of the emotional stimuli: bilateral activity of the anterior insula was present in subjects with high ES but not in subjects with low ES. This difference in neural activity within the anterior insula proved to be purely functional since no brain morphological differences were found between groups, as assessed by a voxel-based morphometry analysis. Although the role of the anterior insula in the processing of contexts perceived as emotionally salient is well established, the present study provides the first evidence of a modulation of the insular activity depending on the individuals' ES trait of personality.

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AIMS/HYPOTHESIS: Excess glucose transport to embryos during diabetic pregnancy causes congenital malformations. The early postimplantation embryo expresses the gene encoding the high-Km GLUT2 (also known as SLC2A2) glucose transporter. The hypothesis tested here is that high-Km glucose transport by GLUT2 causes malformations resulting from maternal hyperglycaemia during diabetic pregnancy. MATERIALS AND METHODS: Glut2 mRNA was assayed by RT-PCR. The Km of embryo glucose transport was determined by measuring 0.5-20 mmol/l 2-deoxy[3H]glucose transport. To test whether the GLUT2 transporter is required for neural tube defects resulting from maternal hyperglycaemia, Glut2+/- mice were crossed and transient hyperglycaemia was induced by glucose injection on day 7.5 of pregnancy. Embryos were recovered on day 10.5, and the incidence of neural tube defects in wild-type, Glut2+/- and Glut2-/- embryos was scored. RESULTS: Early postimplantation embryos expressed Glut2, and expression was unaffected by maternal diabetes. Moreover, glucose transport by these embryos showed Michaelis-Menten kinetics of 16.19 mmol/l, consistent with transport mediated by GLUT2. In pregnancies made hyperglycaemic on day 7.5, neural tube defects were significantly increased in wild-type embryos, but Glut2+/- embryos were partially protected from neural tube defects, and Glut2-/- embryos were completely protected from these defects. The frequency of occurrence of wild-type, Glut2+/- and Glut2-/- embryos suggests that the presence of Glut2 alleles confers a survival advantage in embryos before day 10.5. CONCLUSIONS/INTERPRETATIONS: High-Km glucose transport by the GLUT2 glucose transporter during organogenesis is responsible for the embryopathic effects of maternal diabetes.

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La contrefaçon de billets de banque a considérablement évolué avec l'apparition des technologies numériques de reproduction. Gouverné autrefois par des professionnels bien organisés, le phénomène de la contrefaçon n'est plus aujourd'hui l'apanage de quelques initiés mais est répandu dans une large communauté de faussaires. Les systèmes et les acteurs de la lutte contre la contrefaçon doivent s'adapter à ce nouveau modèle afin de pallier les impacts économiques, personnels et psychologiques de la contrefaçon sur la société. Au coeur des débats sociologiques et éthiques, les autorités politiques, les banques nationales, la police et les experts tentent d'endiguer le problème de façon parfois quelque peu inadéquate et obsolète. L'analyse de données statistiques permet de dégager les tendances actuelles et d'identifier les changements majeurs entre deux époques.

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Le présent mémoire traite de l'implication des hôpitaux universitaires en évaluation des technologies de la santé. Le champ d'étude est vaste : - L'évaluation des technologies de la santé est une discipline dont l'étendue fait appel aux sciences exactes (physique, statistiques, ingénierie, méthodologie de la recherche analytique, etc.) ainsi qu'aux sciences sociales (économie, éthique, etc.) - L'hôpital universitaire est une organisation des plus complexes qui soit. Le "produit final" - l'amélioration de la santé du patient - est totalement non standardisé, il n'existe pas de modèle d'hôpital universitaire type et unique (inclusion ou non d'un centre de recherche, d'une faculté de médecine, d'un comité de gestion politique, etc.) et les corps de métiers qui le composent sont des plus variés et représentés en grand nombre Ainsi, l'étendue du champ relève des domaines interdépendants tels que la technologie (elle-même incluse dans le domaine de l'innovation aujourd'hui en développement), le management (ou administration des soins, du système de santé dans lequel s'inscrit l'hôpital universitaire), le financement de l'institution (mais aussi la rémunération des professionnels) et enfin la stratégie de l'hôpital. Le présent travail ne fait qu'effleurer ce large spectre d'investigation. La thématique de l'évaluation des technologies de la santé n'est guère connue en Suisse, ou plutôt elle n'est que peu développée et reconnue comme une science interdisciplinaire destinée à porter un jugement de valeur afin d'aider la prise de décision, sens profond qui la définit dans d'autres pays tel le Canada et plus particulièrement le Québec. Enfin, il convient de souligner que le présent travail n'a pas comme objectif de comparer les systèmes de santé québécois et suisse ou de réaliser toute autre critique de l'un ou de l'autre. Le but du stage ([à l'Université de Montréal], cf. Préambule) était d'observer des structures reconnues au niveau international et nullement de juger de l'ensemble du système de santé. Si l'on peut s'inspirer des réussites ailleurs, il convient de s'en tenir à l'inspiration de celles-ci pour ensuite, éventuellement, les contextualiser dans d'autres lieux. Ainsi, à chaque fois qu'il sera fait mention du Québec par la suite, ce sera dans l'intention de démontrer l'originalité de la démarche et d'élargir le débat dans le contexte qui nous intéresse. [Auteur p. 7]

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Genetically engineered bioreporters are an excellent complement to traditional methods of chemical analysis. The application of fluorescence flow cytometry to detection of bioreporter response enables rapid and efficient characterization of bacterial bioreporter population response on a single-cell basis. In the present study, intrapopulation response variability was used to obtain higher analytical sensitivity and precision. We have analyzed flow cytometric data for an arsenic-sensitive bacterial bioreporter using an artificial neural network-based adaptive clustering approach (a single-layer perceptron model). Results for this approach are far superior to other methods that we have applied to this fluorescent bioreporter (e.g., the arsenic detection limit is 0.01 microM, substantially lower than for other detection methods/algorithms). The approach is highly efficient computationally and can be implemented on a real-time basis, thus having potential for future development of high-throughput screening applications.

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Background: Activating mutations of the anaplastic lymphoma receptor tyrosine kinase gene (ALK) were identified in both somatic and familial neuroblastoma. The most common somatic mutation, F1174L, is associated with NMYC amplification and displayed an efficient transforming activity in vivo. In addition, both AKL-F1174L and NMYC were shown cooperate in neuroblastoma tumorigenesis in animal models. To analyse the role of ALK mutations in the oncogenesis of neuroblastoma, ALK wt and various ALK mutants were transduced in murine neural crest stem cells (MONC1). Methods: ALK-wt, and F1174L, and R1275Q mutants were stably expressed by retroviral infection using the pMIGR1 vector in the murine neural crest stem cell line MONC-1, previously immortalised with v-myc, and further implanted subcutaneously or orthotopically in nude mice. Results: Both MONC1-ALK-F1174L and -R1275Q cells displayed a rapid tumour forming capacity upon subcutaneous injection in nude mice compared to control MONC1-MIGR or MONC1 cells. Interestingly, the transforming capacity of the F1174L mutant was much more potent compared to that of R1275Q mutant in murine neural crest stem cells, while ALK-wt was not tumorigenic. In addition, mice implanted orthotopically in the left adrenal gland with MONC1-ALK-F1174L cells developed highly aggressive tumours in 100% of mice within three weeks, while MONC1-Migr or MONC1 derived tumours displayed a longer latency and a reduced tumour take. Conclusions: The activating ALK-F1174L mutant is highly tumorigenic in neural crest stem cells. Nevertheless, we cannot exclude a functional implication of the v-myc oncogene used for MONC1 cells immortalisation. Indeed, the control MONC1-Migr and MONC1 cells were also able to derive subcutaneous and orthotopic tumours, although with considerable reduced efficiency. Further investigations using neural crest stem cell lacking exogenous myc expression are currently on way to assess the exclusive role of ALK mutations in NB oncogenesis.