956 resultados para Anterior medial frontal


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La Universitat de les Illes Balears (UIB), en el marc del procés d’adaptació dels ensenyaments universitaris a l’Espai Europeu d’Educació Superior (EEES), ha aplicat una sèrie de canvis en els títols de grau i màster oficials en relació amb els títols corresponents a l’anterior ordenació quant a la metodologia docent. Aquests canvis se centren fonamentalment a reforçar la planificació i coordinació docents, fomentar l’oferta d’activitats formatives que afavoreixin l’aprenentatge actiu i el treball autònom de l’estudiant i, finalment, aplicar tècniques d’avaluació alternatives a les tradicionals en un context d’avaluació contínua. El propòsit d’aquest treball és fer un estudi comparatiu, en termes estrictament quantitatius, del rendiment acadèmic entre els estudiants pertanyents a títols de grau i a títols de l’ordenació anterior. Per fer-ho, s’ha treballat amb les actes oficials de la població de 2.584 estudiants que varen començar una llicenciatura, diplomatura o enginyeria tècnica l’any acadèmic 2005-2006, així com les actes oficials de la població de 2.492 estudiants que varen començar un grau l’any acadèmic 2009-2010 a la UIB. Les dades analitzades fan referència al rendiment dels estudiants el segon curs de la titulació. Els resultats globals posen de manifest una millora dels resultats acadèmics dels estudiants amb la implantació dels títols adaptats a l’EEES. Així, si bé la taxa de rendiment (crèdits superats/matriculats) no varia, amb els títols de grau augmenta la taxa de crèdits avaluats (crèdits presentats/matriculats), en la d’èxit (crèdits superats/presentats), així com en la mitjana de les qualificacions de les assignatures. Les línies d’investigació futures en la UIB s’encaminaran a analitzar en un nivell més qualitatiu el grau d’adquisició de les competències i els resultats d’aprenentatge dels estudiants una vegada que hagin conclòs el pla formatiu.

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Este estudo teve como objetivo avaliar e comparar as doses de radiação recolhidas numa amostra de 69 pacientes, em dois hospitais, com diferentes métodos de aquisição de imagem digital, direta e indireta, que realizaram radiografia de tórax, em projeção postero-anterior (PA). Para os dois hospitais, a dose à entrada da pele (DEP) e efectiva (E), foram medidas usando o software PCXMC para comparação entre si e com referências internacionais. No Hospital A, com aquisição digital direta, a média de DEP foi de 0,089 mGy e a média de E foi 0,013 mSv. No Hospital B, com aquisição digital de indireta, a média de DEP foi de 0.151 mGy e a média de E foi 0.030mSv. Em ambos os hospitais, as doses médias não ultrapassaram os limites recomendados por lei (0,3 mGy). Para a radiografia de tórax PA, o nível de referência diagnostico (NRD) local calculado foi 0.107 mGy, para o Hospital A e 0.164 mGy, para o Hospital B. Na radiografia de tórax PA, a utilização de um sistema de aquisição direta implicou uma redução de dose de 41 %, concordante com as referências disponíveis que apontam para a redução da dose de cerca de 50 % entre os dois sistemas.

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The life-cycle of shallow frontal waves and the impact of deformation strain on their development is investigated using the idealised version of the Met Office non-hydrostatic Unified Model which includes the same physics and dynamics as the operational forecast model. Frontal wave development occurs in two stages; first, a deformation strain is applied to a front and a positive potential vorticity (PV) strip forms, generated by latent heat release in the frontal updraft; second, as the deformation strain is reduced the PV strip breaks up into individual anomalies. The circulations associated with the PV anomalies cause shallow frontal waves to form. The structure of the simulated frontal waves is consistent with the conceptual model of a frontal cyclone. Deeper frontal waves are simulated if the stability of the atmosphere is reduced. Deformation strain rates of different strengths are applied to the PV strip to determine whether a deformation strain threshold exists above which frontal wave development is suppressed. An objective method of frontal wave activity is defined and frontal wave development was found to be suppressed by deformation strain rates $\ge 0.4\times10^{-5}\mbox{s}^{-1}$. This value compares well with observed deformation strain rate thresholds and the analytical solution for the minimum deformation strain rate needed to suppress barotropic frontal wave development. The deformation strain rate threshold is dependent on the strength of the PV strip with strong PV strips able to overcome stronger deformation strain rates (leading to frontal wave development) than weaker PV strips.

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Case study simulations with idealized tracers have been used to determine the relationship between the dynamics and conceptual representations of different midlatitude frontal systems and the amount, distribution, and time scale of boundary layer ventilation by these systems. The key features of ventilation by a kata– and ana–cold frontal system are found to be quantitatively and also often qualitatively similar to the main ventilation pathways, which are the conveyor belts, cloud head, and other convection. The conveyor belts and cloud head occur within cloud, implying that they can be identified using satellite imagery. Differences in the transport by the two systems can be related to their conceptual representations and include a sensitive dependence on the diurnal cycle for the kata- but not the ana-cold frontal case.

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Here we show inverse fMRI activation patterns in amygdala and medial prefrontal cortex (mPFC) depending upon whether subjects interpreted surprised facial expressions positively or negatively. More negative interpretations of surprised faces were associated with greater signal changes in the right ventral amygdala, while more positive interpretations were associated with greater signal changes in the ventral mPFC. Accordingly, signal change within these two areas was inversely correlated. Thus, individual differences in the judgment of surprised faces are related to a systematic inverse relationship between amygdala and mPFC activity, a circuitry that the animal literature suggests is critical to the assessment of stimuli that predict potential positive vs negative outcomes.

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Using functional magnetic resonance imaging, we examined whether individual differences in amygdala activation in response to negative relative to neutral information are related to differences in the speed with which such information is evaluated, the extent to which such differences are associated with medial prefrontal cortex function, and their relationship with measures of trait anxiety and psychological well-being (PWB). Results indicated that faster judgments of negative relative to neutral information were associated with increased left and right amygdala activation. In the prefrontal cortex, faster judgment time was associated with relative decreased activation in a cluster in the ventral anterior cingulate cortex (ACC, BA 24). Furthermore, people who were slower to evaluate negative versus neutral information reported higher PWB. Importantly, higher PWB was strongly associated with increased activation in the ventral ACC for negative relative to neutral information. Individual differences in trait anxiety did not predict variation in judgment time or in amygdala or ventral ACC activity. These findings suggest that people high in PWB effectively recruit the ventral ACC when confronted with potentially aversive stimuli, manifest reduced activity in subcortical regions such as the amygdala, and appraise such information as less salient as reflected in slower evaluative speed.

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Developmental functional imaging studies of cognitive control show progressive age-related increase in task-relevant fronto-striatal activation in male development from childhood to adulthood. Little is known, however, about how gender affects this functional development. In this study, we used event related functional magnetic resonance imaging to examine effects of sex, age, and their interaction on brain activation during attentional switching and interference inhibition, in 63 male and female adolescents and adults, aged 13 to 38. Linear age correlations were observed across all subjects in task-specific frontal, striatal and temporo-parietal activation. Gender analysis revealed increased activation in females relative to males in fronto-striatal areas during the Switch task, and laterality effects in the Simon task, with females showing increased left inferior prefrontal and temporal activation, and males showing increased right inferior prefrontal and parietal activation. Increased prefrontal activation clusters in females and increased parietal activation clusters in males furthermore overlapped with clusters that were age-correlated across the whole group, potentially reflecting more mature prefrontal brain activation patterns for females, and more mature parietal activation patterns for males. Gender by age interactions further supported this dissociation, revealing exclusive female-specific age correlations in inferior and medial prefrontal brain regions during both tasks, and exclusive male-specific age correlations in superior parietal (Switch task) and temporal regions (Simon task). These findings show increased recruitment of age-correlated prefrontal activation in females, and of age-correlated parietal activation in males, during tasks of cognitive control. Gender differences in frontal and parietal recruitment may thus be related to gender differences in the neurofunctional maturation of these brain regions.

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Anatomically segregated systems linking the frontal cortex and the striatum are involved in various aspects of cognitive, affective, and motor processing. In this study, we examined the effects of combined unilateral lesions of the medial prefrontal cortex (mPFC) and the core subregion of the nucleus accumbens (AcbC) in opposite hemispheres (disconnection) on a continuous performance, visual attention test [five-choice serial reaction-time task (5CSRTT)]. The disconnection lesion produced a set of specific changes in performance of the 5CSRTT, resembling changes that followed bilateral AcbC lesions while, in addition, comprising a subset of the behavioral changes after bilateral mPFC lesions previously reported using the same task. Specifically, both mPFC/AcbC disconnection and bilateral AcbC lesions markedly affected aspects of response control related to affective feedback, as indexed by perseverative responding in the 5CSRTT. These effects were comparable, although not identical, to those in animals with either bilateral AcbC or mPFC/AcbC disconnection lesions. The mPFC/AcbC disconnection resulted in a behavioral profile largely distinct from that produced by disconnection of a similar circuit described previously, between the mPFC and the dorsomedial striatum, which were shown to form a functional network underlying aspects of visual attention and attention to action. This distinction provides an insight into the functional specialization of corticostriatal circuits in similar behavioral contexts.