969 resultados para Cortex cerebral


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How do the layered circuits of prefrontal and motor cortex carry out working memory storage, sequence learning, and voluntary sequential item selection and performance? A neural model called LIST PARSE is presented to explain and quantitatively simulate cognitive data about both immediate serial recall and free recall, including bowing of the serial position performance curves, error-type distributions, temporal limitations upon recall, and list length effects. The model also qualitatively explains cognitive effects related to attentional modulation, temporal grouping, variable presentation rates, phonemic similarity, presentation of non-words, word frequency/item familiarity and list strength, distracters and modality effects. In addition, the model quantitatively simulates neurophysiological data from the macaque prefrontal cortex obtained during sequential sensory-motor imitation and planned performance. The article further develops a theory concerning how the cerebral cortex works by showing how variations of the laminar circuits that have previously clarified how the visual cortex sees can also support cognitive processing of sequentially organized behaviors.

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By virtue of its widespread afferent projections, perirhinal cortex is thought to bind polymodal information into abstract object-level representations. Consistent with this proposal, deficits in cross-modal integration have been reported after perirhinal lesions in nonhuman primates. It is therefore surprising that imaging studies of humans have not observed perirhinal activation during visual-tactile object matching. Critically, however, these studies did not differentiate between congruent and incongruent trials. This is important because successful integration can only occur when polymodal information indicates a single object (congruent) rather than different objects (incongruent). We scanned neurologically intact individuals using functional magnetic resonance imaging (fMRI) while they matched shapes. We found higher perirhinal activation bilaterally for cross-modal (visual-tactile) than unimodal (visual-visual or tactile-tactile) matching, but only when visual and tactile attributes were congruent. Our results demonstrate that the human perirhinal cortex is involved in cross-modal, visual-tactile, integration and, thus, indicate a functional homology between human and monkey perirhinal cortices.

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Voluntary selective attention can prioritize different features in a visual scene. The frontal eye-fields (FEF) are one potential source of such feature-specific top-down signals, but causal evidence for influences on visual cortex (as was shown for "spatial" attention) has remained elusive. Here, we show that transcranial magnetic stimulation (TMS) applied to right FEF increased the blood oxygen level-dependent (BOLD) signals in visual areas processing "target feature" but not in "distracter feature"-processing regions. TMS-induced BOLD signals increase in motion-responsive visual cortex (MT+) when motion was attended in a display with moving dots superimposed on face stimuli, but in face-responsive fusiform area (FFA) when faces were attended to. These TMS effects on BOLD signal in both regions were negatively related to performance (on the motion task), supporting the behavioral relevance of this pathway. Our findings provide new causal evidence for the human FEF in the control of nonspatial "feature"-based attention, mediated by dynamic influences on feature-specific visual cortex that vary with the currently attended property.

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Recent studies have documented that self-determined choice does indeed enhance performance. However, the precise neural mechanisms underlying this effect are not well understood. We examined the neural correlates of the facilitative effects of self-determined choice using functional magnetic resonance imaging (fMRI). Participants played a game-like task involving a stopwatch with either a stopwatch they selected (self-determined-choice condition) or one they were assigned without choice (forced-choice condition). Our results showed that self-determined choice enhanced performance on the stopwatch task, despite the fact that the choices were clearly irrelevant to task difficulty. Neuroimaging results showed that failure feedback, compared with success feedback, elicited a drop in the vmPFC activation in the forced-choice condition, but not in the self-determined-choice condition, indicating that negative reward value associated with the failure feedback vanished in the self-determined-choice condition. Moreover, the vmPFC resilience to failure in the self-determined-choice condition was significantly correlated with the increased performance. Striatal responses to failure and success feedback were not modulated by the choice condition, indicating the dissociation between the vmPFC and striatal activation pattern. These findings suggest that the vmPFC plays a unique and critical role in the facilitative effects of self-determined choice on performance.

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Excitatory neurons at the level of cortical layer 4 in the rodent somatosensory barrel field often display a strong eccentricity in comparison with layer 4 neurons in other cortical regions. In rat, dendritic symmetry of the 2 main excitatory neuronal classes, spiny stellate and star pyramid neurons (SSNs and SPNs), was quantified by an asymmetry index, the dendrite-free angle. We carefully measured shrinkage and analyzed its influence on morphological parameters. SSNs had mostly eccentric morphology, whereas SPNs were nearly radially symmetric. Most asymmetric neurons were located near the barrel border. The axonal projections, analyzed at the level of layer 4, were mostly restricted to a single barrel except for those of 3 interbarrel projection neurons. Comparing voxel representations of dendrites and axon collaterals of the same neuron revealed a close overlap of dendritic and axonal fields, more pronounced in SSNs versus SPNs and considerably stronger in spiny L4 neurons versus extragranular pyramidal cells. These observations suggest that within a barrel dendrites and axons of individual excitatory cells are organized in subcolumns that may confer receptive field properties such as directional selectivity to higher layers, whereas the interbarrel projections challenge our view of barrels as completely independent processors of thalamic input.

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By using an infant rat model of pneumococcal meningitis, we determined whether endothelins contribute to neuronal damage in this disease. Cerebrospinal fluid analysis demonstrated a significant increase of endothelin-1 in infected animals compared with uninfected controls. Histopathological examination 24 hours after infection showed brain damage in animals treated with ceftriaxone alone (median, 9.2% of cortex; range, 0-49.1%). In infected animals treated intraperitoneally with the endothelin antagonist bosentan (30 mg/kg, every 12 hours) also, injury was reduced to 0.5% (range, 0-8.6%) of cortex. Cerebral blood flow was reduced in infected animals (6.5 +/- 4.0 ml/min/100 g of brain vs 14.9 +/- 9.1 ml/min/100 g in controls. Treatment with bosentan restored cerebral blood flow to levels similar to controls (12.8 +/- 5.3 ml/min/100 g). Improved blood flow was not mediated by nitric oxide production, because bosentan had no effect on cerebrospinal fluid or plasma nitrite/nitrate concentrations at 6, 12, or 18 hours. These data indicate that endothelins contribute to neuronal injury in this model of pneumococcal meningitis by causing cerebral ischemia.

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The systematic study of pyramidal cell structure has revealed new insights into specialization of the phenotype in the primate cerebral cortex. Regional specialization in the neuronal phenotype may influence patterns of connectivity and the computational abilities of the circuits they compose. The comparative study of pyramidal cells in homologous cortical areas is beginning to yield data on the evolution and development of such specialized circuitry in the primate cerebral cortex. Recently, we have focused our efforts on sensory-motor cortex. Based on our intracellular injection methodology, we have demonstrated a progressive increase in the size of, the branching structure in, and the spine density of the basal dendritic trees of pyramidal cells through somatosensory areas 3b, 1, 2, 5, and 7 in the macaque and vervet monkeys. In addition, we have shown that pyramidal cells in premotor area 6 are larger, more branched, and more spinous than those in the primary motor cortex (MI or area 4) in the macaque monkey, vervet monkey, and baboon. Here we expand the basis for comparison by studying the basal dendritic trees of layer III pyramidal cells in these same sensory-motor areas in the chacma baboon. The baboon was selected because it has a larger cerebral cortex than either the macaque or vervet monkeys; motor cortex has expanded disproportionately in these three species; and motor cortex in the baboon reportedly has differentiated to include a new cortical area not present in either the macaque or vervet monkeys. We found, as in monkeys, a progressive increase in the morphological complexity of pyramidal cells through areas 3b, 5, and 7, as well as from area 4 to area 6, suggesting that areal specialization in microcircuitry was likely to be present in a common ancestor of primates. In addition, we found subtle differences in the extent of the interareal differences in pyramidal cell structure between homologous cortical areas in the three species. (c) 2005 Wiley-Liss, Inc.

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Pyramidal cell structure varies systematically in occipitotemporal visual areas in monkeys. The dendritic trees of pyramidal cells, on average, become larger, more branched and more spinous with progression from the primary visual area (V1) to the second visual area (V2), the fourth (V4, or dorsolateral DL visual area) and inferotemporal (IT) cortex. Presently available data reveal that the extent of this increase in complexity parallels the expansion of occipitotemporal cortex. Here we extend the basis for comparison by studying pyramidal cell structure in occipitotemporal cortical areas in the chacma baboon. We found a systematic increase in the size of and branching complexity in the basal dendritic trees, as well as a progressive increase in the spine density along the basal dendrites of layer III pyramidal cells through V1, V2 and V4. These data suggest that the trend for more complex pyramidal cells with anterior progression through occipitotemporal visual areas is not a feature restricted to monkeys and prosimians, but is a widespread feature of occipitotemporal cortex in primates.

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GLOSARIO • Neuromarketing: El Neuromarketing consiste en la aplicación de las técnicas de investigación de las Neurociencias a la investigación de marketing tradicional. A través de técnicas de medición de la actividad cerebral (como el EGG o la fMRI), las “respuestas” de los entrevistados a distintos estímulos (por ejemplo, anuncios publicitarios) son leídas directamente de su actividad cerebral (Neuromarca) • Neurociencia: La neurociencia estudia la estructura y la función química, farmacología, y patología del sistema nervioso y de cómo los diferentes elementos del sistema nervioso interactúan y dan origen a la conducta (Neurologia y ove) • Mercadeo: Según la American Marketing Asociation (A.M.A.), el marketing es una forma de organizar un conjunto de acciones y procesos a la hora de crear un producto “para crear, comunicar y entregar valor a los clientes, y para manejar las relaciones” y su finalidad es beneficiar a la organización satisfaciendo a los clientes (Revista PYM) • Cerebro: Es la parte más evolucionada y grande del encéfalo. En el cerebro se dan la cognición, el pensamiento y las emociones; también la memoria y el lenguaje. Tiene dos hemisferios, cada uno con 4 lóbulos: frontal, temporal, parietal y occipital. La parte más externa es el cortex cerebral, que tiene unos repliegues que forman circunvoluciones y cisuras (Enciclopedia Salud) • Estrategia Empresarial: Es la que define las diferentes líneas de acción que debe asumir cada uno de los individuos que desempeñan las funciones dentro de la misma y permite a toda organización generar una ventaja competitiva en el mercado en el que desenvuelve sus actividades, generando mayores utilidades y permitiendo aprovechar cada una de las oportunidades dándole un valor agregado (Emagister) • Integración sensorial: Es un proceso Neurológico por el cual las sensaciones que provienen de nuestro entornoy de nuestro cuerpo, son organizadas e interpretadas para su uso (Enciclopedia Salud) • Top of Mind: Es el indicador que revela cuál es la marca que, cuando le preguntan por una categoría específica, se le viene a la mente en primer lugar al mayor porcentaje de personas (Gerente) • Valor Agregado: Valor agregado o valor añadido, en términos de marketing, es una característica o servicio extra que se le da a un producto o servicio, con el fin de darle un mayor valor comercial; generalmente se trata de una característica o servicio poco común, o poco usado por los competidores, y que le da al negocio o empresa cierta diferenciación (Crece Negocios)

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Exponer cuales son las tendencias actuales en la educación precoz del lenguaje en los sordos y fijar unas líneas generales de actuación. El estudio trata sobre la educación precoz del lenguaje en la persona sorda profunda. Esta estructurado en varios capítulos. En el primero se hace una recopilación de terminologías relacionadas con el tema de la sordera. En el segundo capitulo se explica la patología de la sordera y resalta entre las más comunes(otosclerosis, enfermedad de meniere, disacusia...) En el tercer capitulo explica cuales son las consecuencias de la falta de lenguaje en los sordos. Posteriormente se detallan los distintos temas que existen de comunicación en la educación de los sordos. Por ultimo se da una serie de pautas para diagnosticar la sordera, así como su detección precoz, los métodos de diagnostico y el diagnostico rehabilitado . 1) El principal déficit de un niño con sordera congénita es el lingüístico, ya que carece de los mecanismos que le facilitarían la limitación espontánea del lenguaje oral. 2) El sistema de signos tradicional de la comunidad de sordos, es el más idóneo en cuanto es absolutamente visual y no entorpece la adquisición del lenguaje oral, si no que la favorece. 3) Supone un gran esfuerzo para los padres el familiarizarse con este código, puesto que es cualitativamente distinto del lenguaje oral no como el lenguaje signado. 4) Debemos plantearnos como principio de ética profesional, el que en ningún caso el profesional debe pretender imponer a los padres un determinado modelo educativo, son ellos los que han de decidir que tipo de educación quieren para su hijo. 5) Hay que tener en cuenta que el aprendizaje del lenguaje tiene un periodo crítico que va de los cero a los dos años, estos dos años de vida coinciden con un espectacular desarrollo de cortex cerebral, desarrollo que a partir de los dos años de vida se convierte en lentamente progresivo. 6) La educación precoz no consiste en aplicar mas precozmente, las técnicas habituales de la educación del sordo, si no que tiene una naturaleza y una especificad propias. 7) No se puede establecer a priori un programa de educación precoz del niño sordo. La educación precoz debería iniciarse desde el mismo momento del diagnostico, integrándose éste dentro de un programa de educación precoz llevado a cabo por un equipo interdisciplinar compuesto por audioprotesistas, especialistas en trastornos del lenguaje, psicólogos, asistentes sociales t padres. 8) Los padres sospechan de la presencia de un déficit auditivo mucho antes de acudir al medico, sin embargo, la aparente normalidad les hace pensar que sus suposiciones son absurdas..

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Adolescents differ from adults in their acute sensitivity to several drugs of abuse, but little is known about the long-term neurobehavioral effects of adolescent drug exposure. To explore this further, we evaluated the locomotor responses to repeated cocaine administration in adolescent and adult male DBA/2J mice and alterations in extracellular levels of dopamine (DA) and glutamate (GLU) in the nucleus accumbens (NAc) in response to a subsequent cocaine challenge. Adolescent and adult mice were treated daily with saline or cocaine (10 mg/kg, i.p) for 9 consecutive days. Ten days following the last injection, animals were implanted with microdialysis probes and 24 h later microdialysis samples were collected before and after an acute cocaine challenge. Adolescents but not adults demonstrated development of behavioral sensitization to cocaine. Microdialysis procedures revealed that cocaine-treated mice displayed greater peak increases in extracellular DA in response to a subsequent cocaine challenge as compared to saline-treated mice, in contrast with lower peak increases in extracellular GLU. While adults exhibited greater peaks in extracellular DA in response to cocaine than adolescents did, adolescent mice presented a more rapid onset of peak extracellular DA levels than adults. Our results indicate differences in the behavioral and neurochemical responses to cocaine in adolescent versus adult mice, which may be relevant to the increased risk of developing addiction in humans who are exposed to drugs of abuse during adolescence. (C) 2007 Elsevier B.V. All rights reserved.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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O córtex pré-frontal medial (CPFM) é uma região límbica envolvida no controle da atividade autonômica e cardiovascular. Foi demonstrado que a inibição da região infra-límbica (IL) do CPFM reduziu as repostas comportamentais, neuroendócrinas e autônomas induzidas por estímulos aversivos. Entretanto, apesar das evidências de um importante papel do córtex IL na integração das respostas ao estresse, informações sobre os mecanismos neuroquímicos locais envolvidos no controle destas respostas ainda são escassos. Diante disso, o presente estudo teve o objetivo de investigar um possível envolvimento de mecanismos noradrenérgicos do córtex IL nas respostas autonômicas ao estresse por restrição agudo em ratos. Para tanto, nós investigamos, em grupos independentes de animais, o efeito da microinjeção bilateral no córtex IL de veículo (salina, 100nL), WB4101 (antagonista seletivo de adrenoceptores α1), RX821002 (antagonista seletivo de adrenoceptores α2) e propranolol (antagonista não-seletivo de adrenoceptores β, 10nmol/100nL), sobre as respostas de aumento da pressão arterial (PA) e frequência cardíaca (FC) e redução da temperatura cutânea da cauda induzidas pelo estresse por restrição agudo em ratos. A microinjeção bilateral de WB4101, RX821002 e propranolol no córtex IL não afetou os parâmetros basais de PA, FC e temperatura cutânea da cauda, o que indica uma ausência de influência na manutenção tônica do sistema cardiovascular. Entretanto, o bloqueio de adrenoceptores α1 no córtex IL diminuiu a resposta taquicárdica induzida pelo estresse por restrição, sem afetar as respostas pressora e de redução da temperatura cutânea da cauda. O bloqueio de adrenoceptores α2 no córtex IL reduziu todos os parâmetros analisados e o bloqueio de adrenoceptores β no córtex IL atenuou a resposta de redução da temperatura cutânea induzida pelo estresse por restrição. As respostas de elevação da ...

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As respostas fisiológicas durante o estresse emocional são mediadas por estruturas límbicas no sistema nervoso central através da ação de vários mecanismos neuroquímicos. O córtex pré-frontal medial (CPFM) é uma região límbica envolvida na integração de respostas comportamentais e fisiológicas ao estresse. Estudos anteriores demonstraram que as sub-regiões do CPFM denominadas pré-límbica (PL) e infra-límbica (IL) parecem ter funções diferentes no controle das respostas ao estresse. Neste sentido, estudos tem sugerido uma função inibitória do córtex PL, ao passo que a ativação do córtex IL parece ter uma ação facilitatória sobre as respostas comportamentais, cardiovasculares e neuroendócrinas ao estresse. Apesar das evidências de um importante papel do CPFM na integração das respostas ao estresse, informações acerca dos mecanismos neuroquímicos locais, envolvidos no controle destas respostas, ainda são escassos. Diante disso, o presente estudo teve o objetivo de investigar, em grupos independentes de animais, o efeito da microinjeção bilateral no córtex PL de WB4101 (antagonista seletivo de adrenoceptores α1), RX821002 (antagonista seletivo de adrenoceptores α2) ou propranolol (antagonista não-seletivo de adrenoceptores β) nas respostas de aumento da pressão arterial (PA) e frequência cardíaca (FC) e redução da temperatura cutânea da cauda induzidas pelo estresse por restrição agudo em ratos. A microinjeção bilateral no córtex PL tanto de WB4101 quanto de RX821002 reduziram as respostas de elevação da PA e FC e a redução na temperatura cutânea da cauda induzidas pelo estresse por restrição. O tratamento local do córtex PL com propranolol reduziu a resposta de temperatura cutânea da cauda, sem afetar os demais parâmetros investigados. Assim, os ...