993 resultados para Inferior Temporal Cortex
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Ayahuasca is psychotropic beverage that has been used for ages by indigenous populations in South America, notably in the Amazon region, for religious and medicinal purposes. The tea is obtained by the decoction of leaves from the Psychotria viridis with the bark and stalk of a shrub, the Banisteriopsis caapi. The first is rich in N-N-dimethyltryptamine (DMT), which has an important and well-known hallucinogenic effect due to its agonistic action in serotonin receptors, specifically 5-HT2A. On the other hand, β-carbolines present in B. caapi, particularly harmine and harmaline, are potent monoamine oxidase inhibitors (MAOi). In addition, the tetrahydroharmine (THH), also present in B. caapi, acts as mild selective serotonin reuptake inhibitor and a weak MAOi. This unique composition induces a number of affective, sensitive, perceptual and cognitive changes in individuals under the effect of Ayahuasca. On the other hand, there is growing interest in the Default Mode Network (DMN), which has been consistently observed in functional neuroimaging studies. The key components of this network include structures in the brain midline, as the anterior medial frontal cortex, ventral medial frontal cortex, posterior cingulate cortex, precuneus, and some regions within the inferior parietal lobe and middle temporal gyrus. It has been argued that DMN participate in tasks involving self-judgments, autobiographical memory retrieval, mental simulations, thinking in perspective, meditative states, and others. In general, these tasks require an internal focus of attention, hence the conclusion that the DMN is associated with introspective mental activity. Therefore, this study aimed to evaluate by functional magnetic resonance imaging (fMRI) changes in DMN caused via the ingestion of Ayahuasca by 10 healthy subjects while submitted to two fMRI protocols: a verbal fluency task and a resting state acquisition. In general, it was observed that Ayahuasca causes a reduction in the fMRI signal in central nodes of DMN, such as the anterior cingulate cortex, the medial prefrontal cortex, the posterior cingulate cortex, precuneus and inferior parietal lobe. Furthermore, changes in connectivity patterns of the DMN were observed, especially a decrease in the functional connectivity of the precuneus. Together, these findings indicate an association between the altered state of consciousness experienced by individuals under the effect of Ayahuasca, and changes in the stream of spontaneous thoughts leading to an increased introspective mental activity
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Este trabalho avalia a variabilidade espaço-temporal da meiofauna do médiolitoral na praia de Ajuruteua, Estado do Pará. As coletas foram realizadas a cada dois meses, entre abril de 2003 a fevereiro de 2004 durante as marés de sizígia, em diferentes zonas da praia. As amostras foram retiradas com um amostrador cilíndrico de 3,14 cm2 e fixadas em formalina salina a 5%. Em laboratório, as amostras foram passadas em malha de 0,063 mm de abertura e os organismos retidos identificados em nível de grandes grupos taxonômicos, contados e fixados em álcool etílico a 70%. A meiofauna esteve representada por oito grupos: Turbellaria, Nematoda, Tardigrada, Polychaeta, Oligochaeta, Acari, adultos de Copepoda Harpacticoida e juvenis de Copepoda Harpacticoida. Nematoda foi o grupo dominante, representando 74% do total de indivíduos, seguido de Copepoda (19%). Pôde-se observar clara zonação horizontal da fauna, que se distribuiu em três faixas paralelas à linha de praia, com características significativamente distintas quanto à abundância, riqueza e densidade dos principais grupos taxonômicos. No médiolitoral médio foram observados valores significativamente mais elevados de riqueza e abundância, enquanto os valores mais baixos foram registrados no médiolitoral superior e inferior. A comunidade de meiofauna, ainda que não tenha variado significativamente entre períodos climáticos, foi mais rica e abundante nos meses secos. Os principais fatores responsáveis pelas variações espaço-temporais da meiofauna foram a ação das ondas e das marés e as variações na salinidade da água
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A partir da hipótese de que a salinidade influencia fortemente a comunidade zooplanctônica, o objetivo deste trabalho é analisar a influência deste fator sobre essa comunidade no estuário do rio Quatipuru, Estado do Pará. Foram realizadas amostragens zooplanctônicas e de variáveis físicas e químicas da água ao longo do estuário, contemplando diferentes faixas de salinidade. As coletas foram realizadas em marés vazantes e enchentes. Os resultados mostraram que este estuário possui uma variação temporal de características física, química e biológica. A salinidade, em especial, sofreu variações decorrentes das mudanças de marés, bem como da variação sazonal da pluviosidade. A salinidade variou de 1,4 a 33,5 ups no período seco e de 0 a 17,9 ups no período chuvoso. Esta amplitude de salinidade possibilitou determinar para área diferentes condições hidrológicas (limnética, oligohalina, meso-polihalina e euhalina). Foram identificados 48 taxa, destacando os Copepoda como o grupo mais importante em termos quali-quantitativos, sendo adultos de Parvocalanus crassirostris, Pseudodiaptomus richardi, Acartia tonsa, Acartia lilljeborgi, Paracalanus quasimodo, Euterpina acutifrons e copepoditos os principais responsáveis pela sua dominância. Mollusca foi o segundo grupo dominante, onde véligeres de gastrópodes representaram 95% do total. A densidade total do zooplancton variou entre 993, 9 e 13254,7 Ind. m-3 no verão e entre 944, 3 e 35908,8 Ind. m-3 no inverno. As maiores abundância em maio e novembro foram em ocasião de maré vazante e enchente, respectivamente. Os baixos valores de diversidade e equitabilidade encontrados na faixa zero na condição de enchente mostram o predomínio de determinado grupo sobre os demais (larvas de Gastropoda). A maior diversidade e uniformidade da comunidade zooplanctônica ocorreram no verão. A comunidade zooplanctônica respondeu as variações de salinidade com espécies adaptadas aos maiores valores de salinidade na porção inferior do estuário, no verão, assim como espécies adaptadas as condições de mixohalinização na porção mais a montante, em maio. A maior abundância de copepoditos esteve associada negativamente com a salinidade, demonstrando que as espécies que estão recrutando os copepoditos são mais estuarinas verdadeiras do que costeiras. As análises de agrupamento e de componentes principais revelou grupos definidos, distribuídos em diferentes faixas de salinidade, este parâmetro sozinho explicou 56% (p=0,028) da variação da fauna no estuário do rio Quatipuru. A distribuição dos organismos, de uma maneira geral, esteve de acordo com a hipótese de que a salinidade influencia fortemente a comunidade zooplanctônica no sistema estuarino de Quatipuru - Pará.
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A ictiofauna de poças de maré tem sido bem estudada em regiões temperadas e tropicais do Pacifico. No Brasil, ainda é incipiente o conhecimento ecológico das poças de maré e das assembléias de peixes que as habitam. O presente estudo pretendeu investigar a composição e distribuição espaço-temporal das assembléias de peixes associadas às poças de maré em habitats de afloramento rochoso, floresta de mangue e marismas da Ilha do Areuá, estuário inferior do rio Curuçá, Norte do Brasil. Amostragens trimestrais foram realizadas entre fevereiro e novembro de 2009, durante a maré baixa de sizígia (lua nova), utilizando metodologia padronizada. As variáveis ambientais sofreram modificações ao longo do gradiente vertical e foram responsáveis pela distribuição espacial e temporal da ictiofauna no afloramento rochoso. A salinidade, profundidade média e heterogeneidade do substrato foram as variáveis que mais explicaram as variações na distribuição da ictiofauna. A comparação entre os habitats de afloramento rochoso, floresta de mangue e marismas evidenciou que as assembléias de peixes do afloramento rochoso são claramente distintas daquela presente nos habitats vegetados (floresta de mangue e marismas). Os resultados deste estudo sugerem que há preferências pela ictiofauna por determinados habitats em função das variáveis ambientais e heterogeneidade do substrato, porém mais estudos devem ser realizados levando em consideração relações inter e intra-especificas.
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Este estudo investigou a biodiversidade e a distribuição espaço-temporal da abundância das populações de camarões e descreveu a estrutura populacional de Farfantepenaeus subtilis em um estuário amazônico. Os camarões foram coletados mensalmente de agosto de 2006 a julho de 2007 nos períodos chuvoso (janeiro a junho) e seco (julho a dezembro) com arrasto-de-fundo e arrasto-de-praia nos setores Médio-Superior (MS), Médio (M) e Inferior (I). Em cada setor dois locais foram amostrados, nos quais dois arrastos de fundo de cinco minutos cada e, três arrastos praiais de 150 m2 cada um foram realizados. As variáveis: temperatura, pH e salinidade da água e granulometria e matéria orgânica do sedimento foram analisadas. Para cada camarão foram anotados os Comprimentos Total (CT) e do Cefalotórax (CC), peso total, sexo e estádio de maturação gonadal. A salinidade diferiu significativamente entre os setores I e MS (p<0,05) e o M apresentou baixo teor de matéria orgânica. Em todos os setores os grãos arenosos foram predominantes no substrato, destacando-se a areia fina no setor M. Foram coletados 11.939 camarões, distribuídos em doze espécies e seis famílias. Palaemonidae e Penaeidae tiveram maior riqueza com cinco e três espécies, respectivamente. Penaeidae, Sergestidae e Palaemonidae apresentaram maior abundância, com Xiphopenaeus kroyeri, F. subtilis, Acetes marinus e Nematopalaemon schmitti, contribuindo com 43, 31, 21 e 1,3% do total capturado, respectivamente. As espécies F. subtilis, X. kroyeri e Litopenaeus schmitti contribuíram com 97% da biomassa total. A densidade e a biomassa de F. subtilis diferiram entre o chuvoso e seco (p<0,05), sendo maior no chuvoso. No chuvoso, a densidade de X. kroyeri foi mais elevada nos setores M e I e no seco nos setores MS e M, com maior biomassa no I em ambos períodos sazonais. A densidade e a biomassa de A. marinus foi elevada no setor I (p<0,05). A salinidade, areia, silte e argila influenciaram significativamente a distribuição espaço-temporal da abundância dos camarões (p<0,05). O CC das fêmeas de F. subtilis foi superior aos machos com 13,7 mm e 12,8 mm, respectivamente, e diferiu em março (p<0,05). As fêmeas foram mais abundantes e a razão sexual foi de 0,8:1 com destaque para janeiro, fevereiro, maio e o total analisado (p<0,05). Camarões desenvolvidos ocorreram no chuvoso e a abundância de juvenis foi maior de janeiro a junho quando ocorre o pico mais intenso de desova em mar aberto.
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Pós-graduação em Agronomia (Proteção de Plantas) - FCA
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Psychiatric co-morbidities in epilepsy are common in patients with temporal lobe epilepsy (TLE). Pathological alterations in TLE are well characterised; however, neuropathologic data are relatively scale regarding the association between psychiatric diseases and epilepsy. Our objective was to evaluate the clinical data of 46 adult TLE patients with and without psychiatric co-morbidities and to correlate the data with hippocampal neuronal density and mossy fiber sprouting. Accordingly, patients were grouped as follows: TLE patients without history of psychiatric disorder (TLE, n = 16), TLE patients with interictal psychosis (TLE + P, n = 14), and TLE patients with major depression (TLE + D, n = 16). Hippocampi from autopsies served as non-epileptic controls (n = 10). TLE + P exhibited significantly diminished mossy fiber sprouting and decreased neuronal density in the entorhinal cortex when compared with TLE. TLE + P showed significantly poorer results in verbal memory tasks. TLE + D exhibited significantly increased mossy fiber sprouting length when compared with TLE and TLE + P. Further, a higher proportion of TLE + D and TLE + P presented secondarily generalised seizures than did TLE. Our results indicate that TLE patients with psychiatric disorders have distinct features when compared with TLE patients without psychiatric co-morbidities and that these changes may be involved in either the manifestation or the maintenance of psychiatric co-morbidities in epilepsy. (C) 2011 Elsevier Ireland Ltd. All rights reserved.
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Objective: Mounting evidence suggests that the limbic system is pathologically involved in cases of psychiatric comorbidities in temporal lobe epilepsy (TLE) patients. Our objective was to develop a conceptual framework describing how neuropathological and connectivity changes might contribute to the development of psychosis and to the potential neurobiological mechanisms that cause schizophrenia-like psychosis in TLE patients. Methods: In this review, clinical and neuropathological findings, especially brain circuitry of the limbic system, were examined together to enhance our understanding of the association between TLE and psychosis. Finally, the importance of animal models in epilepsy and psychiatric disorders was discussed. Conclusions: TLE and psychiatric symptoms coexist more frequently than chance would predict. Damage and deregulation among critical anatomical regions, such as the hippocampus, amygdala, thalamus, and the temporal, frontal and cingulate cortices, might predispose TLE brains to psychosis. Studies of the effects of kindling and injection of neuroactive substances on behavior and electrophysiological patterns may offer a model of how limbic seizures in humans increase the vulnerability of TLE patients to psychiatric symptoms.
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Objective: There is accumulating evidence that the limbic system is pathologically involved in cases of psychiatric comorbidities in temporal lobe epilepsy (TLE) patients. Our objective was to develop a conceptual framework describing how neuropathological, neurochemical and electrophysiological aspects might contribute to the development of psychiatric symptoms in TLE and the putative neurobiological mechanisms that cause mood disorders in this patient subgroup. Methods: In this review, clinical, experimental and neuropathological findings, as well as neurochemical features of the limbic system were examined together to enhance our understanding of the association between TLE and psychiatric comorbidities. Finally, the value of animal models in epilepsy and mood disorders was discussed. Conclusions: TLE and psychiatric symptoms coexist more frequently than chance would predict. Alterations and neurotransmission disturbance among critical anatomical networks, and impaired or aberrant plastic changes might predispose patients with TLE to mood disorders. Clinical and experimental studies of the effects of seizures on behavior and electrophysiological patterns may offer a model of how limbic seizures increase the vulnerability of TLE patients to precipitants of psychiatric symptoms.
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Aims To evaluate the ability of multifocal transient pattern electroretinography (mfPERG) to detect neural loss and assess the relationship between mfPERG and visual-field (VF) loss in eyes with chiasmal compression. Methods 23 eyes from 23 patients with temporal VF defects and band atrophy of the optic nerve and 21 controls underwent standard automated perimetry and mfPERG using a stimulus pattern of 19 rectangles, each consisting of 12 squares. The response was determined for the central rectangle, for the nasal and temporal hemifields (eight rectangles each) and for each quadrant (three rectangles) in both patients and controls. Comparisons were made using variance analysis. Correlations between VF and mfPERG measurements were verified by linear regression analysis. Results Mean +/- SD mfPERG amplitudes from the temporal hemifield (0.50 +/- 0.17 and 0.62 +/- 0.32) and temporal quadrants (superior 0.42 +/- 0.21 and 0.52 +/- 0.35, inferior 0.51 +/- 0.23 and 0.74 +/- 0.40) were significantly lower in eyes with band atrophy than in controls (0.78 +/- 0.24, 0.89 +/- 0.28, 0.73 +/- 60.26, 0.96 +/- 0.36, 0.79 +/- 0.26 and 0.91 +/- 0.31, respectively). No significant difference was observed in nasal hemifield measurements. Significant correlations (0.36-0.73) were found between VF relative sensitivity and mfPERG amplitude in different VF sectors. Conclusions mfPERG amplitude measurements clearly differentiate eyes with temporal VF defect from controls. The good correlation between mfPERG amplitudes and the severity of VF defect suggests that mfPERG may be used as an indicator of ganglion cell dysfunction.
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Introduction and aims of the research Nitric oxide (NO) and endocannabinoids (eCBs) are major retrograde messengers, involved in synaptic plasticity (long-term potentiation, LTP, and long-term depression, LTD) in many brain areas (including hippocampus and neocortex), as well as in learning and memory processes. NO is synthesized by NO synthase (NOS) in response to increased cytosolic Ca2+ and mainly exerts its functions through soluble guanylate cyclase (sGC) and cGMP production. The main target of cGMP is the cGMP-dependent protein kinase (PKG). Activity-dependent release of eCBs in the CNS leads to the activation of the Gαi/o-coupled cannabinoid receptor 1 (CB1) at both glutamatergic and inhibitory synapses. The perirhinal cortex (Prh) is a multimodal associative cortex of the temporal lobe, critically involved in visual recognition memory. LTD is proposed to be the cellular correlate underlying this form of memory. Cholinergic neurotransmission has been shown to play a critical role in both visual recognition memory and LTD in Prh. Moreover, visual recognition memory is one of the main cognitive functions impaired in the early stages of Alzheimer’s disease. The main aim of my research was to investigate the role of NO and ECBs in synaptic plasticity in rat Prh and in visual recognition memory. Part of this research was dedicated to the study of synaptic transmission and plasticity in a murine model (Tg2576) of Alzheimer’s disease. Methods Field potential recordings. Extracellular field potential recordings were carried out in horizontal Prh slices from Sprague-Dawley or Dark Agouti juvenile (p21-35) rats. LTD was induced with a single train of 3000 pulses delivered at 5 Hz (10 min), or via bath application of carbachol (Cch; 50 μM) for 10 min. LTP was induced by theta-burst stimulation (TBS). In addition, input/output curves and 5Hz-LTD were carried out in Prh slices from 3 month-old Tg2576 mice and littermate controls. Behavioural experiments. The spontaneous novel object exploration task was performed in intra-Prh bilaterally cannulated adult Dark Agouti rats. Drugs or vehicle (saline) were directly infused into the Prh 15 min before training to verify the role of nNOS and CB1 in visual recognition memory acquisition. Object recognition memory was tested at 20 min and 24h after the end of the training phase. Results Electrophysiological experiments in Prh slices from juvenile rats showed that 5Hz-LTD is due to the activation of the NOS/sGC/PKG pathway, whereas Cch-LTD relies on NOS/sGC but not PKG activation. By contrast, NO does not appear to be involved in LTP in this preparation. Furthermore, I found that eCBs are involved in LTP induction, but not in basal synaptic transmission, 5Hz-LTD and Cch-LTD. Behavioural experiments demonstrated that the blockade of nNOS impairs rat visual recognition memory tested at 24 hours, but not at 20 min; however, the blockade of CB1 did not affect visual recognition memory acquisition tested at both time points specified. In three month-old Tg2576 mice, deficits in basal synaptic transmission and 5Hz-LTD were observed compared to littermate controls. Conclusions The results obtained in Prh slices from juvenile rats indicate that NO and CB1 play a role in the induction of LTD and LTP, respectively. These results are confirmed by the observation that nNOS, but not CB1, is involved in visual recognition memory acquisition. The preliminary results obtained in the murine model of Alzheimer’s disease indicate that deficits in synaptic transmission and plasticity occur very early in Prh; further investigations are required to characterize the molecular mechanisms underlying these deficits.
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The present work takes into account three posterior parietal areas, V6, V6A, and PEc, all operating on different subsets of signals (visual, somatic, motor). The work focuses on the study of their functional properties, to better understand their respective contribution in the neuronal circuits that make possible the interactions between subject and external environment. In the caudalmost pole of parietal lobe there is area V6. Functional data suggest that this area is related to the encoding of both objects motion and ego-motion. However, the sensitivity of V6 neurons to optic flow stimulations has been tested only in human fMRI experiments. Here we addressed this issue by applying on monkey the same experimental protocol used in human studies. The visual stimulation obtained with the Flow Fields stimulus was the most effective and powerful to activate area V6 in monkey, further strengthening this homology between the two primates. The neighboring areas, V6A and PEc, show different cytoarchitecture and connectivity profiles, but are both involved in the control of reaches. We studied the sensory responses present in these areas, and directly compared these.. We also studied the motor related discharges of PEc neurons during reaching movements in 3D space comparing also the direction and depth tuning of PEc cells with those of V6A. The results show that area PEc and V6A share several functional properties. Area PEc, unlike V6A, contains a richer and more complex somatosensory input, and a poorer, although complex visual one. Differences emerged also comparing the motor-related properties for reaches in depth: the incidence of depth modulations in PEc and the temporal pattern of modulation for depth and direction allow to delineate a trend among the two parietal visuomotor areas.
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Visual imagery – similar to visual perception – activates feature-specific and category-specific visual areas. This is frequently observed in experiments where the instruction is to imagine stimuli that have been shown immediately before the imagery task. Hence, feature-specific activation could be related to the short-term memory retrieval of previously presented sensory information. Here, we investigated mental imagery of stimuli that subjects had not seen before, eliminating the effects of short-term memory. We recorded brain activation using fMRI while subjects performed a behaviourally controlled guided imagery task in predefined retinotopic coordinates to optimize sensitivity in early visual areas. Whole brain analyses revealed activation in a parieto-frontal network and lateral–occipital cortex. Region of interest (ROI) based analyses showed activation in left hMT/V5+. Granger causality mapping taking left hMT/V5+ as source revealed an imagery-specific directed influence from the left inferior parietal lobule (IPL). Interestingly, we observed a negative BOLD response in V1–3 during imagery, modulated by the retinotopic location of the imagined motion trace. Our results indicate that rule-based motion imagery can activate higher-order visual areas involved in motion perception, with a role for top-down directed influences originating in IPL. Lower-order visual areas (V1, V2 and V3) were down-regulated during this type of imagery, possibly reflecting inhibition to avoid visual input from interfering with the imagery construction. This suggests that the activation in early visual areas observed in previous studies might be related to short- or long-term memory retrieval of specific sensory experiences.
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Two fMRI experiments explored the neural substrates of a musical imagery task that required manipulation of the imagined sounds: temporal reversal of a melody. Musicians were presented with the first few notes of a familiar tune (Experiment 1) or its title (Experiment 2), followed by a string of notes that was either an exact or an inexact reversal. The task was to judge whether the second string was correct or not by mentally reversing all its notes, thus requiring both maintenance and manipulation of the represented string. Both experiments showed considerable activation of the superior parietal lobe (intraparietal sulcus) during the reversal process. Ventrolateral and dorsolateral frontal cortices were also activated, consistent with the memory load required during the task. We also found weaker evidence for some activation of right auditory cortex in both studies, congruent with results from previous simpler music imagery tasks. We interpret these results in the context of other mental transformation tasks, such as mental rotation in the visual domain, which are known to recruit the intraparietal sulcus region, and we propose that this region subserves general computations that require transformations of a sensory input. Mental imagery tasks may thus have both task or modality-specific components as well as components that supersede any specific codes and instead represent amodal mental manipulation.