977 resultados para Frontal-lobe


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Social behavior depends on the integrity of social brain circuitry. The temporal lobe is an important part of the social brain, and manifests morphological and functional alterations in autism spectrum disorders (ASD). Rats with temporal lobe epilepsy (TLE), induced with pilocarpine, were subjected to a social discrimination test that has been used to investigate potential animal models of ASD, and the results were compared with those for the control group. Rats with TLE exhibited fewer social behaviors than controls. No differences were observed in nonsocial behavior between groups. The results suggest an important role for the temporal lobe in regulating social behaviors. This animal model might be used to explore some questions about ASD pathophysiology. (c) 2008 Elsevier Inc. All rights reserved.

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Reactive oxygen species (ROS) appear to be involved in several neurodegenerative disorders. We tested the hypothesis that oxidative stress could have a role in the hippocampal neurodegeneration observed in temporal lobe epilepsy induced by pilocarpine. We first determined the spatio-temporal pattern of ROS generation, by means of detection with dihydroethidium oxidation, in the CA1 and CA3 areas and the dentate gyrus of the dorsal hippocampus during status epilepticus induced by pilocarpine. Fluoro-Jade B assays were also performed to detect degenerating neurons. ROS generation was increased in CA1, CA3 and the dentate gyrus after pilocarpine-induced seizures, which was accompanied by marked cell death. Treatment of rats with a NADPH oxidase inhibitor (apocynin) for 7 days prior to induction of status epilepticus was effective in decreasing both ROS production (by an average of 20%) and neurodegeneration (by an average of 61%). These results suggest an involvement of ROS generated by NADPH oxidase in neuronal death in the pilocarpine model of epilepsy. (C) 2010 Elsevier Ireland Ltd. All rights reserved.

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The relationship between sleep and epilepsy is both complex and clinically significant. Temporal lobe epilepsy (TLE) influences sleep architecture, while sleep plays an important role in facilitating and/or inhibiting possible epileptic seizures. The pilocarpine experimental model reproduces several features of human temporal lobe epilepsy and is one of the most widely used models in basic research. The aim of the present study was to characterize, behaviorally and electrophysiologically, the phases of sleep-wake cycles (SWC) in male rats with pilocarpine-induced epilepsy. Epileptic rats presented spikes in all phases of the SWC as well as atypical cortical synchronization during attentive wakefulness and paradoxical sleep. The architecture of the sleep-wake phases was altered in epileptic rats, as was the integrity of the SWC. Because our findings reproduce many relevant features observed in patients with epilepsy, this model is suitable to study sleep dysfunction in epilepsy. (C) 2009 Elsevier Inc. All rights reserved.

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Although the anti-inflammatory actions of glucocorticoids (GCs) are well established, evidence has accumulated showing that proinflammatory GC effects can occur in the brain, in a poorly understood manner. Using electrophoretic mobility shift assay, real-time PCR, and immunoblotting, we investigated the ability of varying concentrations of corticosterone (CORT, the GC of rats) to modulate lipopolysaccharide (LPS)-induced activation of NF-kappa B (nuclear factor kappa B), expression of anti- and proinflammatory factors and of the MAP (mitogen-activated protein) kinase family [ERK (extracellular signal-regulated kinase), p38, and JNK/ SAPK (c-Jun N-terminal protein kinase/ stress-activated protein kinase)], and AKT. In the frontal cortex, elevated CORT levels were proinflammatory, exacerbating LPS effects on NF-kappa B, MAP kinases, and proinflammatory gene expression. Milder proinflammatory GCs effects occurred in the hippocampus. In the absence of LPS, elevated CORT levels increased basal activation of ERK1/ 2, p38, SAPK/ JNK, and AKT in both regions. These findings suggest that GCs do not uniformly suppress neuroinflammation and can even enhance it at multiple levels in the pathway linking LPS exposure to inflammation.

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We investigated the temporal dynamics and changes in connectivity in the mental rotation network through the application of spatio-temporal support vector machines (SVMs). The spatio-temporal SVM [Mourao-Miranda, J., Friston, K. J., et al. (2007). Dynamic discrimination analysis: A spatial-temporal SVM. Neuroimage, 36, 88-99] is a pattern recognition approach that is suitable for investigating dynamic changes in the brain network during a complex mental task. It does not require a model describing each component of the task and the precise shape of the BOLD impulse response. By defining a time window including a cognitive event, one can use spatio-temporal fMRI observations from two cognitive states to train the SVM. During the training, the SVM finds the discriminating pattern between the two states and produces a discriminating weight vector encompassing both voxels and time (i.e., spatio-temporal maps). We showed that by applying spatio-temporal SVM to an event-related mental rotation experiment, it is possible to discriminate between different degrees of angular disparity (0 degrees vs. 20 degrees, 0 degrees vs. 60 degrees, and 0 degrees vs. 100 degrees), and the discrimination accuracy is correlated with the difference in angular disparity between the conditions. For the comparison with highest accuracy (08 vs. 1008), we evaluated how the most discriminating areas (visual regions, parietal regions, supplementary, and premotor areas) change their behavior over time. The frontal premotor regions became highly discriminating earlier than the superior parietal cortex. There seems to be a parcellation of the parietal regions with an earlier discrimination of the inferior parietal lobe in the mental rotation in relation to the superior parietal. The SVM also identified a network of regions that had a decrease in BOLD responses during the 100 degrees condition in relation to the 0 degrees condition (posterior cingulate, frontal, and superior temporal gyrus). This network was also highly discriminating between the two conditions. In addition, we investigated changes in functional connectivity between the most discriminating areas identified by the spatio-temporal SVM. We observed an increase in functional connectivity between almost all areas activated during the 100 degrees condition (bilateral inferior and superior parietal lobe, bilateral premotor area, and SMA) but not between the areas that showed a decrease in BOLD response during the 100 degrees condition.

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Although ATP and P2X receptor activity have been lately associated with epilepsy, little is known regarding their exact roles in epileptogenesis. Temporal-lobe epilepsy (TLE) in rat was induced by pilocarpine in order to study changes of hippocampal P2X(2), P2X(4) and P2X(7) receptor expression during acute, latent or chronic phases of epilepsy. During acute and chronic phases increased P2X(7) receptor expression was principally observed in glial cells and glutamatergic nerve terminals, suggesting participation of this receptor in the activation of inflammatory and excitotoxic processes during epileptogenesis. No significant alterations of hippocampal P2X(2) and P2X(4) receptor expression was noted during the acute or latent phase when compared to the control group, indicating that these receptors are not directly involved with the initiation of epilepsy. However, the reduction of hippocampal P2X(4) receptor immunostaining in the chronic phase could reflect neuronal toss or decreased GABAergic signaling. (C) 2008 Elsevier B.V. All rights reserved.

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A memória pode ser definida como o armazenamento e a evocação de uma informação aprendida. Sendo um processo dinâmico, requer a ativação de diversos sistemas para que a informação adquirida seja consolidada. O ATP é um importante neurotransmissor que, após a sua liberação e conseqüente ativação de seus receptores específicos, precisa ser inativado. Esta remoção do ATP da fenda sináptica ocorre através de sua hidrólise promovida pelas ectonucleotidases. Como um dos produtos da hidrólise do ATP, a adenosina é considerada um potente neuromodulador e exerce suas ações através de receptores específicos com ações excitatórias (A2A e A2B ) ou inibitórias (A1 e A3). Vários trabalhos já demonstraram a participação do sistema purinérgico nos processos relacionados a memória da tarefa da esquiva inibitória. Estudos realizados em nosso laboratório mostraram a participação das ectonucleotidases sinaptossomais de hipocampo, córtex entorrinal e córtex parietal na consolidação da memória para esquiva inibitória. No entanto, existem poucos estudos a respeito do sistema purinérgico nos mecanismos de consolidação da memória em outras regiões cerebrais, tais como o córtex cingulado anterior (CA) e posterior (CP) e a área pré-central medial (FR2). Portanto, na primeira parte deste estudo, avaliamos as atividades ectonucleotidásicas em sinaptossomas de CA, CP e FR2 de ratos submetidos à tarefa de esquiva inibitória. Nossos resultados demonstraram um aumento na hidrólise de ATP em sinaptossomas de FR2 e CA; e na hidrólise de ADP em sinaptossomas de FR2 e CP. Este aumento na hidrólise de ATP e ADP ocorreu devido ao choque administrado na tarefa, já que o grupo de animais que não recebeu choque não apresentou alterações na hidrólise de ATP e ADP. Este efeito observado provavelmente não está associado à consolidação da memória, mas a mudanças neuroquímicas e neurohumorais induzidas pelo estresse após o choque. Além disso, foi observado um aumento relacionado ao aprendizado na atividade ATPásica e ADPásica em CP e CA, respectivamente. Estes resultados sugerem fortemente que estas enzimas participam da consolidação da memória em CP e CA. O aumento na hidrólise de ATP e ADP sugere um possível aumento na concentração de adenosina nestas regiões. Portanto, na segunda parte deste estudo, verificamos a influência de agonistas e antagonistas de receptores de adenosina nas memórias de curta (STM) e de longa (LTM) duração na tarefa de esquiva inibitória. Então, neste estudo administramos intrafusões de análogos de adenosina em CP, imediatamente após o treino em esquiva inibitória. Os resultados demonstraram que a intrafusão de DPCPX, um antagonista de receptores A1, em CP, na concentração de 50 nM, aumentou significativamente a retenção da tarefa em ambas STM e LTM. Além disso, a administração de CPA, um agonista de receptores A1 de adenosina, não alterou ambas STM e LTM nas concentrações testadas. Portanto, este estudo sugere que os receptores A1 exercem uma modulação inibitória em CP tanto na STM quanto na LTM para o aprendizado de esquiva inibitória. A regulação dos níveis de ATP e adenosina pelas ectonucleotidases em CP, CA e FR2 controlaria a ativação dos receptores A1 nestas estruturas, podendo exercer efeitos modulatórios na consolidação da memória nestas estruturas.

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Introdução: Diversas anormalidades neuroquímicas têm sido relatadas no Transtorno Bipolar (TB), mas os verdadeiros mecanismos envolvidos na fisiopatologia do TB permanecem a ser elucidados. A técnica de espectroscopia por ressonância magnética (1H-MRS) permite a mensuração de certos neurometabólitos no cérebro humano in vivo. Nós utilizamos a 1H-MRS para investigar o N-acetil-L-aspartato (NAA), compostos de colina (Cho), creatina/fosfocreatina (Cr) e o myoinositol (Ino) no córtex pré-frontal dorsolateral (CPFDL) em indivíduos bipolares durante episódio maníaco/misto. Métodos: Dez pacientes bipolares (9 maníacos, 1 misto), diagnosticados através de uma entrevista clínica semi-estruturada (SCID), e 10 voluntários normais pareados por sexo e idade foram estudados. Os neurometabólitos foram mensurados através de voxels de 8cm3 localizados no CPFDL direito e esquerdo para aquisição da 1H-MRS de 1.5T. Imagens de ressonância magnética anatômica ponderadas em T1 e T2 foram obtidas para excluir quaisquer anormalidades neuroanatômicas. Resultados: Não foram encontradas diferenças significativas para NAA, Cho, Cr, Ino, NAA/Cr, Cho/Cr, ou Ino/Cr entre pacientes e controles. Pacientes maníacos/mistos apresentaram níveis significativamente aumentados de myoinositol no CPFDL esquerdo em relação ao CPFDL direito (p = 0,044). Conclusões: Elevação do myoinositol no CPFDL esquerdo em pacientes bipolares durante mania aguda pode representar uma disfunção na via de sinalização do fosfatidilinositol. Estudos longitudinais com maior amostra avaliando o pré e pós-tratamento são necessários para melhor esclarecer este tema.

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A serotonina (5-hidroxitriptamina, 5-HT), é um dos neurotransmissores que possui um papel importante na neurobiologia do comportamento agressivo. Estudos têm demonstrado que níveis elevados de serotonina conduzem a uma diminuição da agressividade em muitas espécies diferentes incluindo a espécie humana. Os receptores 5-HT1B estão envolvidos em funções comportamentais importantes, como o comportamento agressivo. Injeções sistêmicas de agonistas dos receptores 5-HT1B apresentam efeitos específicos antiagressivos. Recentemente, no córtex pré-frontal, mais especificamente na região orbitofrontal, tem sido identificado uma importante inibição no controle do comportamento, em particular o comportamento impulsivo e agressivo. O objetivo do presente trabalho foi avaliar os efeitos de dois agonistas dos receptores 5-HT1B o CP-94,253 e o CP-93,129 sobre o comportamento agressivo de ratas fêmeas submetidas à provocação social e o papel do córtex pré-frontal: a região orbitofrontal, sobre o comportamento agressivo. Foram utilizadas ratas fêmeas Wistar microinjetadas no nono dia pós-parto com CP-94,253 ou CP-93,129. O agonista dos receptores 5-HT1B o CP-94,253 foi injetado nas doses de 0,56 (n=8) e 1,0 μg/0,2μl (n=8). O outro agonista dos receptores 5-HT1B o CP-93,129 foi injetado na dose de 1,0 μg/0,2μl (n=9). O veículo para o CP-94,253 foi Dimetilsulfóxido (DMSO) 5% juntamente com 5% de Tween 80 diluídos em água destilada e para o CP-93,129 o veículo foi salina. O experimento iniciou com fêmeas prenhas. No 5º dia pós-parto, a fêmea foi submetida ao protocolo de provocação social. No 6º dia pós-parto, a fêmea foi submetida à cirurgia estereotáxica e no 9º dia pós-parto a fêmea foi microinjetada com veículo ou agonistas 5- HT1B. Após a microinjeção foi realizado o teste comportamental, sendo que os comportamentos - agressivos e não-agressivos – foram filmados para posterior análise. A freqüência dos comportamentos foi comparada entre os grupos tratados e veículo pela análise de variância no grupo do CP-94,253 e foi utilizado pelo Teste t de Student para comparar o grupo CP-93,129 com o veículo. Os resultados mostraram uma diminuição no comportamento agressivo maternal (ataque lateral, postura agressiva e dominar) após a microinjeção do agonista CP-93,129 comparado com o grupo salina. Os dois agonistas dos receptores 5-HT1B o CP-94,253 e o CP-93,129 não tiveram os mesmos efeitos. O CP- 93,129, quando microinjetado no córtex pré-frontal, na região orbitofrontal de ratas submetidas à provocação social, tem efeitos antiagressivos enquanto que o CP-94,253 não alterou o comportamento agressivo.

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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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Cortical interneurons are characterized by their distinct morphological, physiological and biochemical properties, acting as modulators of the excitatory activity by pyramidal neurons, for example. Various studies have revealed differences in both distribution and density of this cell group throughout distinct cortical areas in several species. A particular class of interneuron closely related to cortical modulation is revealed by the immunohistochemistry for calcium binding proteins calbindin (CB), calretinina (CR) and parvalbumin (PV). Despite the growing amount of studies focusing on calcium binding proteins, the prefrontal cortex of primates remains relatively little explored, particularly in what concerns a better understanding of the organization of the inhibitory circuitry across its subdivisions. In the present study we characterized the morphology and distribution of neurons rich in calcium-binding proteins in the medial, orbital and dorsolateral areas of the prefrontal cortex of the marmoset (Callithrix jacchus). Using both morphometric and stereological techniques, we found that CR-reactive neurons (mainly double bouquet and bipolar cells) have a more complex dendritic arborization than CB-reactive (bitufted and basket cells) and PV-reactive neurons (chandelier cells). The neuronal densities of CR- and CB-reactive cells are higher in the supragranular layers (II/III) whilst PV-reactive neurons, conversely, are more concentrated in the infragranular layers (V/VI). CR-reactive neurons were the predominant group in the three regions evaluated, being most prevalent in dorsomedial region. Our findings point out to fundamental differences in the inhibitory circuitry of the different areas of the prefrontal cortex in marmoset

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Purpose: the purpose of this study was to evaluate complications occurring after immediate reconstruction of severe frontal sinus fractures, including cases where the fracture was not limited to the anterior wall and also involved the posterior wall and/or sinus floor.Patients and Methods: the records of twenty-six patients presently undergoing follow-up for frontal sinus fracture reconstruction were reviewed. Information regarding demographics, fracture characteristics and causes, associated facial fractures, use of grafts or implants, type of fixation used, nasofrontal duct management, use of antibiotics, and complications were noted. Patients were asked to return for clinical and radiographic follow-up to access late complications.Results: the average age of patients with frontal fractures was 29.1 years and 92.3% were male. Mean follow-up was 3.6 years. The most common causes of fracture were motor vehicle accidents and physical aggression. All patients presented with comminuted and dislocated anterior wall fractures, 34.6% presented with posterior wall fractures, and 46% had sinus floor fractures. Complications occurred in 7 patients (26.92%) and included pneumoencephalus, frontal cutaneous fistula, frontal bone irregularity, and sinusitis.Conclusions: Frontal sinus reconstruction is a good procedure for immediate fracture treatment if there is not excessive comminution, dislocation, or instability of the posterior wall and if the frontonasal duct area is intact or can be repaired. Most complications result from incorrect indication for reconstruction. (C) 2004 American Association of Oral and Maxillofacial Surgeons.

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Purpose: In this study, we evaluated the results of spontaneous osteoneogenesis of the frontal sinus with autogenous bone plug versus obliteration with heterogeneous (human) bone in monkeys (Cebus apella).Materials and Methods: Eight young adult male C apella monkeys underwent an ostectomy of the anterior wall of the frontal sinus, removal of the sinus mucosa, and inner decortication of the bony walls and then were divided into 2 groups of 4 each, as follows. Group I monkeys underwent obliteration of the nasofrontal ducts with a free segment of frontallis muscle and corticocancellous heterogeneous bone, followed by full obliteration of the sinus with corticocancellous heterogeneous bone (Dayton Regional Tissue Bank, Dayton, OH). Group II monkeys underwent obliteration of the nasofrontal ducts with a frontal muscle segment and tibial autogenous bone plug, without full obliteration of the frontal sinus. In all animals, the sinus anterior wall was repositioned and fixed with 1.0 plate and screws. The monkeys were killed after 180 days, and routine laboratory procedures were followed for hematoxylin-eosin staining and histologic evaluation of the specimens.Results: the 2 studied techniques were both effective in obliterating the frontal sinus with newly formed bone. The nasofrontal ducts were obliterated by new bone formation or fibrous tissue (1 animal only).Conclusions: Both methods used for frontal sinus obliteration were effective; the heterogeneous bone (human bone) was well tolerated and presented low antigenicity. The nasofrontal duct obliteration with autogenous muscle associated with autogenous tibial bone (group II) or with heterogeneous bone (group I) was effective, isolating the frontal sinus from the nasal cavity. The spontaneous obliteration resulted, in the period analyzed, in earlier bone maturation compared with the obliteration by heterogeneous bone. (C) 2003 American Association of Oral and Maxillofacial Surgeons.

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