975 resultados para medial frontal cortex
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Motor cortex stimulation (MCS) has been used to treat patients with neuropathic pain resistant to other therapeutic approaches; however, the mechanisms of pain control by MCS are still not clearly understood. We have demonstrated that MCS increases the nociceptive threshold of naive conscious rats, with opioid participation. In the present study, the effect of transdural MCS on neuropathic pain in rats subjected to chronic constriction injury of the sciatic nerve was investigated. In addition, the pattern of neuronal activation, evaluated by Fos and Zif268 immunolabel, was performed in the spinal cord and brain sites associated with the modulation of persistent pain. MCS reversed the mechanical hyperalgesia and allodynia induced by peripheral neuropathy. After stimulation, Fos immunoreactivity (Fos-IR) decreased in the dorsal horn of the spinal cord and in the ventral posterior lateral and medial nuclei of the thalamus, when compared to animals with neuropathic pain. Furthermore, the MCS increased the Fos-IR in the periaqueductal gray, the anterior cingulate cortex and the central and basolateral amygdaloid nuclei. Zif268 results were similar to those obtained for Fos, although no changes were observed for Zif268 in the anterior cingulate cortex and the central amygdaloid nucleus after MCS. The present findings suggest that MCS reverts neuropathic pain phenomena in rats, mimicking the effect observed in humans, through activation of the limbic and descending pain inhibitory systems. Further investigation of the mechanisms involved in this effect may contribute to the improvement of the clinical treatment of persistent pain. (c) 2010 European Federation of International Association for the Study of Pain Chapters. Published by Elsevier Ltd. All rights reserved.
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Previous studies from our laboratory have documented that the medial hypothalamic defensive system is critically involved in processing actual and contextual predatory threats, and that the dorsal premammillary nucleus (PMd) represents the hypothalamic site most responsive to predatory threats. Anatomical findings suggest that the PMd is in a position to modulate memory processing through a projecting branch to specific thalamic nuclei, i.e., the nucleus reuniens (RE) and the ventral part of the anteromedial nucleus (AMv). In the present study, we investigated the role of these thalamic targets in both unconditioned (i.e., fear responses to predatory threat) and conditioned (i.e., contextual responses to predator-related cues) defensive behaviors. During cat exposure, all experimental groups exhibited intense defensive responses with the animals spending most of the time in the home cage displaying freezing behavior. However, during exposure to the environment previously associated with a cat, the animals with combined RE + AMv lesions, and to a lesser degree, animals with single AMv unilateral lesions, but not animals with single RE lesions, presented a reduction of contextual conditioned defensive responses. Overall, the present results provide clear evidence suggesting that the PMd`s main thalamic targets (i.e., the nucleus reuniens and the AMv) seem to be critically involved in the emotional memory processing related to predator cues. (C) 2010 Elsevier Inc. All rights reserved.
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The prefrontal cortex (PFC) receives strong inputs from monoaminergic cell groups in the brainstem and also sends projections to these nuclei. Recent evidence suggests that the PFC exerts a powerful top-down control over the dorsal raphe nucleus (DR) and that it may be involved in the actions of pharmaceutical drugs and drugs of abuse. In the light of these findings, the precise origin of prefrontal inputs to DR was presently investigated by using the cholera toxin subunit b (CTb) as retrograde tracer. All the injections placed in DR produced retrograde labeling in the medial, orbital, and lateral divisions of the PFC as well as in the medial part of the frontal polar cortex. The labeling was primarily located in layer V. Remarkably, labeling in the medial PFC was denser in its ventral part (infralimbic and ventral prelimbic cortices) than in its dorsal part (dorsal prelimbic, anterior cingulate and medial precentral cortices). After injections in the rostral or caudal DR, the largest number of labeled neurons was observed in the medial PFC, whereas after injections in the mid-rostrocaudal DR, the labeled neurons were more homogeneously distributed in the three main PFC divisions. A cluster of labeled neurons also was observed around the apex of the rostral pole of the accumbens, especially after rostral and mid-rostrocaudal DR injections. Overall, these results confirm the existence of robust preftontal projections to DR, mainly derived from the ventral part of the medial PFC, and underscore a substantial contribution of the frontal polar cortex. (C) 2008 Elsevier Inc. 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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Immediate-early genes (IEGs) expression has been widely used as a valuable tool to investigate brain areas activated by specific stimuli. Studies of natural vocalizations, specially in songbirds, have largely benefited from this tool. Here we used IEGs expression to investigate brain areas activated by the hearing of conspecific common marmoset (Callithrix jacchus) vocalizations and/or utterance of antiphonal vocalizations. Nine adult male common marmosets were housed in sound-attenuating cages. Six animals were stimulated with playbacks of freely recorded natural long distance vocalizations (phee calls and twitters; 45 min. total duration). Three of them vocalized in response (O/V group) and three did not (O/n group). The control group (C) was composed by the remaining animals, which neither heard the playbacks nor spontaneously vocalized. After one hour of the stimulation onset (or no stimulation, in the case of the C group), animals were perfused with 0,9% phosphate-saline buffer and 4% paraformaldehyde. The tissue was coronally sectioned at 20 micro meter in a cryostat and submitted to immunohistochemistry for the IEGs egr-1 and c-fos. Marked immunoreactivity was observed in the auditory cortex of O/V and O/n subjects and in the anterior cingulate cortex, the dorsomedial prefrontal cortex and the ventrolateral prefrontal cortex of O/V subjects. In this study, brain areas activated by vocalizations of common marmosets were investigated using IEGs expression for the first time. Our results with the egr-1 gene indicate that potential plastic phenomena occur in areas related to hearing and uttering conspecific vocalizations.
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We studied the distribution of NADPH-diaphorase (NADPH-d) activity in the prefrontal cortex of normal adult Cebus apella monkeys using NADPH-d histochemical protocols. The following regions were studied: granular areas 46 and 12, dysgranular areas 9 and 13, and agranular areas 32 and Oap. NADPH-d-positive neurons were divided into two distinct types, both non-pyramidal. Type I neurons had a large soma diameter (17.24 +/- 1.73 pm) and were densely stained. More than 90% of these neurons were located in the subcortical white matter and infragranular layers. The remaining type I neurons were distributed in the supragranular layers. Type II neurons had a small, round or oval soma (9.83 +/- 1.03 mu m), and their staining pattern varied markedly. Type II neurons were distributed throughout the cortex, with their greatest numerical density being observed in layers II and III. In granular areas, the number of type II neurons was up to 20 times that of type I neurons, but this proportion was smaller in agranular areas. Areal density of type II neurons was maximum in the supragranular layers of granular areas and minimum in agranular areas. Statistical analysis revealed that these areal differences were significant when comparing some specific areas. In conclusion, our results indicate a predominance of NADPH-d-positive cells in supragranular layers of granular areas in the Cebus prefrontal cortex. These findings support previous observations on the role of type II neurons as a new cortical nitric oxide source in supragranular cortical layers in primates, and their potential contribution to cortical neuronal activation in advanced mammals. (c) 2006 Elsevier B.V. All rights reserved.
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The orbit is an irregular conical cavity formed from 7 bones including the frontal, sphenoid, zygomatic, maxillary, ethmoid, lacrimal, and palatine bones. Fractures of the internal orbit can cause a number of problems, including diplopia, ocular muscle entrapment, and enophthalmos. Although muscle entrapment is relatively rare, diplopia and enophthalmos are relatively common sequelae of internal orbital fractures. Medial orbital wall fracture is relatively uncommon and represents a challenge for its anatomical reconstruction. In this context, autogenous bone graft has been the criterion standard to provide framework for facial skeleton and orbital walls. Therefore, it is possible to harvest grafts of varying size and contour, and the operation is performed through the bicoronal incision, which is the usual approach to major orbital reconstruction. Thus, this article aimed to describe a patient with a pure medial orbital wall fracture, and it was causing diplopia and enophthalmos. The orbital fracture was treated using autogenous bone graft from calvarial bone. The authors show a follow-up of 12 months, with facial symmetry and without diplopia and enophthalmos. In addition, a computed tomography scan shows excellent bone healing at the anterior and posterior parts of the medial orbital wall reconstruction. Copyright © 2013 by Mutaz B. Habal, MD.
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O período crítico de plasticidade do córtex cerebral é a etapa do desenvolvimento pós-natal do sistema nervoso onde os circuitos neurais são mais suscetíveis à mudanças influenciadas por informações oriundas do ambiente. No córtex pré-frontal de humanos, responsável pelas funções executivas, o período crítico de plasticidade estende-se desde o nascimento até o final da adolescência e início da vida adulta. Isto é definido, entre outros fatores, pelo amadurecimento das redes perineuronais, uma estrutura especializada da matriz extracelular, localizada em volta do corpo celular e dendritos proximais de interneurônios inibitórios. O objetivo desta pesquisa foi verificar o efeito do ambiente em etapas distintas da adolescência sobre a estrutura e a função do córtex pré-frontal de ratos e a distribuição da expressão espacial e temporal das redes perineuronais sob estas condições. As funções executivas foram avaliadas através de testes comportamentais medindo a capacidade de memória operacional e a inibição comportamental. Observamos que estímulos estressores crônicos imprevisíveis provocam alterações no período crítico de plasticidade do córtex pré-frontal e, consequentemente, influenciam o amadurecimento das funções executivas. Observamos também que o estresse crônico induz modificação no padrão de amadurecimento das redes perineuronais no córtex pré-frontal. Estes resultados indicam a vulnerabilidade do córtex pré-frontal de ratos adolescentes para os efeitos negativos de estímulos ambientais estressores sobre o período crítico de plasticidade.
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This research presents the results of a cephalometric radiography study, in frontal norm, that was used to measure the possible linear correlations between several linear dimensions of the face, in a sample of a 140 caucasian brazilians, with an average age of 20 years, who were distributed in 2 groups as follows: Control group - formed of 35 males and 35 females, with no apparent facial deformities and with dental oclusion, not necessarily, in Angle's Class I; Unilateral cleft lip and palate group - formed of 35 males and 35 females with surgical correction of the up in the first year and of the palate until the third year of life, without orthodontic treatment. ln each teleradiography, the following parameters were measured using a computer: - Lateral orbit width or external orbit width (LOe) - Medial orbit width or internal orbit width (LOI) - Zygomatic width or facial width (LZI) - Mastold width (LMa) - Maxilar width (LMx) - Nasal width (LNa) - Condilar width (LCo) - Antigonial width (LGa) The values obtained were treated statistically using quantitative analysis (arithmetic mean, standard deviation, standard mean error, Person's variation factor and Pearson factor linear correlation). Theirs significance was established by Student's t test. The Pearson factor linear correlations determined between transverse linear cephalometric width dimensions of face in frontal norm for individuals of both groups and sex, with an average age of 20 years, were: ...
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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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 ...
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Craniofacial trauma can lead to several complications. The combined fractures of anterior and posterior walls of the frontal bone are almost always followed by lesions in nasofrontal orifices and disruption of nasofrontal ostia or ducts, a significant factor for the development of early and late complications after sinus fractures. This article reports a case of trauma patient, who underwent neurological evaluation and at first showed good general condition. Computed tomography noted fracture of the anterior and posterior walls of the frontal sinus and small foci of pneumocephalus in the cerebral cortex. The patient was monitored periodically and 9 days after trauma showed increased areas of pneumocephalus in prefrontal cortex, cerebrospinal fluid draining, and large dura mater lesion, with signs of necrosis and inflammation (meningitis). The necrotic tissues were removed, and dura mater was repaired through the approximation with resorbable wire polyglactin 910 5-0, oxidized cellulose application, and bonding with human fibrin sealant (fibrinogen, thrombin, and calcium chloride). Sinusectomy, frontal sinus, and nasofrontal duct obliteration with pedicled pericranium flap were performed. Tomographically, a reanatomization was noted in frontal region, and a 12-month follow-up showed no complication. The use of fibrin glue to repair dura mater lacerations, as well as the pedicle pericranium flap for frontal sinus and nasofrontal duct obliteration, is an efficient method for treating fractures of the frontal bone.
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The medial amygdaloid nucleus (MeA) is a part of the limbic system and is involved in cardiovascular modulation. We previously reported that microinjection of noradrenaline (NA) into the MeA of unanesthetized rats caused pressor and bradycardiac responses, which were mediated by acute vasopressin release into the systemic circulation. In the present study, we tested the possible involvement of magnocellular neurons of the paraventricular (PVN) and/or supraoptic (SON) of the hypothalamus that synthesize vasopressin in the cardiovascular pathway activated by the microinjection of NA into the MeA. Pressor and bradycardiac responses to the microinjection of NA (27 nmol/100 nL) into the MeA were blocked by pretreatment of either the PVN or the SON with cobalt chloride (CoCl2, 1 mM/100 nL), thus indicating that both hypothalamic nuclei mediate the cardiovascular responses evoked by microinjection of NA Into the MeA. Our results suggest that the pressor and bradycardiac response caused by the microinjection of NA into the MeA is mediated by magnocellular neurons in both the PVN and SON. (C) 2012 IBRO. Published by Elsevier Ltd. All rights reserved.
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We have previously reported that noradrenaline (NA) microinjected into the lateral septal area (LSA) caused pressor and bradicardic responses that were mediated by vasopressin release into the circulation through the paraventricular nucleus of hypothalamus (PVN). Although PVN is the final structure involved in the cardiovascular responses caused by NA in the LSA, there is no evidence of direct connections between these areas, suggesting that some structures could be links in this pathway. In the present study, we verified the effect of reversible synaptic inactivation of the medial amygdaloid nucleus (MeA), bed nucleus of stria terminalis (BNST) or diagonal band of Broca (DBB) with Cobalt Chloride (CoCl2) on the cardiovascular response to NA microinjection into the LSA of unanesthetized rats. Male Wistar rats had guide cannulae implanted into the LSA and the MeA, BNST or DBB for drug administration, and a femoral catheter for blood pressure and heart rate recordings. Local microinjection of CoCl2 (1 mm in 100 nL) into the MeA significantly reduced the pressor and bradycardic responses caused by NA microinjection (21 nmol in 200 nL) into the LSA. In contrast, microinjection of CoCl2 into the BNST or DBB did not change the cardiovascular responses to NA into the LSA. The results indicate that synapses within the MeA, but not in BNST or DBB, are involved in the cardiovascular pathway activated by NA microinjection into the LSA.
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Objective: To show data on the performance of healthy subjects in the Frontal Assessment Battery (FAB), correlating with gender, age, education, and scores in the Mini-Mental State Examination (MMSE). Methods: Two hundred and seventy-five healthy individuals with mean age of 66.4 +/- 10.6 years-old were evaluated. Mean total FAB scores were established according to the educational level. Results: Mean total FAB scores according to the educational level were 10.9 +/- 2.3, for one to three years; 12.8 +/- 2.7, for four to seven years; 13.8 +/- 2.2, for eight to 11 years; and 15.3 +/- 2.3, for 12 or more years. Total FAB scores correlated significantly with education (r=0.47; p<0.0001) and MMSE scores (r=0.39; p<0.0001). No correlation emerged between FAB scores, age, and gender. Conclusion: In this group of healthy subjects, the Brazilian version of the FAB proved to be influenced by the education level, but not by age and gender.