905 resultados para Neuromuscular junction


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Reclamações contra a sinalização viária existente no Rio de Janeiro são comuns. A cidade ainda é a porta de entrada do Brasil e o destino preferido dos visitantes. Dentro de pouco tempo, o Rio será palco de importantes eventos esportivos internacionais e há preocupação em como poderá a cidade oferecer orientação para os turistas que nela venham a transitar. Este estudo procura saber quais são, de fato, os motivos que justificam as incessantes queixas contra a sinalização instalada e procura extrair daí diretrizes que possam ser aplicadas aos projetos de sistemas de sinalização que efetivamente resolvam os problemas de orientação dos usuários. Para isso, procurou-se primeiro mapear o contexto histórico em que vem evoluindo a sinalização de trânsito; em seguida, examinou-se em que implica o desenvolvimento de projetos de sinalização em geral; para no próximo passo se focar questões da sinalização de trânsito. Foram feitos dois levantamentos: o primeiro, de entrevistas estruturadas individualizadas com taxistas, que são usuários intensos das vias e da sinalização. A amostra escolhida foi de 19 taxistas frequentadores da Praça Santos Dumont, localizada na Zona Sul da cidade, e um importante entroncamento de tráfego. O segundo envolveu cinco profissionais designers com o perfil de experiência prévia no desenvolvimento de projetos de sistemas de sinalização. Com esse grupo, a técnica utilizada foi a de Think Aloud Protocol, através da qual cada um desses indivíduos foi acompanhado e documentado enquanto dirigia e se orientava pela sinalização num trajeto que vai desde a citada Praça Santos Dumont até o Estádio do Maracanã, situado na Zona Norte da cidade, e que costuma ser um destino preferencial em eventos esportivos. Os resultados das duas pesquisas foram analisados e deles extraídas diretrizes que são apresentadas nas Conclusões e que objetivam a eficácia do sistema através de mensagens claras, textos legíveis, posicionamento oportuno e estabilidade formal visando o reconhecimento e o entendimento por parte do usuário.

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Este trabalho busca compor um quadro das práticas cotidianas de jovens frequentadores das oficinas de jazz oferecidas pelo Centro Cultural Cartola (CCC). Contextualizado dentro de um universo tradicionalmente conhecido por sua origem no samba, esse território de arte e de expressão através do corpo e da música contempla outros movimentos musicais, principalmente o jazz e o moderno, possibilitando um conjunto de múltiplos sentidos e ressignificações na vida destes participantes. Como fundamentação epistemológica, foi utilizada a Teoria Ator-Rede (TAR), concebida como forma de abordar a fabricação dos fatos, ao abranger, simetricamente, natureza e sociedade, humano e não humano. Foram igualmente consideradas as possíveis configurações de interação e sociabilidade que envolvem território, sujeito e demais atores da rede, os quais conseguem reconhecer-se diante do outro, do diferente, e construírem um projeto individual e coletivo frente à sociedade multicultural em que estão inseridos. Para isso, foram realizadas entrevistas que, por sua vez, são complementos à descrição interpretativa registrada no diário de campo, permitindo a dimensão de improviso, de manejo das situações e de envolvimento nas incessantes redefinições processuais. O campo explorado foi, estritamente, o de jovens adolescentes, num recorte etário de 14 a 21 anos. Todos deveriam estar matriculados na escola ensino fundamental e médio e residir em comunidade, não sendo necessariamente a Mangueira. As abordagens contemplaram também as incontáveis participações do professor da oficina de jazz. Durante o processo, emanou-se a existência de um apaixonamento e de uma apropriação por parte de todos os envolvidos com a oficina: parte administrativa, pedagógica e docente, garantindo autonomia e diferencial no universo social do grupo, cujas escolhas legitimam o quanto o investimento na cultura produz artistas conscientes da beleza inerente à própria arte e aos afetamentos daí advindos. Interessante ressaltar que o samba funciona como marca histórica e temporal do CCC, mas a principal motivação ali percebida estava no encontro mediado pela dança, junção corpo/música, presente na vida dos participantes desde a infância, além do prazer de pertencerem a um grupo afim, movido por histórias semelhantes. Junto a isso, o professor exercia o papel de liderança velada, a mediar as relações e a produzir efeitos de coesão grupal, com suas ideias e incentivo à expressão pela dança, de modo a dar lugar a novas descobertas e ressignificação

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A constipação intestinal e a disfunção do trato urinário inferior são condições associadas e bastante prevalentes na infância e adolescência. Existem múltiplas teorias para explicar essa associação, como: o efeito mecânico do reto cheio sobre a parede e o colo vesical; estimulo de reflexos sacrais a partir do reto distendido, e mais recentemente, a associação entre a bexiga e o reto no sistema nervoso central. Muitas destas crianças e adolescentes apresentam constipação refratária. Esse fato chama a atenção para a possibilidade de existência de uma desordem neuromuscular comum envolvendo o cólon e o trato urinário inferior. O objetivo desse estudo foi avaliar o trânsito colônico de crianças e adolescentes com constipação crônica refratária e sintomas do trato urinário inferior. Foi realizado um estudo observacional com análise transversal, no qual foram incluídos 16 indivíduos com constipação refratária e sintomas do trato urinário inferior, com idades entre sete e 14 anos (média de idade de 9,67 anos). Os participantes foram avaliados utilizando anamnese padrão; exame físico; diário miccional e das evacuações; escala de Bristol; Disfunctional Voiding Scoring System com versão validada para o português; ultrassonografia renal, de vias urinárias e medida de diâmetro retal; urodinâmica, estudo de trânsito colônico com marcadores radiopacos e manometria anorretal. O estudo de trânsito foi normal em três (18,75%) crianças, dez (62,5%) apresentaram constipação de trânsito lento e três (18,75%) obstrução de via de saída. A avaliação urodinâmica estava alterada em 14 das 16 crianças estudadas: dez (76,9%) apresentaram hiperatividade detrusora associada à disfunção miccional, três (23,1%) hiperatividade vesical isolada e um (6,25%) disfunção miccional sem hiperatividade vesical. Ao compararmos constipação de trânsito lento e disfunção do trato urinário inferior, dez (100%) sujeitos com constipação de trânsito lento e três (50%) sem constipação de trânsito lento apresentavam hiperatividade vesical (p=0,036). Sete (70%) sujeitos com constipação de trânsito lento e quatro (66,7%) sem constipação de trânsito lento apresentavam disfunção miccional (p=0,65). Ao compararmos constipação de trânsito lento e a presença de incontinência urinária, esta estava presente em nove (90%) participantes com constipação de trânsito lento e em um (16,7%) sem constipação de trânsito lento (p = 0,008). Quanto à urgência urinária, estava presente em 10 (100%) e três (50%) respectivamente (p = 0,036). O escore do Disfunctional Voiding Scoring System variou de 6 a 21. O subgrupo com constipação de trânsito lento mostrou um escore de Disfunctional Voiding Scoring System significativamente maior que o subgrupo sem constipação de trânsito lento. O presente estudo demonstrou alta prevalência de constipação de trânsito lento em crianças e adolescentes com constipação refratária e sintomas do trato urinário inferior. Este estudo foi pioneiro em demonstrar a associação entre hiperatividade vesical e constipação de trânsito lento e coloca em voga a possibilidade de uma desordem neuromuscular comum, responsável pela dismotilidade vesical e colônica. Futuros estudos envolvendo a motilidade intestinal e vesical são necessários para melhor compreensão do tema e desenvolvimento de novas modalidades terapêuticas.

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There is ample evidence that humans are able to control the endpoint impedance of their arms in response to active destabilizing force fields. However, such fields are uncommon in daily life. Here, we examine whether the CNS selectively controls the endpoint impedance of the arm in the absence of active force fields but in the presence of instability arising from task geometry and signal-dependent noise (SDN) in the neuromuscular system. Subjects were required to generate forces, in two orthogonal directions, onto four differently curved rigid objects simulated by a robotic manipulandum. The endpoint stiffness of the limb was estimated for each object curvature. With increasing curvature, the endpoint stiffness increased mainly parallel to the object surface and to a lesser extent in the orthogonal direction. Therefore, the orientation of the stiffness ellipses did not orient to the direction of instability. Simulations showed that the observed stiffness geometries and their pattern of change with instability are the result of a tradeoff between maximizing the mechanical stability and minimizing the destabilizing effects of SDN. Therefore, it would have been suboptimal to align the stiffness ellipse in the direction of instability. The time course of the changes in stiffness geometry suggests that modulation takes place both within and across trials. Our results show that an increase in stiffness relative to the increase in noise can be sufficient to reduce kinematic variability, thereby allowing stiffness control to improve stability in natural tasks.

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From the wide spectrum of potential applications of graphene, ranging from transistors and chemical sensors to nanoelectromechanical devices and composites, the field of photonics and optoelectronics is believed to be one of the most promising. Indeed, graphene's suitability for high-speed photodetection was demonstrated in an optical communication link operating at 10 Gbit s(-1). However, the low responsivity of graphene-based photodetectors compared with traditional III-V-based ones is a potential drawback. Here we show that, by combining graphene with plasmonic nanostructures, the efficiency of graphene-based photodetectors can be increased by up to 20 times, because of efficient field concentration in the area of a p-n junction. Additionally, wavelength and polarization selectivity can be achieved by employing nanostructures of different geometries.

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Lateral insulated gate bipolar transistors (LIGBTs) in silicon-on-insulator (SOI) show a unique turn off characteristic when compared to junction-isolated RESURF LIGBTs or vertical IGBTs. The turn off characteristic shows an extended `terrace' where, after the initial fast transient characteristic of IGBTs due to the loss of the electron current, the current stays almost at the same value for an extended period of time, before suddenly dropping to zero. In this paper, we show that this terrace arises because there is a value of LIGBT current during switch off where the rate of expansion of the depletion region with respect to the anode current is infinite. Once this level of anode current is approached, the depletion region starts to expand very rapidly, and is only stopped when it reaches the n-type buffer layer surrounding the anode. Once this happens, the current rapidly drops to zero. A quasi-static analytic model is derived to explain this behaviour. The analytically modelled turn off characteristic agrees well with that found by numerical simulation.

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This paper presents an analytical model for the determination of the basic breakdown properties of three-dimensional (3D)-RESURF/CoolMOS/super junction type structures. To account for the two-dimensional (2D) effect of the 3D-RESURF action, 2D models of the electric field distribution are developed. Based on these, expressions are derived for the breakdown voltage as a function of doping concentration and physical dimensions. In addition to cases where the drift regions are fully depleted, the model developed is also applicable to situations involving drift regions which are almost depleted. Accuracy of the analytical approach is verified by comparison with numerical results obtained from the MEDICI device simulator.

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There is a clear and increasing interest in short time annealing processing far below one second, i.e. the lower limit of Rapid Thermal Processing (RTP) called spike annealing. This was driven by the need of suppressing the so-called Transient Enhanced Diffusion in advanced boronimplanted shallow pn-junctions in silicon technology. Meanwhile the interest in flash lamp annealing (FLA) in the millisecond range spread out into other fields related to silicon technology and beyond. This paper reports on recent experiments regarding shallow junction engineering in germanium, annealing of ITO layers on glass and plastic foil to form an conductive layer as well as investigations which we did during the last years in the field of wide band gap semiconductor materials (SiC, ZnO). A more common feature evolving from our work was related to the modeling of wafer stress during millisecond thermal processing with flash lamps. Finally recent achievements in the field of silicon-based light emission basing on Metal-Oxide-Semiconductor Light Emitting Devices will be reported. © 2007 IEEE.

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This paper reviews the advances that flash lamp annealing brings to the processing of the most frequently used semiconductor materials, namely silicon and silicon carbide, thus enabling the fabrication of novel microelectronic structures and materials. The paper describes how such developments can translate into important practical applications leading to a wide range of technological benefits. Opportunities in ultra-shallow junction formation, heteroepitaxial growth of thin films of cubic silicon carbide on silicon, and crystallization of amorphous silicon films, along with the technical reasons for using flash lamp annealing are discussed in the context of state-of-the-art materials processing. © 2005 IEEE.

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This paper presents a SPICE model of the SuperJunction Insulated Gate Bipolar Transistor (SJIGBT) [1]. SPICE simulation results are in good agreement with the DESSIS simulation results under DC conditions. This model consists of an intrinsic MOSFET and a parallel combination of a wide and a narrow base pnp BJTs. A parasitic JFET is also included to account for the restricted current flow between two adjacent p-wells. In addition the JFET component also models the additional depletion region caused by the transverse junction at the upper side of the n-drift region where the current is mainly transported via majority carriers.

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From the wide spectrum of potential applications of graphene, ranging from transistors and chemical sensors to nanoelectromechanical devices and composites, the field of photonics and optoelectronics is believed to be one of the most promising. Indeed, graphene's suitability for high-speed photodetection was demonstrated in an optical communication link operating at 10 Gbit s 1. However, the low responsivity of graphene-based photodetectors compared with traditional III-V-based ones is a potential drawback. Here we show that, by combining graphene with plasmonic nanostructures, the efficiency of graphene-based photodetectors can be increased by up to 20 times, because of efficient field concentration in the area of a p-n junction. Additionally, wavelength and polarization selectivity can be achieved by employing nanostructures of different geometries. © 2011 Macmillan Publishers Limited. All rights reserved.

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This study investigated the neuromuscular mechanisms underlying the initial stage of adaptation to novel dynamics. A destabilizing velocity-dependent force field (VF) was introduced for sets of three consecutive trials. Between sets a random number of 4-8 null field trials were interposed, where the VF was inactivated. This prevented subjects from learning the novel dynamics, making it possible to repeatedly recreate the initial adaptive response. We were able to investigate detailed changes in neural control between the first, second and third VF trials. We identified two feedforward control mechanisms, which were initiated on the second VF trial and resulted in a 50% reduction in the hand path error. Responses to disturbances encountered on the first VF trial were feedback in nature, i.e. reflexes and voluntary correction of errors. However, on the second VF trial, muscle activation patterns were modified in anticipation of the effects of the force field. Feedforward cocontraction of all muscles was used to increase the viscoelastic impedance of the arm. While stiffening the arm, subjects also exerted a lateral force to counteract the perturbing effect of the force field. These anticipatory actions indicate that the central nervous system responds rapidly to counteract hitherto unfamiliar disturbances by a combination of increased viscoelastic impedance and formation of a crude internal dynamics model.

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In many power converter applications, particularly those with high variable loads, such as traction and wind power, condition monitoring of the power semiconductor devices in the converter is considered desirable. Monitoring the device junction temperature in such converters is an essential part of this process. In this paper, a method for measuring the insulated gate bipolar transistor (IGBT) junction temperature using the collector voltage dV/dt at turn-OFF is outlined. A theoretical closed-form expression for the dV/dt at turn-OFF is derived, closely agreeing with experimental measurements. The role of dV/dt in dynamic avalanche in high-voltage IGBTs is also discussed. Finally, the implications of the temperature dependence of the dV/dt are discussed, including implementation of such a temperature measurement technique. © 2006 IEEE.

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Annual cycle of gonad development and spawning in pearl oyster, Pinctada ficata (Gould) in Nakhiloo, Northeast Persian Gulf, was investigated over two years from August 1994 to June 1996. Gonadal condition was assessed by staging criteria to describe gametogenic development from histological preparations of randomly collected individuals of all sizes. A bimodal gametogenic pattern with summer and autumn spawning periods was evident throughout the study. Gametogensis commenced in November-December which proceeded by major gonadal maturation during February-April. Summer spawning was observed from April to July with major spawning at the latter end. During spawning peak in July, low level of gametogensis was noticed. Gametogenic activity was picked up again in August-September which proceeded by autumn spawning from September to December. Towards the end of spawning season, incidence of gonadal inactivation increased. Minimum level of gonadal activity was observed in November. Temperature regime appears to have influential role in regulation of gametogenic and spawning processes. Gonadal development and spawning trends were similar in both sexes. P. radiaata was found to be protandrous hermaphrodite which matured as a male at shell height greater than 20 mm. Biseivality was uncommon and the sex ratio was about 1:1. Ultrastructure of gametes were investigated in the Pictada fucata (Gould). "Auxiliary cells" closely accociated with developing oocytes were observed. Each oocyte seems to be associated with only one secretory cell. which is characterized by an abundant rough endoplasmic reticulum at the onset of vitellogenesis. Contact between this cell and a developing oocytes is maintained by a desmosome-like junction which can be observed when the vitelline coat is formed. these "auxiliary or nursing cells" seem to play a tropic role in vitellogenesis, and may be involved in the formation of the vitelline coat of the oocytes. Oocytic degeneration is observed in this species, it is a continuous phenomenon of varing intensity throughout the year. The ultrastructural changes resulting in lysis of the oocyte are described. Mature spermatozoa consist of a broad, cap-shaped acrosomal vesicle, subacrosomal material, a round nucleus, two triplet substructure centrioles surrounded by four spherical mitochondria, and a flagellum anchored to the distal centriole and plasma membrane. Spermatozoa of Plucata closley resemble to those of other investigated Pteriidae. Changes in proximate composition of soft tissue and gonadal cycle of Pinctada fucata was studied. Mobilization and utilization of stored reserves are apparent during gametogenesis and gonadal maturation. Protein reserves are utilized during spermatogenesis while reserved carbohydrates form the main energy donor in oogenesis. The role of lipid as am.: energy reserve is second to that of carbohydrate.

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With the emergence of transparent electronics, there has been considerable advancement in n-type transparent semiconducting oxide (TSO) materials, such as ZnO, InGaZnO, and InSnO. Comparatively, the availability of p-type TSO materials is more scarce and the available materials are less mature. The development of p-type semiconductors is one of the key technologies needed to push transparent electronics and systems to the next frontier, particularly for implementing p-n junctions for solar cells and p-type transistors for complementary logic/circuits applications. Cuprous oxide (Cu2O) is one of the most promising candidates for p-type TSO materials. This paper reports the deposition of Cu2O thin films without substrate heating using a high deposition rate reactive sputtering technique, called high target utilisation sputtering (HiTUS). This technique allows independent control of the remote plasma density and the ion energy, thus providing finer control of the film properties and microstructure as well as reducing film stress. The effect of deposition parameters, including oxygen flow rate, plasma power and target power, on the properties of Cu2O films are reported. It is known from previously published work that the formation of pure Cu2O film is often difficult, due to the more ready formation or co-formation of cupric oxide (CuO). From our investigation, we established two key concurrent criteria needed for attaining Cu2O thin films (as opposed to CuO or mixed phase CuO/Cu2O films). First, the oxygen flow rate must be kept low to avoid over-oxidation of Cu2O to CuO and to ensure a non-oxidised/non-poisoned metallic copper target in the reactive sputtering environment. Secondly, the energy of the sputtered copper species must be kept low as higher reaction energy tends to favour the formation of CuO. The unique design of the HiTUS system enables the provision of a high density of low energy sputtered copper radicals/ions, and when combined with a controlled amount of oxygen, can produce good quality p-type transparent Cu2O films with electrical resistivity ranging from 102 to 104 Ω-cm, hole mobility of 1-10 cm2/V-s, and optical band-gap of 2.0-2.6 eV. These material properties make this low temperature deposited HiTUS Cu 2O film suitable for fabrication of p-type metal oxide thin film transistors. Furthermore, the capability to deposit Cu2O films with low film stress at low temperatures on plastic substrates renders this approach favourable for fabrication of flexible p-n junction solar cells. © 2011 Elsevier B.V. All rights reserved.