680 resultados para Flames Premixed Laminar
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Our inability to adequately treat many patients with refractory epilepsy caused by focal cortical dysplasia (FCD), surgical inaccessibility and failures are significant clinical drawbacks. The targeting of physiologic features of epileptogenesis in FCD and colocalizing functionality has enhanced completeness of surgical resection, the main determinant of outcome. Electroencephalography (EEG)-functional magnetic resonance imaging (fMRI) and magnetoencephalography are helpful in guiding electrode implantation and surgical treatment, and high-frequency oscillations help defining the extent of the epileptogenic dysplasia. Ultra high-field MRI has a role in understanding the laminar organization of the cortex, and fluorodeoxyglucose-positron emission tomography (FDG-PET) is highly sensitive for detecting FCD in MRI-negative cases. Multimodal imaging is clinically valuable, either by improving the rate of postoperative seizure freedom or by reducing postoperative deficits. However, there is no level 1 evidence that it improves outcomes. Proof for a specific effect of antiepileptic drugs (AEDs) in FCD is lacking. Pathogenic mutations recently described in mammalian target of rapamycin (mTOR) genes in FCD have yielded important insights into novel treatment options with mTOR inhibitors, which might represent an example of personalized treatment of epilepsy based on the known mechanisms of disease. The ketogenic diet (KD) has been demonstrated to be particularly effective in children with epilepsy caused by structural abnormalities, especially FCD. It attenuates epigenetic chromatin modifications, a master regulator for gene expression and functional adaptation of the cell, thereby modifying disease progression. This could imply lasting benefit of dietary manipulation. Neurostimulation techniques have produced variable clinical outcomes in FCD. In widespread dysplasias, vagus nerve stimulation (VNS) has achieved responder rates >50%; however, the efficacy of noninvasive cranial nerve stimulation modalities such as transcutaneous VNS (tVNS) and noninvasive (nVNS) requires further study. Although review of current strategies underscores the serious shortcomings of treatment-resistant cases, initial evidence from novel approaches suggests that future success is possible.
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The issue of how contractility and adhesion are related to cell shape and migration pattern remains largely unresolved. In this paper we report that Gleevec (Imatinib), an Abl family kinase inhibitor, produces a profound change in the shape and migration of rat bladder tumor cells (NBTII) plated on collagen-coated substrates. Cells treated with Gleevec adopt a highly spread D-shape and migrate more rapidly with greater persistence. Accompanying this more spread state is an increase in integrin-mediated adhesion coupled with increases in the size and number of discrete adhesions. In addition, both total internal reflection fluorescence microscopy (TIRFM) and interference reflection microscopy (IRM) revealed a band of small punctate adhesions with rapid turnover near the cell leading margin. These changes led to an increase in global cell-substrate adhesion strength, as assessed by laminar flow experiments. Gleevec-treated cells have greater RhoA activity which, via myosin activation, led to an increase in the magnitude of total traction force applied to the substrate. These chemical and physical alterations upon Gleevec treatment produce the dramatic change in morphology and migration that is observed.
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This thesis is focused on process intensification. Several significant problems and applications of this theme are covered. Process intensification is nowadays one of the most popular trends in chemical engineering and attempts have been made to develop a general, systematic methodology for intensification. This seems, however, to be very difficult, because intensified processes are often based on creativity and novel ideas. Monolith reactors and microreactors are successful examples of process intensification. They are usually multichannel devices in which a proper feed technique is important for creating even fluid distribution into the channels. Two different feed techniques were tested for monoliths. In the first technique a shower method was implemented by means of perforated plates. The second technique was a dispersion method using static mixers. Both techniques offered stable operation and uniform fluid distribution. The dispersion method enabled a wider operational range in terms of liquid superficial velocity. Using dispersion method, a volumetric gas-liquid mass transfer coefficient of 2 s-1 was reached. Flow patterns play a significant role in terms of the mixing performance of micromixers. Although the geometry of a T-mixer is simple, channel configurations and dimensions had a clear effect on mixing efficiency. The flow in the microchannel was laminar, but the formation of vortices promoted mixing in micro T-mixers. The generation of vortices was dependent on the channel dimensions, configurations and flow rate. Microreactors offer a high ratio of surface area to volume. Surface forces and interactions between fluids and surfaces are, therefore, often dominant factors. In certain cases, the interactions can be effectively utilised. Different wetting properties of solid materials (PTFE and stainless steel) were applied in the separation of immiscible liquid phases. A micro-scale plate coalescer with hydrophilic and hydrophobic surfaces was used for the continuous separation of organic and aqueous phases. Complete phase separation occurred in less than 20 seconds, whereas the separation time by settling exceeded 30 min. Fluid flows can be also intensified in suitable conditions. By adding certain additives into turbulent fluid flow, it was possible to reduce friction (drag) by 40 %. Drag reduction decreases frictional pressure drop in pipelines which leads to remarkable energy savings and decreases the size or number of pumping facilities required, e.g., in oil transport pipes. Process intensification enables operation often under more optimal conditions. The consequent cost savings from reduced use of raw materials and reduced waste lead to greater economic benefits in processing.
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This research was motivated by the need to examine the potential application areas of process intensification technologies in Neste Oil Oyj. According to the company’s interest membrane reactor technology was chosen and applicability of this technology in refining industry was investigated. Moreover, Neste Oil suggested a project which is related to the CO2 capture from FCC unit flue gas stream. The flowrate of the flue gas is 180t/h and consist of approximately 14% by volume CO2. Membrane based absorption process (membrane contactor) was chosen as a potential technique to model CO2 capture from fluid catalytic cracking (FCC) unit effluent. In the design of membrane contactor, a mathematical model was developed to describe CO2 absorption from a gas mixture using monoethanole amine (MEA) aqueous solution. According to the results of literature survey, in the hollow fiber contactor for laminar flow conditions approximately 99 % percent of CO2 can be removed by using a 20 cm in length polyvinylidene fluoride (PDVF) membrane. Furthermore, the design of whole process was performed by using PRO/II simulation software and the CO2 removal efficiency of the whole process obtained as 97 %. The technical and economical comparisons among existing MEA absorption processes were performed to determine the advantages and disadvantages of membrane contactor technology.
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Blood flow in human aorta is an unsteady and complex phenomenon. The complex patterns are related to the geometrical features like curvature, bends, and branching and pulsatile nature of flow from left ventricle of heart. The aim of this work was to understand the effect of aorta geometry on the flow dynamics. To achieve this, 3D realistic and idealized models of descending aorta were reconstructed from Computed Tomography (CT) images of a female patient. The geometries were reconstructed using medical image processing code. The blood flow in aorta was assumed to be laminar and incompressible and the blood was assumed to be Newtonian fluid. A time dependent pulsatile and parabolic boundary condition was deployed at inlet. Steady and unsteady blood flow simulations were performed in real and idealized geometries of descending aorta using a Finite Volume Method (FVM) code. Analysis of Wall Shear Stress (WSS) distribution, pressure distribution, and axial velocity profiles were carried out in both geometries at steady and unsteady state conditions. The results obtained in thesis work reveal that the idealization of geometry underestimates the values of WSS especially near the region with sudden change of diameter. However, the resultant pressure and velocity in idealized geometry are close to those in real geometry
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The objective of this dissertation is to improve the dynamic simulation of fluid power circuits. A fluid power circuit is a typical way to implement power transmission in mobile working machines, e.g. cranes, excavators etc. Dynamic simulation is an essential tool in developing controllability and energy-efficient solutions for mobile machines. Efficient dynamic simulation is the basic requirement for the real-time simulation. In the real-time simulation of fluid power circuits there exist numerical problems due to the software and methods used for modelling and integration. A simulation model of a fluid power circuit is typically created using differential and algebraic equations. Efficient numerical methods are required since differential equations must be solved in real time. Unfortunately, simulation software packages offer only a limited selection of numerical solvers. Numerical problems cause noise to the results, which in many cases leads the simulation run to fail. Mathematically the fluid power circuit models are stiff systems of ordinary differential equations. Numerical solution of the stiff systems can be improved by two alternative approaches. The first is to develop numerical solvers suitable for solving stiff systems. The second is to decrease the model stiffness itself by introducing models and algorithms that either decrease the highest eigenvalues or neglect them by introducing steady-state solutions of the stiff parts of the models. The thesis proposes novel methods using the latter approach. The study aims to develop practical methods usable in dynamic simulation of fluid power circuits using explicit fixed-step integration algorithms. In this thesis, twomechanisms whichmake the systemstiff are studied. These are the pressure drop approaching zero in the turbulent orifice model and the volume approaching zero in the equation of pressure build-up. These are the critical areas to which alternative methods for modelling and numerical simulation are proposed. Generally, in hydraulic power transmission systems the orifice flow is clearly in the turbulent area. The flow becomes laminar as the pressure drop over the orifice approaches zero only in rare situations. These are e.g. when a valve is closed, or an actuator is driven against an end stopper, or external force makes actuator to switch its direction during operation. This means that in terms of accuracy, the description of laminar flow is not necessary. But, unfortunately, when a purely turbulent description of the orifice is used, numerical problems occur when the pressure drop comes close to zero since the first derivative of flow with respect to the pressure drop approaches infinity when the pressure drop approaches zero. Furthermore, the second derivative becomes discontinuous, which causes numerical noise and an infinitely small integration step when a variable step integrator is used. A numerically efficient model for the orifice flow is proposed using a cubic spline function to describe the flow in the laminar and transition areas. Parameters for the cubic spline function are selected such that its first derivative is equal to the first derivative of the pure turbulent orifice flow model in the boundary condition. In the dynamic simulation of fluid power circuits, a tradeoff exists between accuracy and calculation speed. This investigation is made for the two-regime flow orifice model. Especially inside of many types of valves, as well as between them, there exist very small volumes. The integration of pressures in small fluid volumes causes numerical problems in fluid power circuit simulation. Particularly in realtime simulation, these numerical problems are a great weakness. The system stiffness approaches infinity as the fluid volume approaches zero. If fixed step explicit algorithms for solving ordinary differential equations (ODE) are used, the system stability would easily be lost when integrating pressures in small volumes. To solve the problem caused by small fluid volumes, a pseudo-dynamic solver is proposed. Instead of integration of the pressure in a small volume, the pressure is solved as a steady-state pressure created in a separate cascade loop by numerical integration. The hydraulic capacitance V/Be of the parts of the circuit whose pressures are solved by the pseudo-dynamic method should be orders of magnitude smaller than that of those partswhose pressures are integrated. The key advantage of this novel method is that the numerical problems caused by the small volumes are completely avoided. Also, the method is freely applicable regardless of the integration routine applied. The superiority of both above-mentioned methods is that they are suited for use together with the semi-empirical modelling method which necessarily does not require any geometrical data of the valves and actuators to be modelled. In this modelling method, most of the needed component information can be taken from the manufacturer’s nominal graphs. This thesis introduces the methods and shows several numerical examples to demonstrate how the proposed methods improve the dynamic simulation of various hydraulic circuits.
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A Mata do Paraíso, em Viçosa, MG, é classificada como Floresta Estacional Semidecidual em estado avançado de regeneração. Na Zona da Mata de Minas Gerais predominam os Latossolos Vermelho-Amarelos e esta classe também é a mais recorrente na região de Viçosa. São solos, na sua grande maioria de baixa fertilidade natural. Dessa forma, procurou-se associar características dos solos numa topossequência estratificada em geoambientes ou pedoformas, denominados de Plano, Encosta, Ravina e Topo. Para isso, coletaram-se amostras de solos dentro de 40 parcelas, as mesmas utilizadas para caracterizar a vegetação. As amostras de solos foram retiradas nas profundidades de 0 a 20 cm, 20 a 50 cm e de 50 a 100 cm, em três pontos diferentes de cada parcela. Nas amostras de solos, efetuou-se a análise textural (TFSA), bem como o pH, carbono orgânico total, Ca, Mg, Al, K e P disponível e remanescente. A partir dos resultados calcularam-se a soma de bases (SB), a capacidade de troca catiônica total (T) e efetiva (t), a saturação por bases (V) e a saturação por Al (m). Considerando-se a vegetação como indicador ambiental, verificaou-se um maior número de espécies na Encosta (104), mas com plantas de menor porte e, em seguida, na Ravina (28), com árvores com DAP e alturas bem maiores. Na Encosta, o solo é mais pobre em nutrientes do que na Ravina e muito mais propenso à erosão laminar. Assim, supõe-se que a opção da natureza seria pela diversidade para melhorar a eficiência da reciclagem, coisa que as espécies estariam fazendo em seu próprio benefício. A pedoforma Topo apresenta muita restrição em nutrientes, o que limita, em parte, não somente indivíduos de tamanho e diâmetros maiores, bem como a própria diversidade de espécies. As espécies pioneiras, nesse caso, teriam papel fundamental na manutenção ou na "formação" da fertilidade desse geoambiente. Pela textura, foi possível separar nas três profundidades dois grupos: Plano e Topo apresentam texturas mais homogêneas e Ravina e Encosta mais heterogêneas.
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Impactos ambientais causados pelas atividades agropecuárias sobre o meio rural podem ser constatados quando são analisadas as paisagens da região. Vários estudos demonstraram que informações da paisagem obtidas a partir de imagens fotográficas são indispensáveis para o diagnóstico do processo erosivo do solo, aspecto indispensável no planejamento conservacionista. Neste trabalho, utilizando-se de técnicas de fotointerpretação, foi realizada a quantificação das classes de erosão acelerada no município de Franca - SP, relacionando-as com os tipos de cobertura vegetal. A coleção de fotografias aéreas empregadas foi produzida pela Base Aerofotogrametria e Projetos S.A., com escala aproximada 1:35.000, em outubro de 1990. Elaboraram-se cartas temáticas do uso/ocupação do solo e dos estados erosivos presentes em cada tipo de cobertura vegetal do solo, estabelecendo-se, em seguida, as relações entre a erosão acelerada e os tipos de comunidades vegetais do município de Franca. Os resultados obtidos mostraram que, nesse município, o solo agrícola encontra-se relativamente conservado, apresentando 74,23% da área com erosão laminar ligeira/moderada. Os diferentes usos/ocupações do solo influenciaram de modos distintos na manifestação do processo erosivo.
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Percarboxylic acids are commonly used as disinfection and bleaching agents in textile, paper, and fine chemical industries. All of these applications are based on the oxidative potential of these compounds. In spite of high interest in these chemicals, they are unstable and explosive chemicals, which increase the risk of synthesis processes and transportation. Therefore, the safety criteria in the production process should be considered. Microreactors represent a technology that efficiently utilizes safety advantages resulting from small scale. Therefore, microreactor technology was used in the synthesis of peracetic acid and performic acid. These percarboxylic acids were produced at different temperatures, residence times and catalyst i.e. sulfuric acid concentrations. Both synthesis reactions seemed to be rather fast because with performic acid equilibrium was reached in 4 min at 313 K and with peracetic acid in 10 min at 343 K. In addition, the experimental results were used to study the kinetics of the formation of performic acid and peracetic acid. The advantages of the microreactors in this study were the efficient temperature control even in very exothermic reaction and good mixing due to the short diffusion distances. Therefore, reaction rates were determined with high accuracy. Three different models were considered in order to estimate the kinetic parameters such as reaction rate constants and activation energies. From these three models, the laminar flow model with radial velocity distribution gave most precise parameters. However, sulfuric acid creates many drawbacks in this synthesis process. Therefore, a ´´greener´´ way to use heterogeneous catalyst in the synthesis of performic acid in microreactor was studied. The cation exchange resin, Dowex 50 Wx8, presented very high activity and a long life time in this reaction. In the presence of this catalyst, the equilibrium was reached in 120 second at 313 K which indicates a rather fast reaction. In addition, the safety advantages of microreactors were investigated in this study. Four different conventional methods were used. Production of peracetic acid was used as a test case, and the safety of one conventional batch process was compared with an on-site continuous microprocess. It was found that the conventional methods for the analysis of process safety might not be reliable and adequate for radically novel technology, such as microreactors. This is understandable because the conventional methods are partly based on experience, which is very limited in connection with totally novel technology. Therefore, one checklist-based method was developed to study the safety of intensified and novel processes at the early stage of process development. The checklist was formulated using the concept of layers of protection for a chemical process. The traditional and three intensified processes of hydrogen peroxide synthesis were selected as test cases. With these real cases, it was shown that several positive and negative effects on safety can be detected in process intensification. The general claim that safety is always improved by process intensification was questioned.
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O objetivo deste trabalho foi avaliar a precisão e a exatidão de métodos de estimativa de valores horários de evapotranspiração (ETc) para alface cultivada em sistema hidropônico sob ambiente protegido. Para a determinação dos parâmetros pertinentes aos diferentes métodos de estimativa e sua posterior validação, foram utilizados dois conjuntos de dados experimentais obtidos a partir de medições realizadas nas cultivares Grand Rapids, Regina e Great Lakes. As estimativas de evapotranspiração foram realizadas com os seguintes métodos: Penman-Monteith parametrizado pela FAO, em 1998 (PMF); Penman-Monteith modificado para condições aerodinâmicas características de ambiente protegido (PMAP); Penman-Monteith modificado para ambiente protegido simplificado (PMAPS); Priestley-Taylor (PT); Radiação solar (RS) e Radiação solar simplificado (RSS). Os resultados demonstraram que os métodos PMAP e PMAPS possibilitaram estimativas mais adequadas da ETc, tanto no período da manhã como no da tarde.
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Este trabalho teve por objetivo identificar qualitativamente as áreas suscetíveis à erosão laminar na bacia do Rio Uberaba, localizada em Uberaba -MG, apoiado no modelo matemático da Equação Universal de Perda de Solo (EUPS). Foram utilizadas cartas de: solos, uso e ocupação das terras, redes de drenagem, declividade e dados pluviográficos, utilizando-se de um Sistema de Informação Geográfica (SIG -IDRISI). A espacialização do potencial de erosão só foi possível a partir da estimativa da tolerância às perdas laminares para cada tipo de solo da bacia, e da profundidade dos solos, por entender que as perdas são mais significativas em solos mais rasos do que em solos muito profundos. Na análise dos resultados, verificou-se que 37% da área total da bacia do Rio Uberaba (905,24 km²) sofrem perdas de solos acima do limite de tolerância, sendo 12% em solos profundos e 25% em muito profundos, e a espacialização deste evento favorece a adoção de ações efetivas quanto à conservação dos solos da bacia.
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Trinta focos de polioencefalomalacia (PEM) foram diagnosticados no período de agosto de 1993 a outubro de 1997. Vinte e nove focos ocorreram no estado de Mato Grosso do Sul (MS) e um no estado de São Paulo (SP). Foram afetados bovinos de 4 a 84 meses de idade. A morbidade dos rebanhos afetados variou de 0,02% a 14,28% e a letalidade de 42,5% a 100%. A doença não apresentou uma sazonalidade e ocorreu em vários municípios do MS. Em todos os focos estudados os animais afetados eram criados em regimes de criação extensiva, com exceção de um foco. Os sinais clínicos observados foram exclusivamente nervosos e a evolução dos casos variou de 12 horas a 4 dias. A maioria dos animais tratados com tiamina e dexametasona recuperou-se. Histologicamente, as lesões consistiam de necrose laminar do córtex cerebral. Adicionalmente em 2 casos observaram-se hemorragias submeningeanas e corticais, e em 9 casos presença de infiltrado de eosinófilos. A dosagem de sódio no líquor apresentou-se elevada em um caso. A etiologia da PEM não está esclarecida, porém em alguns casos a intoxicação por cloreto de sódio/privação de água pode estar envolvida na etiologia da enfermidade. A PEM representa 4,78% dos casos de enfermidades de bovinos diagnosticadas no Laboratório de Anatomia Patológica da UFMS. Com bases nos resultados, verifica-se a importância da enfermidade no diagnóstico diferencial de outras doenças com quadro clínico neurológico no MS, principalmente a raiva, a meningoencefalite por herpesvírus bovino tipo 5 (HVB-5) e o botulismo.
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Com o objetivo de melhor caracterizar o quadro clínico na intoxicação experimental por Stryphnodendron obovatum Benth., procedeu-se a administração das favas, por via oral, a seis bovinos, em doses únicas e a 11 outros, em doses repetidas. Doses únicas de 10 e 20g/kg não provocaram sintomas. Doses únicas de 30 e 40g/kg provocaram quadros clínicos desde leves até graves, porém só morreu o animal que ingeriu 60g/kg. Os animais que ingeriram doses repetidas de 2,5g/kg por 30 dias adoeceram levemente, já os que receberam 5g/kg durante 13 e 14 dias mostraram sintomatologia moderada e grave, respectivamente. Um bovino que recebeu 10g/kg por 8 dias, outro que ingeriu 20g/kg por 3 dias e dois outros que receberam 30 e 40g/kg por 2 dias morreram da intoxicação. Os outros três bovinos que receberam doses repetidas (dois com doses de 10g/kg por 20 e 6 dias, outro com dose de 20 g/kg por 2 dias) adoeceram, mas se recuperaram. Os primeiros sintomas de intoxicação, em ambos os grupos, foram observados a partir do primeiro dia do experimento e a evolução variou de 3 a 63 dias. Os sintomas consistiram em anorexia, fezes levemente ressecadas a líquidas, distensão do abdômen, sem timpanismo, perda de fluido ruminal durante a ruminação, atonia e acidose ruminal, cólica, sialorréia, apatia, emagrecimento, fraqueza, erosões e úlceras na cavidade oral. Em alguns animais foram observadas congestão de mucosas visíveis (sem icterícia) e de partes despigmentadas da pele, do córion laminar e da região interdigital dos quatro membros, áreas de alopecia focal e/ou hipotricose nas regiões axilares, na face lateral das coxas e membros e perda dos pêlos da ponta da cauda, alterações estas que podem ser interpretadas como as de leve fotossensibilização. Em três bovinos se observaram relaxamento intermitente do prepúcio, micção freqüente e em gotejamento e, por vezes, gemidos ao eliminar a urina que, em geral, se apresentava turva, ácida, de cor âmbar-escura, com odor adocicado e com a densidade elevada; os níveis de bilirrubina na urina foram normais.
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Descrevem-se 7 surtos de polioencefalomalacia em caprinos e 3 surtos em ovinos no semi-árido nordestino. Foram afetados animais de diversas idades em diferentes épocas do ano. Em 5 surtos os animais eram suplementados com concentrados e em 5 consumiam somente pastagem. Em um dos surtos os ovinos estavam recebendo à vontade uma mistura múltipla contendo 1,3% de flor de enxofre. Os sinais clínicos caracterizaram-se por cegueira, depressão, pressão da cabeça contra objetos, andar em círculos, ranger de dentes, incoordenação, paralisia espástica, ataxia, diminuição dos reflexos palpebral e pupilar, estrabismo lateral, nistagmo e pupilas dilatadas. De 9 animais tratados com tiamina e dexametasona, 7 se recuperaram e 2 morreram. O diagnóstico foi feito com base na recuperação após o tratamento e/ou a presença de alterações histológicas características. O curso clínico variou de 2 a 15 dias. Três animais foram necropsiados. Um animal apresentou herniação do cerebelo em direção ao Forame magno e amolecimento das circunvoluções cerebrais e, ao corte, coloração amarelada e cavitação da substância cinzenta do córtex. Outro animal apresentou somente herniação do cerebelo. No terceiro animal não foram observadas lesões macroscópicas. As alterações histológicas caracterizaram-se por necrose laminar do córtex cerebral e, em dois animais, por lesões de malácia no tálamo e colículo rostral. Desconhece-se a etiologia em 9 dos surtos estudados. Em outro se sugere que tenha sido causado por intoxicação por enxofre, contido principalmente na mistura múltipla constituída por com 1,3% de flor de enxofre (96% de enxofre) e 30% de cama de galinha (0,39% de enxofre).
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O objetivo deste trabalho foi estudar a patogenia das lesões observadas em bovinos intoxicados experimentalmente por Ramaria flavo-brunnescens. O cogumelo foi administrado imediatamente após a coleta a três bovinos da raça Jersey com 9-10 meses de idade. A dose diária administrada foi cerca de 20g/kg de peso vivo durante 7 (Bovino 1) e 13 dias (Bovinos 2 e 3), perfazendo doses totais de 140, 268 e 261g/kg de peso vivo a cada bovino, respectivamente. Um bovino (Bovino 4) da mesma raça e idade foi utilizado como controle. Os sinais clínicos observados nos bovinos intoxicados, caracterizaram-se por apatia, anorexia, hiperemia da mucosa oral, alisamento da superfície dorsal da língua e queda dos pêlos longos da cauda quando levemente tracionados. Os bovinos foram submetidos à eutanásia e necropsiados no 8º (Bovino 1) e no 16º dia (Bovinos 2-4) após o início do experimento. Histologicamente observou-se o epitélio da superfície dorsal da língua estreito com ausência das papilas filiformes, vacuolização dos queratinócitos e desprendimento da camada queratinizada. Na região laminar dos cascos observou-se vacuolização das lâminas epidérmicas, hiperplasia dos queratinócitos e queratinização irregular e flocular. Na pele da extremidade da cauda havia hiperqueratose ortoqueratótica, vacuolização da bainha radicular externa, espessamento da queratina triquilêmica e infiltrado inflamatório mononuclear ao redor dos folículos. No estudo imunohistoquímico, utilizando os anticorpos anti-pancitoqueratina e anti-Ki67 (para marcação da proliferação celular) não foram observadas diferenças entre o epitélio da superfície dorsal da língua dos bovinos intoxicados e o do bovino controle. No estudo por microscopia eletrônica, observou-se diminuição dos tonofilamentos e espaços intercelulares acentuadamente dilatados na camada espinhosa do epitélio da língua. Os resultados obtidos neste trabalho favorecem a hipótese de ação do princípio tóxico de Ramaria flavo-brunnescens sobre os mecanismos que envolvem a queratinização dos epitélios em bovinos.