984 resultados para Carga axial
Resumo:
La cicatrización de las heridas es un proceso complejo que implica diferentes fases que se solapan entre sí, incluyendo la inflamación, la epitelización, la angiognesis y la síntesis y deposición de matriz extracelular. Los fibroblastos dérmicos tienen una función esencial en la formación del tejido de granulación. Migran hasta la lesión en respuesta a citoquinas, proliferan y sintetizan las proteínas de la matriz extracelular, las cuales son la base del proceso de reparación futuro. Los oligoelementos tales como el zinc y el manganeso son necesarios para muchas funciones celulares y, por consiguiente, pueden potencialmente estimular los procesos de reparación de las heridas. En el presente estudio hemos investigado el efecto de un aposito que contiene zinc, calcio y manganeso (Trionic®) sobre la proliferación, el crecimiento, la síntesis de colágeno I y III y la migración de los fibroblastos. Los resultados obtenidos indican que los oligoelementos solubles presentes en Trionic® actúan estimulando la proliferación, el crecimiento, la biosíntesis de colágeno y la migración de los fibroblastos. Dada la participación crucial que estas funciones celulares tienen sobre el comportamiento de los fibroblastos durante el proceso de formación del tejido de granulación, concluimos que los iones Ca2+, Zn2+, y Mn2+ contenidos en Trionic® pueden proporcionar potenciales beneficios en el tratamiento de las heridas crónicas y durante la fase reparativa del proceso de cicatrización.
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MRI has become a major tool for the diagnosis of axial spondyloarthritis and provides objective signs based on which therapy can be initiated. In clinical practice, ASAS classification criteria are often applied for the diagnosis of spondyloarthritis at a pre-radiographic stage. However, MRI signs of spondyloarthritis as stated in ASAS criteria lack specificity, and can be encountered in a wide array of diagnoses, in particular degenerative and mechanical conditions. In this article, we will review the role of MRI in the diagnosis and classification of spondyloarthritis, general technical considerations, the elementary MRI signs of axial spondyloarthritis, as well as diagnostic pitfalls. We also provide a practical approach on how to avoid overdiagnosis of spondyloarthritis and to improve the diagnostic value of MRI.
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The goal of this study was to evaluate the feasibility of direct introduction of clay slurries in an inductively coupled plasma optical emission spectrometer with axial view configuration. Calibration was performed using a certified reference material with a mean particle size of 13 µm (IPT-42) and the analytical curve was applied for quantification of two others reference materials (IPT-28 and IPT-32) and four samples. It was demonstrated that the analytical curve thus obtained was not completely suitable for IPT-28 and samples due to different mineralogical phases determined by X-ray diffraction. After considering this effect, it was possible for most elements to obtain results in agreement with certified values or with values obtained by a conventional technique at a 95% confidence level. It was demonstrated that the ICP-OES with axial view configuration did not present any incompatibility with the direct introduction of a complex inorganic suspension.
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In this work, composites formed from a mixture of V2O5 and polyaniline (PANI) were investigated, for applications as cathode materials for secondary lithium batteries. Electrochemical quartz crystal microbalance (EQCM) data show that charge compensation in the [PANI]0.3V2O5 nanocomposite is achieved predominantly by Li+ migration. However, the charge compensation in the [PANI]V2O5 microcomposite occurs by Li+ and ClO4- transport. Electrochemical Impedance Spectroscopy (EIS) measurements reveal several benefits of nanohybrid formation, including the achievement of shorter ionic diffusion pathways, the higher diffusion rate of the lithium ion and also the higher electronic conductivity, which are responsible for a synergetic effect of the energy storage properties.
Resumo:
Atropisomerism is a special kind of stereoisomeric relationship that arises from the freezing of a certain conformation of an organic molecule, associated with a high rotational barrier about a single covalent bond. Atropisomerism has been originally described in orto-functionalyzed biphenyl derivatives, but a lot of other organic functionalities can present this structural phenomenon, characterized by the presence of chiral properties in compounds that don't present classical stereogenic centers. Atropisomeric compounds, intermediates and catalysts have well-know importance in organic synthesis, but the influence of the axial chirality in substances able to modulate biological systems is still not very exploited in drug design and development. In this context, the present account describes the importance of this structural property in the medicinal chemistry of different classes of bioactive compounds or therapeutic agents, emphasizing how atropisomerism could affect the molecular recognition of a ligand or a prototype by the target bioreceptor.
Resumo:
Hydrogen-bonded complexes formed by the interaction of the heterocyclic molecules C2H4O and C2H5N with HF, HCN, HNC and C2H2 have been studied using density functional theory. The hydrogen bond strength has been analyzed through electron density charge transfer from the proton acceptor to the proton donor. The density charge transfer has been estimated using different methods such as Mulliken population analysis, CHELPG, GAPT and AIM. It has been shown that AIM-estimated charge transfer correlates very well with the hydrogen bond energy and the infrared bathochromic effect of the proton donor stretching frequencies.
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Concentrated winding permanent magnet machines and their electromagnetic properties are studied in this doctoral thesis. The thesis includes a number of main tasks related to the application of permanent magnets in concentrated winding open slot machines. Suitable analytical methods are required for the first design calculations of a new machine. Concentrated winding machines differ from conventional integral slot winding machines in such a way that adapted analytical calculation methods are needed. A simple analytical model for calculating the concentrated winding axial flux machines is provided. The next three main design tasks are discussed in more detail in the thesis. The magnetic length of the rotor surface magnet machines is studied, and it is shown that the traditional methods have to be modified also in this respect. An important topic in this study has been to evaluate and minimize the rotor permanent magnet Joule losses by using segmented magnets in the calculations and experiments. Determination of the magnetizing and leakage inductances for a concentrated winding machine and the torque production capability of concentrated winding machines with different pole pair numbers are studied, and the results are compared with the corresponding properties of integral slot winding machines. The thesis introduces a new practical permanent magnet motor type for industrial use. The special features of the machine are based on the option of using concentrated winding open slot constructions of permanent magnet synchronous machines in the normal speed ranges of industrial motors, for instance up to 3000 min-1, without excessive rotor losses. By applying the analytical equations and methods introduced in the thesis, a 37 kW 2400 min-1 12-slot 10-pole axial flux machine with rotor-surfacemounted magnets is designed. The performance of the designed motor is determined by experimental measurements and finite element calculations.
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The first computational implementation that automates the procedures involved in the calculation of infrared intensities using the charge-charge flux-dipole flux model is presented. The atomic charges and dipoles from the Quantum Theory of Atoms in Molecules (QTAIM) model was programmed for Morphy98, Gaussian98 and Gaussian03 programs outputs, but for the ChelpG parameters only the Gaussian programs are supported. Results of illustrative but new calculations for the water, ammonia and methane molecules at the MP2/6-311++G(3d,3p) theoretical level, using the ChelpG and QTAIM/Morphy charges and dipoles are presented. These results showed excellent agreement with analytical results obtained directly at the MP2/6-311++G(3d,3p) level of theory.
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This work proposes a new simple and fast spectrophotometric method for cephalexin determination in pharmaceutical formulations. The method is based on the charge transfer reaction between cephalexin and quinalizarin in dimethylsulfoxide medium. Several analytical parameters related to the system were optimized and the reaction was characterized in terms of stoichiometry. Also, association constant and apparent molar absorptivity of the product were determined. The method presented a limit of detection of 0.46 mg L-1 and a quantification limit of 1.5 mg L-1. It was successfully applied in the determination of cephalexin in two samples of commercial pharmaceutical formulations.
Resumo:
The performance of inductively-coupled plasma optical emission spectrometers with axial and radial views for determination of iodine in table salt was evaluated. Interference and memory effects in nitric acid and water-soluble tertiary amines (CFA-C) media were studied. Based on a factorial experiment, one optimum instrument operational condition for axial configuration, and two optima conditions for radial configuration was established. The ICP OES with axial view was 5-fold more sensitive than the radial view. Both matrix matching and standard addition methods were used for iodine quantification and for most samples, both strategies of calibration led to similar results. Recoveries ranged from 104 to 114%.
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Supersonic axial turbine stages typically exhibit lower efficiencies than subsonic axial turbine stages. One reason for the lower efficiency is the occurrence of shock waves. With higher pressure ratios the flow inside the turbine becomes relatively easily supersonic if there is only one turbine stage. Supersonic axial turbines can be designed in smaller physical size compared to subsonic axial turbines of same power. This makes them good candidates for turbochargers in large diesel engines, where space can be a limiting factor. Also the production costs are lower for a supersonic axial turbine stage than for two subsonic stages. Since supersonic axial turbines are typically low reaction turbines, they also create lower axial forces to be compensated with bearings compared to high reaction turbines. The effect of changing the stator-rotor axial gap in a small high (rotational) speed supersonic axial flow turbine is studied in design and off-design conditions. Also the effect of using pulsatile mass flow at the supersonic stator inlet is studied. Five axial gaps (axial space between stator and rotor) are modeled using threedimensional computational fluid dynamics at the design and three axial gaps at the off-design conditions. Numerical reliability is studied in three independent studies. An additional measurement is made with the design turbine geometry at intermediate off-design conditions and is used to increase the reliability of the modelling. All numerical modelling is made with the Navier-Stokes solver Finflo employing Chien’s k ¡ ² turbulence model. The modelling of the turbine at the design and off-design conditions shows that the total-to-static efficiency of the turbine decreases when the axial gap is increased in both design and off-design conditions. The efficiency drops almost linearily at the off-design conditions, whereas the efficiency drop accelerates with increasing axial gap at the design conditions. The modelling of the turbine stator with pulsatile inlet flow reveals that the mass flow pulsation amplitude is decreased at the stator throat. The stator efficiency and pressure ratio have sinusoidal shapes as a function of time. A hysteresis-like behaviour is detected for stator efficiency and pressure ratio as a function of inlet mass flow, over one pulse period. This behaviour arises from the pulsatile inlet flow. It is important to have the smallest possible axial gap in the studied turbine type in order to maximize the efficiency. The results for the whole turbine can also be applied to some extent in similar turbines operating for example in space rocket engines. The use of a supersonic stator in a pulsatile inlet flow is shown to be possible.
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Esta pesquisa teve como objetivos a avaliar da carga de trabalho físico exigida em operações de produção de mudas em viveiros que abastecem os canteiros ornamentais do Distrito Federal e classificar as atividades desenvolvidas no viveiro, conforme a sua exigência física, propondo uma reorganização ergonômica para melhoria dos níveis de segurança, saúde, bem-estar e satisfação dos trabalhadores. A carga de trabalho físico foi avaliada por intermédio do levantamento da freqüência cardíaca durante a jornada de trabalho nas diversas fases do ciclo de trabalho, segundo a metodologia proposta por Apud (1997), nas atividades de enchimento dos recipientes plásticos com substrato, abastecimento da carreta com os recipientes plásticos, encanteiramento, plantio de mudas e expedição. Com base nos dados coletados, foram calculadas as médias das freqüências cardíacas das cinco etapas analisadas. De acordo com os resultados obtidos, a freqüência cardíaca média das etapas foi de 97,96 bpm para a fase de enchimento dos recipientes, de 111,7 bpm para o abastecimento da carreta, de 126,26 bpm para o encanteiramento, de 90,75 bpm para o plantio das mudas nos recipientes e de 115,01 bpm para a expedição. A atividade de encanteiramento ultrapassou a carga cardiovascular máxima de 40%, sendo necessário, portanto, um repouso de 12,8 min por hora trabalhada durante a jornada de trabalho. A maior exigência física no trabalho foi verificada nos trabalhadores que exercem a função de encanteiramento (trabalho físico pesado), seguido do abastecimento da carreta e expedição (ambos moderadamente pesados). As atividades de enchimento dos recipientes e plantio das mudas nos recipientes tiveram a exigência física classificada como leve.
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Este estudo teve como objetivo principal avaliar a carga de trabalho físico e a análise biomecânica de 20 trabalhadores da carbonização em fornos tipo "rabo-quente", localizados no Norte do Estado de Minas Gerais. Para análise da freqüência cardíaca, foi utilizado o sistema Polar Eletro Oy da Finlândia. O tempo consumido pelos trabalhadores por atividade foi avaliado através do método de cronometagem individual e a análise biomecânica, realizada por programa computacional desenvolvido pela Universidade de Michigan. Os resultados evidenciaram que a carga cardiovascular exigida para a realização da atividade era de 44,5% e classificada como moderadamente pesada. A operação que mais consumia tempo de trabalho era a vedação. Havia risco de compressão no disco vertebral L5 - S1 na operação de carga, durante as fases de levantamento da rede e remoção de tora.
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A operação de baldeio florestal está relacionada ao uso de máquinas, as quais trafegam numa mesma linha várias vezes ou aleatoriamente, o que pode causar compactação do solo, alterando o meio onde o sistema radicular se desenvolve e reduzindo a produtividade. Além do número de passadas, a carga de madeira transportada pode afetar a compactação do solo quando as pressões aplicadas pelas máquinas excederem a capacidade de suporte de carga desse solo. Os objetivos deste estudo foram: a) propor modelo de capacidade de suporte de carga para Latossolo Vermelho-Amarelo no Município de Santa Maria de Itabira, MG, em razão da pressão de pré-consolidação e da umidade; e b) determinar, com o uso deste modelo, o efeito da intensidade de tráfego e da carga de Forwarder sobre a estrutura do solo. Para a obtenção dos modelos de capacidade de suporte de carga, 20 amostras indeformadas de solo foram coletadas nas profundidades de 0-3 e 10-13 cm no local onde não houve tráfego. Foram também coletadas 10 amostras indeformadas em cada profundidade, onde o Forwarder trafegou duas, quatro e oito vezes e no local onde o Forwarder trafegou quatro vezes com 1/3 (3 m³), 2/3 (6 m³) e 3/3 (9 m³) de sua carga. As amostras indeformadas foram utilizadas nos ensaios de compressão uniaxial. Determinaram-se também a textura, o teor de matéria orgânica e a densidade de partículas e densidade dos solos. O modelo de capacidade de suporte de carga do LVA é expresso pela equação s p = 10(2,71 - 1,36 U). Todas as intensidades de tráfego causaram compactação no solo nas duas profundidades estudadas, sendo quatro passadas as que causaram maior compactação do solo, e, à medida que a carga do Forwarder aumentou, a compactação do solo também aumentou nas duas profundidades.