130 resultados para Célula robótica

em Scielo Saúde Pública - SP


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Observamos a cromatina deformas amastigotas de T. cruzi associada a cromossomos de macrófagos metafásicos obtidos em diversos períodos da infecção aguda. O estudo imunocitogenético demonstrou que o material genético inserido naqueles cromossomos era produto do T. cruzi. Pelo teste de hibridizaçâo in situ com sonda biotinilada de DNA de T. cruzi, foi confirmada a inserção de DNA do protozoário nos cromossomos murinos. A inserção seletiva de ³H-DNA do protozoário em alguns cromossomos sugere que podem ocorrer rearranjos transxenogénicos em infecções de mamíferos pelo T. cruzi.

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A utilização de sistemas robóticos em cirurgia cardíaca visa à diminuição do trauma operatório. A revascularização do miocárdio totalmente endoscópica, assistida por robô DaVinci (Intuitive Surgical, Sunnyvale, Califórnia) é factível e seu aprendizado deve ser realizado em etapas. O primeiro passo é o preparo da artéria torácica interna esquerda, já por via totalmente endoscópica. O caso apresentado propõe a dissecção da artéria torácica interna direita por esternotomia completa. Propõe um novo passo rumo ao procedimento completamente endoscópico, visando à diminuição de lesões decorrentes da curva de aprendizado.The use of robotic systems in cardiac surgeries aims at decreasing the surgical trauma.

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Onze ratos com lepra murina em periodo muito adiantado, foram inoculados várias vezes com litio carmin e azul pirrol. Foi possível evidenciar nestes onze ratos que as células que englobam as partículs do corante, na coloração vital, eram as mesmas que continham os bacilos. Vêem-se mesmo num únoco elemento celular os grãos de corante e os bacilos. Em cortes da pele é possível observar-se a transformação dos histiocitos do tecido cojuntivo frouxo em células leprosas. Em órgãos internos examinados, sempre se verificou que a célula leprosa provinha de um elemento do sistema retículo endotelial e grânulos de corante juntamente com bacilos foram encontrados nas células do retículo-endotélio do baço, medula óssea gânglios linfáticos, células de Kupffer e histiocitos do pulmão.

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The construction of a temperature controllable spectroelectrochemical cell is described. Its use in the analysis of the thermodynamic and structural parameters of the electrochromic process of poly(3-methyl thiophene) in the temperature range between -40ºC and 60ºC is given as an example of application.

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A simple flow cell for potentiometric detection is described. It was assembled by making use of two perspex pieces fixed together by means of four screws, and allow the connection of plane membrane conventional electrodes to flow system. Details about its construction are presented. The device performance was evaluated by making use of a cyanide ion-selective electrode. The relative standard deviation was about 0.5% with a detection limit of 8.0 x 10-6 mol CN- dm-3. Under experimental conditions, the linear range was 10-5 to10-2 mol dm-3.

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A flow cell assembled on the original geometry of a graphite tube to achieve permanent chemical modifier is proposed. The graphite tube operates as the working electrode. A stainless steel tube, positioned downstream from the working electrode, was used as the auxiliary electrode. The potential value applied on the graphite electrode was measured against a micro reference electrode (Ag/AgCl) inserted into the auxiliary electrode. Palladium solutions in acetate buffer (100 mmol L-1, pH = 4.8), flowing at 0.5 mL min-1 for 60 min was used to perform the electrochemical modification. A mercury solution (1 ng) was used to evaluate the performance of the permanent palladium modifier.

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New methodologies for protection of Saccharomyces cerevisiae (FP) cells when supported in montmorillonite K10 (K10), recovered or not with gelatin (G) and in the presence or absence of sucrose (S) are presented. These systems were used for the enantioselective reduction of ethyl acetoacetate and a-chloroacetophenone in hexane, under FP/K10/G/S and FP/S at 20ºC during 24 hours, affording S-(+)-ethyl-3-hydroxybutanoate in 100% conversion and 99% ee, and R-(-)-2-chloro-1-phenylethanol 79% and 78% ee at 20 and 30 ºC, respectivelly.

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A simple low-cost flow cell was developed, built and optimized in order to observe dynamic interfacial tension of continuous flow systems. Distinct materials can be used in one of the cell walls in order to observe the intermolecular forces between the flowing liquid and the chemical constitution of the walls. The fluorescence depolarization was evaluated using Rhodamine B as fluorescent probe seeded in ethylene glycol. The effects of the positioning angles on the data acquired across the cell are reported. The reproducibility of the data was evaluated with a spectrometer assembled in-house and the relative standard deviation was below 3%.

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The present work deals with the design and construction of an equipment for muti-cell accelerated stability test measurements (AST) of dimensionally stable anodes (DSA). The equipment was built using only components that were available in the laboratory. Measurements of three electrochemical cells can be performed using the developed software. The acquisition time interval and the cut-off potencial can be set by the user. Experimental data for RuO2 electrodes obtained with the built equipment are in agreement with the literature.

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Operation and performance of a commercial PAFC power plant were analyzed. Processes influencing energy conversion efficiency were studied in each module of the fuel cell power plant. The main processes were simulated using mass and energy balance equations, and the results were validated by means of experimental data. It was concluded that the electrical efficiency is higher in comparison with microturbines. The main result achieved is a better understanding of balance of plant processes, knowledge necessary for fuel cell power plant development.

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There is presently much interest in the clean and efficient generation of energy by proton exchange membrane fuel cells (PEMFC), using hydrogen as fuel. The generation of hydrogen by the reforming of other fuels, anaerobic fermentation of residual waters and other methods, often produce contaminants that affect the performance of the cell. In this work, the effect of gaseous SO2 and NO2 on the performance of a H2/O2 single PEMFC is studied. The results show that SO2 decreases irreversibly the performance of the cell under operating conditions, while NO2 has a milder effect that allows the recovery of the system.

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A multicommuted method for determination of chlorine in water samples using a 100-cm cell was developed. In this method, orto-Tolidine reacts with chlorine and the product was monitored at 438 nm. The analytical curve for chlorine was linear in concentration range from 1.34x10-6 to 2.01x10-5 mol L-1 with a detection limit of 9.40x10-8 mol L-1. A sampling rate of 45 h-1and a RSD of 1.0 % (n = 15) were obtained. The method was applied with success for chlorine determination in six water samples.

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Direct methanol fuel cells (DMFCs) without external pumps or other ancillary devices for fuel and oxidant supply are known as passive DMFCs and are potential candidates to replace lithium-ion batteries in powering portable electronic devices. This paper presents the results obtained from a membrane electrode assembly (MEA) specifically designed for passive DMFCs. Appropriated electrocatalysts were prepared and the effect of their loadings was investigated. Two types of gas diffusion layers (GDL) were also tested. The influence of the methanol concentration was analyzed in each case. The best MEA performance presented a maximum power density of 11.94 mW cm-2.