977 resultados para Volvo 244 DL.


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Interferon-gamma (Ifn gamma), a key macrophage activating cytokine, plays pleiotropic roles in host immunity. In this study, the ability of Ifn gamma to induce the aggregation of resident mouse adherent peritoneal exudate cells (APECs), consisting primarily of macrophages, was investigated. Cell-cell interactions involve adhesion molecules and, upon addition of Ifn gamma, CD11b re-localizes preferentially to the sites of interaction on APECs. A functional role of CD11b in enhancing aggregation is demonstrated using Reopro, a blocking reagent, and siRNA to Cd11b. Studies with NG-methyl-L-arginine (LNMA), an inhibitor of Nitric oxide synthase (Nos), NO donors, e.g., S-nitroso-N-acetyl-DL-penicillamine (SNAP) or Diethylenetriamine/ nitric oxide adduct (DETA/NO), and Nos2(-/-) mice identified Nitric oxide (NO) induced by Ifn gamma as a key regulator of aggregation of APECs. Further studies with Nos2(-/-) APECs revealed that some Ifn. responses are independent of NO: induction of MHC class II and CD80. On the other hand, Nos2 derived NO is important for other functions: motility, phagocytosis, morphology and aggregation. Studies with cytoskeleton depolymerizing agents revealed that Ifn gamma and NO mediate the cortical stabilization of Actin and Tubulin which contribute to aggregation of APECs. The biological relevance of aggregation of APECs was delineated using infection experiments with Salmonella Typhimurium (S. Typhimurium). APECs from orally infected, but not uninfected, mice produce high amounts of NO and aggregate upon ex vivo culture in a Nos2-dependent manner. Importantly, aggregated APECs induced by Ifn gamma contain fewer intracellular S. Typhimurium compared to their single counterparts post infection. Further experiments with LNMA or Reopro revealed that both NO and CD11b are important for aggregation; in addition, NO is bactericidal. Overall, this study elucidates novel roles for Ifn gamma and Nos2 in regulating Actin, Tubulin, CD11b, motility and morphology during the aggregation response of APECs. The implications of aggregation or ``group behavior'' of APECs are discussed in the context of host resistance to infectious organisms.

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Diaminopropionate ammonialyase (DAPAL), a fold-typeII pyridoxal 5-phosphate-dependent enzyme, catalyzes the ,-elimination of diaminopropionate (DAP) to pyruvate and ammonia. DAPAL was able to utilize both d- and l-DAP as substrates with almost equal efficiency. Mutational analysis of functionally important residues such as Thr385, Asp125 and Asp194 was carried out to understand the mechanism by which the isomers are hydrolyzed. Further, the putative residues involved in the formation of disulfide bond Cys271 and Cys299 were also mutated. T385S, T385D sDAPAL were as active with dl-DAP as substrate as sDAPAL, whereas the later exhibited a threefold increase in catalytic efficiency with d-Ser as substrate. Further analysis of these mutants suggested that DAPAL might follow an anti-E-2 mechanism of catalysis that does not involve the formation of a quinonoid intermediate. Of the two mutants of Asp125, D125E showed complete loss of activity with d-DAP as substrate, whereas the reaction with l-DAP was not affected significantly, demonstrating that Asp125 was essential for abstraction of protons from the d-isomer. By contrast, mutational analysis of Asp194 showed that the residue may not be directly involved in proton abstraction from l-DAP. sDAPAL does not form a disulfide bond in solution, although the position of Cys299 and Cys271 in the modeled structure of sDAPAL favored the formation of a disulfide bond. Further, unlike eDAPAL, sDAPAL could be activated by monovalent cations. Mutation of the cysteine residues showed that Cys271 may be involved in coordinating the monovalent cation, as observed in the case of other fold-typeII enzymes.

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Ho3+ (0.25-7 mol%) doped Sr2CeO4 nanophosphors were synthesized by solution combustion method using urea as fuel. The structural properties of the nanophosphors were investigated by powder X-ray diffraction studies (PXRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) techniques. UV-Visible and photoluminescence (PL) spectroscopic techniques were used for analysing the optical properties of the nanoparticles. PXRD and TEM results revealed the formation of Sr2CeO4: Ho3+ nanocrystalline particles with orthorhombic crystal structure. From the UV-Vis studies the optical band gap energy found to decrease from 5.9 to 5.74 eV with increase in dopant concentration. The PL spectra exhibit the broad excitation band from 200 to 400 nm which concurs well with the commercial near UV LED. The PL spectra vary with the dopant content due to energy transfer from the host to the activator. In this present work we demonstrate that color tuning of phosphor can be achieved by merely varying the Ho3+ ions concentration. The CIE and CCT chromaticity coordinates suggests Sr2CeO4: Ho3+ nanophosphors may be potentially applicable as promising single - phased phosphors for lighting applications. (C) 2015 Elsevier B.V. All rights reserved.

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Undoped and Cr (3% and 5%) doped CdS nanoparticles were synthesized by chemical co-precipitation method. The synthesized nanocrystalline particles are characterized by energy dispersive X-ray analysis (EDAX), scanning electron microscope (SEM), X-ray Diffraction (XRD), transmission electron microscopy (TEM), diffuse reflectance spectroscopy (DRS), photoluminescence (PL), Electron paramagnetic resonance (EPR), vibrating sample magnetometer (VSM) and Raman spectroscopy. XRD studies indicate that Cr doping in host CdS result a structural change from Cubic phase to mixed (cubic + hexagonal) phase. Due to quantum confinement effect, widening of the band gap is observed for undoped and Cr doped CdS nanoparticles compared to bulk CdS. The average particle size calculated from band gap values is in good agreement with the TEM study calculation and it is around 4-5 nm. A strong violet emission band consisting of two emission peaks is observed for undoped CdS nanoparticles, whereas for CdS:Cr nanoparticles, a broad emission band ranging from 420 nm to 730 nm with a maximum at similar to 587 nm is observed. The broad emission band is due to the overlapped emissions from variety of defects. EPR spectra of CdS:Cr samples reveal resonance signal at g = 2.143 corresponding to interacting Cr3+ ions. VSM studies indicate that the diamagnetic CdS nanoparticles are transform to ferromagnetic for 3% Cr3+ doping and the ferromagnetic nature is diminished with increasing the doping concentration to 5%. (C) 2015 Elsevier B.V. All rights reserved.

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Development of computationally efficient and accurate attitude rate estimation algorithm using low-cost commercially available star sensor arrays and processing unit for micro-satellite mission is presented. Our design reduces the computational load of least square (LS)-based rate estimation method while maintaining the same accuracy compared to other rate estimation approaches. Furthermore, rate estimation accuracy is improved by using recently developed fast and accurate second-order sliding mode observer (SOSMO) scheme. It also gives robust estimation in the presence of modeling uncertainties, unknown disturbances, and measurement noise. Simulation study shows that rate estimation accuracy achieved by our LS-based method is comparable with other methods for a typical commercially available star sensor array. The robustness analysis of SOSMO with respect to measurement noise is also presented in this paper. Simulation test bench for a practical scenario of satellite rate estimation uses moment-of-inertia variation and environmental disturbances affecting a typical micro-satellite at 500km circular orbit. Comparison studies of SOSMO with 1-SMO and pseudo-linear Kalman filter show that satisfactory estimation accuracy is achieved by SOSMO.

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In this paper, the Gaussian many-to-one X channel (XC), which is a special case of general multiuser XC, is studied. In the Gaussian many-to-one XC, communication links exist between all transmitters and one of the receivers, along with a communication link between each transmitter and its corresponding receiver. As per the XC assumption, transmission of messages is allowed on all the links of the channel. This communication model is different from the corresponding manyto- one interference channel (IC). Transmission strategies, which involve using Gaussian codebooks and treating interference from a subset of transmitters as noise, are formulated for the above channel. Sum-rate is used as the criterion of optimality for evaluating the strategies. Initially, a 3 x 3 many-to-one XC is considered and three transmission strategies are analyzed. The first two strategies are shown to achieve sum-rate capacity under certain channel conditions. For the third strategy, a sum-rate outer bound is derived and the gap between the outer bound and the achieved rate is characterized. These results are later extended to the K x K case. Next, a region in which the many-to-one XC can be operated as a many-to-one IC without the loss of sum-rate is identified. Furthermore, in the above region, it is shown that using Gaussian codebooks and treating interference as noise achieve a rate point that is within K/2 -1 bits from the sum-rate capacity. Subsequently, some implications of the above results to the Gaussian many-to-one IC are discussed. Transmission strategies for the many-to-one IC are formulated, and channel conditions under which the strategies achieve sum-rate capacity are obtained. A region where the sum-rate capacity can be characterized to within K/2 -1 bits is also identified. Finally, the regions where the derived channel conditions are satisfied for each strategy are illustrated for a 3 x 3 many-to-one XC and the corresponding many-to-one IC.

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提出采用PROFIBUS-DP现场总线技术实现对激光柔性加工系统的数字化控制,给出了控制实现过程中的DL态链接库方案,详述了控制中的同步问题,并将其应用于汽车覆盖件模具激光表面硬化,编程采用VC++面向对象工具加以实现。

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El presente trabajo se realizó en base a los registros productivos y reproductivos del hato Holstein. Friesian Canadiense existente en el distrito tres de la Empresa Genética "Roberto Alvarado" (Chiltepe); ubicada en el Departamento de Managua, Nicaragua, a una latitud 12º 14' y una longitud de 86º 25' y a una elevación promedio de 49 msnm, con una temperatura promedio anual de 28.43°C, humedad relativa promedio anual 68.38% y una precipitación promedio anual de 87.72 mm. distribuida en dos épocas: Época lluviosa (Mayo - Octubre ) y época seca (Noviembre - Abril). A partir de la información proporcionada se evaluó el efecto de distintos factores ambientales : número de partos (NUMPA), época de parto (EPOCA) y año de parto (AP); sobre las variables productivas y reproductivas: producción de leche total (PLT), duración de la lactancia (DL), producción de leche diaria (PLD), intervalo entre partos (IEP) y producción de leche por día de intervalo entre partos (PLDIEP), las cuales resultaron todas altamente significativas (P < 0.01), considerando para la variable PLT el efecto de la covariable DL con Numpa. También se caracterizó el comportamiento productivo y reproductivo del hato, basado en el cálculo de los promedios de mínimos cuadrados de las características productivas y reproductivas en los diferentes niveles de cada uno de los factores estudiados, resultando promedios generales de: PLT 3,207.53 ± 54.37 Kg., DL 321.98 ± 3.89 días, PLD 10.67 ± 0.17 Kg., IEP 468;63 ± 4.29 días y PLDIEP 7.51 ± 0.14 Kg. Además se estimaron las correlaciones lineales fenotípicas entre las variables y los factores NUMPA y EPAR , resultando entre ellos los valores más altos para: EPAR -NUMPA (r= + 0.96), DL - IEP (r= + 0.80), PLD - PLDIEP (r= + 0.80), PLT - PLDIEP (r= + 0.76) y valores absolutos para r más bajos entre NUMPA - PLDIEP (r= + 0.18), NUMPA - PLT (r= -0.19), NUMPA - PLD (r= + 0.23) y EPAR - PLT (r= - 0.21).

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El presente trabajo se realizó con el objetivo de estudiar el comportamiento productivo y reproductivo de un hato criollo lechero Reyna, bajo condiciones de explotación en confinamiento, en la finca San José ubicada en Masatepe, Masaya, Nicaragua. Se analizaron 148 registros productivos y reproductivos correspondientes al período 1982 a 1989. Las características estudiadas fueron producción de leche total por lactancia (PLTOT), producción de leche ajustada a 305 días (PL305), duración de la lactancia (DL), intervalo entre partos (IEP) y edad al primer parto (EPP), además se evaluó el comportamiento de la curva de lactancia y se estimaron los parámetros que la caracterizan (a) parámetro que regula la producción inicial, (b) parámetro que regula el ascenso al pico y (c) parámetro que regula la declinación post pico, a partir de pico (RP), análisis se éstos se calcularon las variables rendimiento al tiempo al pico (TP) y la persistencia (S). En los utilizaron los métodos 1) Mínimos cuadrados (Harvey, 1987), 2) Iterativo de estimación no lineal (Mardquardt, 1968), 3) Modelo y ecuaciones propuestas por Wood, (1967) a través de procedimientos computarizados (Harvey, 1987 y SAS, 1987). Mediante análisis de varianza se estudió el efecto de los factores ambientales año de parto, época, número de partos y las interacciones año de parto por época y época por número de partos sobre PLT, PL305, DL, e IEP. Las medias de mínimos cuadrados obtenidas en este estudio fueron 1,577.65 ± 92.06 Kg, 1,560.64 ± 89.65 Kg, 264.23 ± 9.5 días, 425.96 ± 11.4 días y 1,401.08 ± 120 días para PLTOT, PL305, DL, IEP y EPP respectivamente. Los valores de a, b, c, RP, TP, y S fueron 4.19006 ± 0.5381, 0.221751 ± 0.0402, 0.005152 ± 0.00051, 7,73 Kg, 43.3 días y 6.43 % respectivamente. En el ANDEVA se encontró un efecto altamente significativo (P<0.01) del año de parto sobre las características estudiadas, resultando NS las otras fuentes de variación. Los valores y efectos antes señalados hacen notar que el criollo lechero no responde muy satisfactoriamente a condiciones de confinamiento, aunque es observable su ventaja productiva, respecto al promedio del hato nacional. Al caracterizar la curva de lactancia estimada para el hato y por número de partos ésta presentó valores sobre estimados de producción, respecto a la producción real, sin embargo no presentó atipicidad en su forma.

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Heat and mass transfer of a porous permeable wall in a high temperature gas dynamical flow is considered. Numerical simulation is conducted on the ground of the conjugate mathematical model which includes filtration and heat transfer equations in a porous body and boundary layer equations on its surface. Such an approach enables one to take into account complex interaction between heat and mass transfer in the gasdynamical flow and in the structure subjected to this flow. The main attention is given to the impact of the intraporous heat transfer intensity on the transpiration cooling efficiency.

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In this paper, the importance of investigation on terrestrical processes in arid areas for mankind's living environment protection and local economy development as well as its present state of the art are elucidated. A coupling model, which evaluates heat, mass, momentum and radiative fluxes in the SPAC system, is developed for simulating microclimate over plant and bare soil. Especially, it is focussed on the details of turbulence transfer. For illustration, numerical simulation of the water-heat exchange processes at Shapotou Observatory, GAS, Ninxia Province are conducted, and the computational results show that the laws of land-surface processes are rather typical in the arid areas.

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