949 resultados para simian-virus-40 (SV40) large tumour-antigen nuclear localization sequence


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The rapid growth in high data rate communication systems has introduced new high spectral efficient modulation techniques and standards such as LTE-A (long term evolution-advanced) for 4G (4th generation) systems. These techniques have provided a broader bandwidth but introduced high peak-to-average power ratio (PAR) problem at the high power amplifier (HPA) level of the communication system base transceiver station (BTS). To avoid spectral spreading due to high PAR, stringent requirement on linearity is needed which brings the HPA to operate at large back-off power at the expense of power efficiency. Consequently, high power devices are fundamental in HPAs for high linearity and efficiency. Recent development in wide bandgap power devices, in particular AlGaN/GaN HEMT, has offered higher power level with superior linearity-efficiency trade-off in microwaves communication. For cost-effective HPA design to production cycle, rigorous computer aided design (CAD) AlGaN/GaN HEMT models are essential to reflect real response with increasing power level and channel temperature. Therefore, large-size AlGaN/GaN HEMT large-signal electrothermal modeling procedure is proposed. The HEMT structure analysis, characterization, data processing, model extraction and model implementation phases have been covered in this thesis including trapping and self-heating dispersion accounting for nonlinear drain current collapse. The small-signal model is extracted using the 22-element modeling procedure developed in our department. The intrinsic large-signal model is deeply investigated in conjunction with linearity prediction. The accuracy of the nonlinear drain current has been enhanced through several issues such as trapping and self-heating characterization. Also, the HEMT structure thermal profile has been investigated and corresponding thermal resistance has been extracted through thermal simulation and chuck-controlled temperature pulsed I(V) and static DC measurements. Higher-order equivalent thermal model is extracted and implemented in the HEMT large-signal model to accurately estimate instantaneous channel temperature. Moreover, trapping and self-heating transients has been characterized through transient measurements. The obtained time constants are represented by equivalent sub-circuits and integrated in the nonlinear drain current implementation to account for complex communication signals dynamic prediction. The obtained verification of this table-based large-size large-signal electrothermal model implementation has illustrated high accuracy in terms of output power, gain, efficiency and nonlinearity prediction with respect to standard large-signal test signals.

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Micromirror arrays are a very strong candidate for future energy saving applications. Within this work, the fabrication process for these micromirror arrays has been optimized and some steps for the large area fabrication of micromirror modules were performed. At first the surface roughness of the insulation layer of silicon dioxide (SiO2) was investigated. This SiO2 thin layer was deposited on three different type of substrates i.e. silicon, glass and Polyethylene Naphthalate (PEN) substrates. The deposition techniques which has been used are Plasma Enhanced Chemical Vapor Deposition (PECVD), Physical Vapor Deposition (PVD) and Ion Beam Sputter Deposition (IBSD). The thickness of the SiO2 thin layer was kept constant at 150nm for each deposition process. The surface roughness was measured by Stylus Profilometry and Atomic Force Microscopy (AFM). It was found that the layer which was deposited by IBSD has got the minimum surface roughness value and the layer which was deposited by PECVD process has the highest surface roughness value. During the same investigation, the substrate temperature of PECVD was varied from 80° C to 300° C with the step size of 40° C and it was found that the surface roughness keeps on increasing as the substrate holder temperature increases in the PECVD process. A new insulation layer system was proposed to minimize the dielectric breakdown effect in insulation layer for micromirror arrays. The conventional bilayer system was replaced by five layer system but the total thickness of insulation layer remains the same. It was found that during the actuation of micromirror arrays structure, the dielectric breakdown effect was reduced considerably as compared to the bilayer system. In the second step the fabrication process of the micromirror arrays was successfully adapted and transferred from glass substrates to the flexible PEN substrates by optimizing the conventional process recipe. In the last section, a large module of micromirror arrays was fabricated by electrically interconnecting four 10cm×10cm micromirror modules on a glass pane having dimensions of 21cm×21cm.

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Las infecciones respiratorias altas y bajas son una causa común de morbimortalidad infantil. Se ha propuesto el uso de los lisados bacterianos para prevenir las infecciones recurrentes sin embargo su uso aún se considera controversial. Metodología: Se realizó una revisión sistemática de la literatura. La búsqueda se realizó a través de las bases de datos PUBMED, Embase, Ovid, LiLaCS y Cochrane library plus. Se incluyeron metanálisis publicados en idiomas inglés y español, entre los años 1998 y 2012. Se realizó una evaluación de calidad siguiendo la estrategia Quorum y un análisis cualitativo y cuantitativo de los resultados. Resultados: Se incluyeron 4 revisiones sistemáticas de la literatura con metanálisis. Fue apreciable la disminución de las recurrencias de las infecciones respiratorias relacionadas con el uso de los lisados bacterianos. Los lisados bacterianos disminuyen la necesidad de uso de antibióticos. No se encontró evidencia sobre el uso de los lisados sobre desenlaces como la necesidad de intervenciones adicionales, tiempo de hospitalización, costo relacionado con la atención en salud. No se reportaron eventos adversos de importancia. Conclusión: Los lisados bacterianos son eficaces en disminuir la recurrencia de las infecciones respiratorias en pacientes en edad pediátrica.

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La aparición de las armas nucleares hacia los años ’40 ha cambiado la forma en que ciertos Estados desarrollan sus relaciones bilaterales en materia de seguridad, debido a que la obtención de estas garantiza capacidad militar que no se tiene con las armas de carácter convencional. Tanto Estados Unidos como la Unión Soviética procuraron la producción de las armas nucleares a gran escala, lo cual conllevó a la consolidación de una carrera armamentista entre ambos que fue regulada por tratados bilaterales: esta situación generó un Dilema de Seguridad entre ambos Estados. Con la disolución de la Unión Soviética y el surgimiento de la Federación Rusa en el inicio de la década del ’90, el Sistema Internacional que se había configurado durante la Guerra Fría se alteró debido a que, si bien se había acabado el conflicto que existía en el periodo bipolar, aún existían las armas nucleares con las que se garantizaba la continuación del Dilema de Seguridad que había surgido en los años anteriores. Con la presente monografía pretende analizar el Dilema de Seguridad durante el periodo comprendido entre 1991 y 2010 entre Estados Unidos y la Federación Rusa.