5 resultados para SUPRAOPTIC NUCLEUS OF HYPOTHALAMUS

em Universidad Politécnica de Madrid


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This Doctoral Thesis entitled Contribution to the analysis, design and assessment of compact antenna test ranges at millimeter wavelengths aims to deepen the knowledge of a particular antenna measurement system: the compact range, operating in the frequency bands of millimeter wavelengths. The thesis has been developed at Radiation Group (GR), an antenna laboratory which belongs to the Signals, Systems and Radiocommunications department (SSR), from Technical University of Madrid (UPM). The Radiation Group owns an extensive experience on antenna measurements, running at present four facilities which operate in different configurations: Gregorian compact antenna test range, spherical near field, planar near field and semianechoic arch system. The research work performed in line with this thesis contributes the knowledge of the first measurement configuration at higher frequencies, beyond the microwaves region where Radiation Group features customer-level performance. To reach this high level purpose, a set of scientific tasks were sequentially carried out. Those are succinctly described in the subsequent paragraphs. A first step dealed with the State of Art review. The study of scientific literature dealed with the analysis of measurement practices in compact antenna test ranges in addition with the particularities of millimeter wavelength technologies. Joint study of both fields of knowledge converged, when this measurement facilities are of interest, in a series of technological challenges which become serious bottlenecks at different stages: analysis, design and assessment. Thirdly after the overview study, focus was set on Electromagnetic analysis algorithms. These formulations allow to approach certain electromagnetic features of interest, such as field distribution phase or stray signal analysis of particular structures when they interact with electromagnetic waves sources. Properly operated, a CATR facility features electromagnetic waves collimation optics which are large, in terms of wavelengths. Accordingly, the electromagnetic analysis tasks introduce an extense number of mathematic unknowns which grow with frequency, following different polynomic order laws depending on the used algorithmia. In particular, the optics configuration which was of our interest consisted on the reflection type serrated edge collimator. The analysis of these devices requires a flexible handling of almost arbitrary scattering geometries, becoming this flexibility the nucleus of the algorithmia’s ability to perform the subsequent design tasks. This thesis’ contribution to this field of knowledge consisted on reaching a formulation which was powerful at the same time when dealing with various analysis geometries and computationally speaking. Two algorithmia were developed. While based on the same principle of hybridization, they reached different order Physics performance at the cost of the computational efficiency. Inter-comparison of their CATR design capabilities was performed, reaching both qualitative as well as quantitative conclusions on their scope. In third place, interest was shifted from analysis - design tasks towards range assessment. Millimetre wavelengths imply strict mechanical tolerances and fine setup adjustment. In addition, the large number of unknowns issue already faced in the analysis stage appears as well in the on chamber field probing stage. Natural decrease of dynamic range available by semiconductor millimeter waves sources requires in addition larger integration times at each probing point. These peculiarities increase exponentially the difficulty of performing assessment processes in CATR facilities beyond microwaves. The bottleneck becomes so tight that it compromises the range characterization beyond a certain limit frequency which typically lies on the lowest segment of millimeter wavelength frequencies. However the value of range assessment moves, on the contrary, towards the highest segment. This thesis contributes this technological scenario developing quiet zone probing techniques which achieves substantial data reduction ratii. Collaterally, it increases the robustness of the results to noise, which is a virtual rise of the setup’s available dynamic range. In fourth place, the environmental sensitivity of millimeter wavelengths issue was approached. It is well known the drifts of electromagnetic experiments due to the dependance of the re sults with respect to the surrounding environment. This feature relegates many industrial practices of microwave frequencies to the experimental stage, at millimeter wavelengths. In particular, evolution of the atmosphere within acceptable conditioning bounds redounds in drift phenomena which completely mask the experimental results. The contribution of this thesis on this aspect consists on modeling electrically the indoor atmosphere existing in a CATR, as a function of environmental variables which affect the range’s performance. A simple model was developed, being able to handle high level phenomena, such as feed - probe phase drift as a function of low level magnitudes easy to be sampled: relative humidity and temperature. With this model, environmental compensation can be performed and chamber conditioning is automatically extended towards higher frequencies. Therefore, the purpose of this thesis is to go further into the knowledge of millimetre wavelengths involving compact antenna test ranges. This knowledge is dosified through the sequential stages of a CATR conception, form early low level electromagnetic analysis towards the assessment of an operative facility, stages for each one of which nowadays bottleneck phenomena exist and seriously compromise the antenna measurement practices at millimeter wavelengths.

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Oligosaccharide synthesis is an important cryoprotection strategy used by woody plants during winter dormancy. At the onset of autumn, starch stored in the stem and buds is broken down in response to the shorter days and lower temperatures resulting in the buildup of oligosaccharides. Given that the enzyme DSP4 is necessary for diurnal starch degradation in Arabidopsis leaves, this study was designed to address the role of DSP4 in this seasonal process in Castanea sativa Mill. The expression pattern of the CsDSP4 gene in cells of the chestnut stem was found to parallel starch catabolism. In this organ, DSP4 protein levels started to rise at the start of autumn and elevated levels persisted until the onset of spring. In addition, exposure of chestnut plantlets to 4 °C induced the expression of the CsDSP4 gene. In dormant trees or cold-stressed plantlets, the CsDSP4 protein was immunolocalized both in the amyloplast stroma and nucleus of stem cells, whereas in the conditions of vegetative growth, immunofluorescence was only detected in the nucleus. The studies indicate a potential role for DSP4 in starch degradation and cold acclimation following low temperature exposure during activity–dormancy transition.

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The OSIRIS cameras on the Rosetta spacecraft observed Comet 9P/Tempel 1 from 5 days before to 10 days after it was hit by the Deep Impact projectile. The Narrow Angle Camera (NAC) monitored the cometary dust in 5 different filters. The Wide Angle Camera (WAC) observed through filters sensitive to emissions from OH, CN, Na, and OI together with the associated continuum. Before and after the impact the comet showed regular variations in intensity. The period of the brightness changes is consistent with the rotation period of Tempel 1. The overall brightness of Tempel 1 decreased by about 10% during the OSIRIS observations. The analysis of the impact ejecta shows that no new permanent coma structures were created by the impact. Most of the material moved with View the MathML source∼200ms−1. Much of it left the comet in the form of icy grains which sublimated and fragmented within the first hour after the impact. The light curve of the comet after the impact and the amount of material leaving the comet (View the MathML source4.5–9×106kg of water ice and a presumably larger amount of dust) suggest that the impact ejecta were quickly accelerated by collisions with gas molecules. Therefore, the motion of the bulk of the ejecta cannot be described by ballistic trajectories, and the validity of determinations of the density and tensile strength of the nucleus of Tempel 1 with models using ballistic ejection of particles is uncertain.

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Muchas de las grandes iniciativas empresariales, se ven truncadas por falta de un adecuado análisis económico-financiero. Incluso, muchas grandes ideas no son implantadas correctamente en el primer intento por este motivo, y son otras personas las que consiguen posteriormente el éxito de esas brillantes ideas gracias a una correcta aproximación financiera. Las empresas necesitan definir sus objetivos, establecer las para lograrlos, identificar las personas responsables de su ejecución (sus roles y funciones) y elaborar un plan económico-financiero que recoja el estudio de inversiones necesarias, el análisis de costes, la previsión de ingresos, así como la estrategia financiera más adecuada para la captación de los fondos necesarios para llevar a cabo las acciones programadas. Una vez iniciado el proyecto empresarial, será imprescindible realizar un seguimiento y control de la evolución (integración), tomando las medidas que se estimen oportunas para mantener el rumbo adecuado durante todo el tiempo de actividad. En este trabajo, aplicaremos las metodologías y buenas prácticas de la gestión de proyectos, como marco estructurado que nos permita abordar las principales cuestiones económico-financieras a tener en cuenta a la hora de enfrentarnos a un proyecto empresarial, para contribuir, en la medida de lo posible, a que los emprendedores tengan en cuenta estas cuestiones, facilitando así el desarrollo de negocios, en un difícil entorno económico de crisis como el que actualmente estamos viviendo en España, y animando de esta manera a optar por la iniciativa emprendedora, tratando de minimizar el riesgo en base al contenido. ---ABSTRACT---Lack of adequate economic and financial analysis truncates many of the entrepreneurship and innovation programs. Because of that reason, many great ideas are not even correctly implemented on the first attempt, and the person who finds the proper financial approach, succeed. All the enterprises have to establish clear objectives, actions to accomplish those objectives, assign roles, responsibilities and executive functions to specific people. Elaborate funding plan that contains surveys on necessary investments, cost analysis, estimate the income, liquid assets and also financial strategy suitable for fundraising to finance programmed actions. Once the project has been executed it is essential to monitor and control the development and integration adopting measures accordingly to the needs. This thesis applies methodology and best practice of project management as structured framework for the principal economic and financial issues facing business project. It is necessary contribution to entrepreneurs understanding of business, therefore facilitates business development in such rough environment as Spain is at this moment, and at the same time encourages adopting entrepreneur’s solution as less risky one. This document aims to explore all the economic and financial issues from methodological point of view based on my own professional experience, resulting in helping to understand the importance that economy and finances have in developing adequate corporate strategy. Crisis has highlighted inadequate functionality of many companies. Most popular first symptom is lack of cash flow that deteriorates the company, and results in suspension of payments followed by closing. In other cases, difficulties appear due to poor financial management of committed resources; to be observed in lack of prevision and planning or incorrect basic functionality and operational matters on daily basis. What would be your advice to someone who have magnificent business idea however no knowledge on how to handle finances in order to succeed in initiating and executing the project? Despite of the fact that the central nucleus of this paper is at economics and finances area, all the other concepts and topics given during master will be revived; for example business strategy, consultants abilities, organization and standard processes, among others, are impregnated with knowledge of project management.

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The scientific objectives, design, and implementation of the Optical, Spectroscopic, and Infrared Remote Imaging System (OSIRIS) for the International Rosetta Mission are described. The instrument comprises two camera systems with a common electronics box. A narrow angle camera will provide high resolution images of the structure and morphology of the nucleus of a comet. A wide angle camera with high straylight rejection and dynamic range will be used to investigate the innermost coma and the emission process at the surface of the comet. An infrared imaging system, which dramatically enhances the scientific return has been included in the narrow angle camera at little extra cost.