963 resultados para Cosmology connection


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Geodetic volcano monitoring in Tenerife has mainly focused on the Las Cañadas Caldera, where a geodetic micronetwork and a levelling profile are located. A sensitivity test of this geodetic network showed that it should be extended to cover the whole island for volcano monitoring purposes. Furthermore, InSAR allowed detecting two unexpected movements that were beyond the scope of the traditional geodetic network. These two facts prompted us to design and observe a GPS network covering the whole of Tenerife that was monitored in August 2000. The results obtained were accurate to one centimetre, and confirm one of the deformations, although they were not definitive enough to confirm the second one. Furthermore, new cases of possible subsidence have been detected in areas where InSAR could not be used to measure deformation due to low coherence. A first modelling attempt has been made using a very simple model and its results seem to indicate that the deformation observed and the groundwater level variation in the island may be related. Future observations will be necessary for further validation and to study the time evolution of the displacements, carry out interpretation work using different types of data (gravity, gases, etc) and develop models that represent the island more closely. The results obtained are important because they might affect the geodetic volcano monitoring on the island, which will only be really useful if it is capable of distinguishing between displacements that might be linked to volcanic activity and those produced by other causes. One important result in this work is that a new geodetic monitoring system based on two complementary techniques, InSAR and GPS, has been set up on Tenerife island. This the first time that the whole surface of any of the volcanic Canary Islands has been covered with a single network for this purpose. This research has displayed the need for further similar studies in the Canary Islands, at least on the islands which pose a greater risk of volcanic reactivation, such as Lanzarote and La Palma, where InSAR techniques have been used already.

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Transformers with parallel windings are commonly used to reduce the losses in the windings. Windings losses depend on the winding positioning and the frequency effects because each winding affects the current sharing of itself and the neighboring windings. In this paper a methodology for determining the connections of the parallel windings that reduces the power losses (and temperature) in the windings of multi-winding transformers is presented. Other applications of the method, such as balanced current sharing and voltage drop reduction are also explored. In this paper a methodology for determining the connections of the parallel windings that reduces the power losses (and temperature) in the windings of multi-winding transformers is presented. Other applications of the method, such as balanced current sharing and voltage drop reduction are also explored.

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Dendritic spines are thin protrusions that cover the dendritic surface of numerous neurons in the brain and whose function seems to play a key role in neural circuits. The correct segmentation of those structures is difficult due to their small size and the resulting spines can appear incomplete. This paper presents a four-step procedure for the complete reconstruction of dendritic spines. The haptically driven procedure is intended to work as an image processing stage before the automatic segmentation step giving the final representation of the dendritic spines. The procedure is designed to allow both the navigation and the volume image editing to be carried out using a haptic device. A use case employing our procedure together with a commercial software package for the segmentation stage is illustrated. Finally, the haptic editing is evaluated in two experiments; the first experiment concerns the benefits of the force feedback and the second checks the suitability of the use of a haptic device as input. In both cases, the results shows that the procedure improves the editing accuracy.

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El modelo dominante durante la Era Moderna asume la presencia del hombre como sujeto dentro del gran engranaje mecánico del Cosmos. Asimismo, recoge una idea acerca del ser natural dentro de la tradición ontológica iniciada por el eleatismo presocrático que concibe a éste como lo inmutable y estático frente al cambio y al movimiento, los cuales se constituyen como meras apariencias. Durante el periodo anterior a la aparición de los grandes filósofos griegos se produce una transformación en donde, de la inicial cosmología vinculada a un tiempo primordial, se pasará a una visión del Universo como ente indestructible, atemporal, inmutable, perfecto, geométrico y espacial. Si en Demócrito se admite un universo sometido al azar y a la necesidad, en Platón el Universo sólo atiende a la necesidad. Este modelo ontológico se pone en entredicho cuando el hombre ya no es concebido como pieza de un sistema más amplio, sino como centro radical del pensamiento. La condición radical del hombre es entonces su propia vida, siendo éste el concepto troncal del denominado vitalismo cuyo más influyente representante en España es José Ortega y Gasset. El estatismo del ser –del hombre- pierde sentido; en palabras del propio Ortega, “no es un ser sino un estar siendo” lo que caracteriza a la vida humana. La razón cartesiana es ahora la razón vital y su objeto de estudio no es la naturaleza sino el propio devenir, es decir, el tiempo, la historia. Este planteamiento es fundamental para comprender el edificio que es objeto de este estudio, el Museo de Arte Romano de Mérida (1980-1985) de Rafael Moneo. Por ello el concepto de tiempo es utilizado como marco y estructura de la presente tesis, a sabiendas del notorio y muy significativo papel que este edificio desempeñó en la carrera de su autor y en el panorama nacional e internacional de la arquitectura y de la museología. Este proyecto nos permite acercarnos al pensamiento de su autor a través de un edificio que, aun habiendo sido ampliamente reconocido, no cuenta con un estudio suficientemente exhaustivo que recoja la amplitud y riqueza que encierra. Esta tesis no es un compendio de lo que ya se ha investigado sobre Mérida; es una aproximación global e interpretativa cuyo sentido sólo puede concebirse al vislumbrar la estructura completa de la misma en sintonía con el "lógos" vital, histórico y narrativo que el proyecto encierra. Se revisará la concepción histórica según la cual, la configuración espacial de la forma habría tenido primacía respecto a su configuración temporal, al remitir esta última a una condición espacializada y circunstancial. La componente vicaria de la circunstancia será elevada por Ortega a la categoría de esencial, visualizando así una paradoja cuya reformulación nos lleva a la concepción de un tiempo sustancial. El diccionario de la RAE, en su tercera acepción, define la sustancia como “aquello que permanece en algo que cambia”, lo cual nos remite al pensamiento antiguo. Se mostrará que lo que permanece no necesariamente implica una concepción estática y eleática de la forma, que la arquitectura esencial no es unívocamente la arquitectura atemporal del platonismo y que cabe concebir la "firmitas" desde la atención a la "durée" bergsoniana. Al asociar tradicionalmente la sustancia con el referido estatismo, se margina al tiempo y a la duración a lo no sustancial; por ello, se tratará de aproximar los términos de tiempo y sustancia para definir la forma. Ello conllevará al estudio de las notables patologías derivadas de la asunción de un tiempo cronológico en nuestra contemporaneidad frente a las cuales, las intuiciones contenidas en Mérida, se alinearán con la actual actitud revisionista en el ámbito del pensamiento filosófico y científico. En Mérida, la memoria recogerá los aspectos de la conciencia así como los aspectos vinculados a la experiencia íntima y colectiva como soporte para la consecución de un discurso. La dualidad entre intuición e inteligencia será recogida por Moneo con idea de trascender su incomunicabilidad, mediante una operación que consistirá en la reivindicación de una memoria irreductible, cuya morada estaría incardinada en el propio tiempo de la duración y de la vida y no en la espacialidad coextensiva del presente y de la acción funcional sobre la materia. Moneo asumirá el papel de la memoria como condición central de una forma que se encarnará al concebirse como un teatro. En la respuesta a la contradicción entre el hecho físico y el efecto psíquico de la experiencia humana residirá la pertinencia de un tiempo narrativo. Será entonces el lenguaje el encargado de aportar sentido a la obra mediante el recurso fundado en la dramatización de la experiencia, es decir, a través de una conexión entre la conciencia íntima y el carácter social y colectivo intrínseco en la arquitectura. ABSTRACT TIME AS A SUBSTANCE OF FORM. AN APPROACH TO THE ROMAN ART MUSEUM OF MÉRIDA FROM THE VIEWPOINT OF VITALISM. The dominant model during the Modern Era placed man as a subject inside the great mechanism of the cosmos. It is also based in an idea about natural being within the ontological tradition initiated by the pre-Socratic Eleatism that conceives it as something immutable and static in respect with change and movement, which are considered as mere appearances. Prior to the emergence of the great Greek philosophers occurred a transformation where concepts of cosmology linked to a primordial time, changed to a view of the universe as indestructible, timeless, unchanging, perfect, geometric and spatial. If Democritus accepted a universe subjected to randomness and necessity, Plato thought that the universe only worked by necessity. This ontological model is called into question when man is not conceived as a piece of a broader system, but as a radical center of thinking. The radical condition of man then is his own life. This is the core concept of so-called Vitalism, whose most influential representative in Spain was José Ortega y Gasset. The stillness of being – of man - loses its meaning; in the words of Ortega, “it is not being but being in progress” that characterizes human life. The Cartesian reason is now the vital reason and its subject of study is no longer nature but its own evolution, in other words, time and history. This approach is fundamental to understand the building which is the subject of this study, the Museum of Roman Art in Mérida (1980-1985) by Rafael Moneo. The concept of time is used as a framework and structure of this thesis, demonstrating the notorious and very significant role this building has implied in the career of its author and in the national and international panorama of architecture and museology. This project allow us to approach the thought of its author through a building that, even whilst widely recognized, does not yet have a sufficiently comprehensive study covering its breadth and richness. This thesis is not a compendium of what already has been researched on Merida; it is a global and interpretative approach whose meaning can only be conceived as a study of its complete structure in line with the vital, historical and narrative logos the project implies. We will review the historical idea where spatial configuration of the form would have had primacy with respect to temporary configuration, because the latter refers to a spatial and circumstantial condition. The vicarious nature of the circumstance will be elevated by Ortega to the category of essential, thus showing a paradox which reformulation leads us to the conception of a substantial time. The dictionary of the Spanish Royal Academy, in its third meaning, defines substance as "that which remains in something that changes". This is a reference to ancient thought. It will be shown that what remains does not necessarily imply a static and Eleatic conception of form. It will also be shown that the essential architecture is not uniquely the timeless architecture of Platonism and that it is possible to conceive the "firmitas" parallel to the "durée" of Henri Bergson. As a result of this traditional association between substance and stillness, it marginalizes the time and the duration to the non-substantial; for this reason, we will try to approach terms of time and substance to define the shape. This will involve studying significant pathologies resulting from an assumption of chronological time in our contemporary world against which, the insights contained in Merida, will be aligned with the current revisionist attitude in the fields of philosophical and scientific thought. In Merida, memory includes aspects of consciousness as well as aspects linked to the intimate and collective experience as a foundation for the achievement of discourse. The duality between intuition and intelligence is put forward by Moneo with the idea of transcending its lack of communication, by means of a resource consisting of the vindication of an irreducible memory, whose home would be embodied in the time of duration and life and not in the coextensive spatiality of the present and in the functional action on the matter. Moneo demonstrates the role of memory as a central condition of form as a theatre. In response to the contradiction between the physical fact and the psychological effect of human experience lies the relevance of narrative time. Language then assumes the responsibility of giving meaning to the work through the dramatization of experience, i.e., through a connection between the intimate consciousness and the intrinsic social and collective character of architecture.

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In this paper we present a recurrent procedure to solve an inversion problem for monic bivariate Krawtchouk polynomials written in vector column form, giving its solution explicitly. As a by-product, a general connection problem between two vector column of monic bivariate Krawtchouk families is also explicitly solved. Moreover, in the non monic case and also for Krawtchouk families, several expansion formulas are given, but for polynomials written in scalar form.

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The prevalence of woody species in oceanic islands has attracted the attention of evolutionary biologists for more than a century. We used a phylogeny based on sequences of the internal-transcribed spacer region of nuclear ribosomal DNA to trace the evolution of woodiness in Pericallis (Asteraceae: Senecioneae), a genus endemic to the Macaronesian archipelagos of the Azores, Madeira, and Canaries. Our results show that woodiness in Pericallis originated independently at least twice in these islands, further weakening some previous hypotheses concerning the value of this character for tracing the continental ancestry of island endemics. The same data suggest that the origin of woodiness is correlated with ecological shifts from open to species-rich habitats and that the ancestor of Pericallis was an herbaceous species adapted to marginal habitats of the laurel forest. Our results also support Pericallis as closely related to New World genera of the tribe Senecioneae.

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Pathogens, inflammatory signals, and stress cause acute transcriptional responses in cells. The induced expression of genes in response to these signals invariably involves transcription factors of the NF-κB and AP-1/ATF families. Activation of NF-κB factors is thought to be mediated primarily via IκB kinases (IKK), whereas that of AP-1/ATF can be mediated by stress-activated protein kinases (SAPKs; also named Jun kinases or JNKs). IKKα and IKKβ are two catalytic subunits of a core IKK complex that also contains the regulatory subunit NEMO (NF-κB essential modulator)/IKKγ. The latter protein is essential for activation of the IKKs, but its mechanism of action is not known. Here we describe the molecular cloning of CIKS (connection to IKK and SAPK/JNK), a previously unknown protein that directly interacts with NEMO/IKKγ in cells. When ectopically expressed, CIKS stimulates IKK and SAPK/JNK kinases and it transactivates an NF-κB-dependent reporter. Activation of NF-κB is prevented in the presence of kinase-deficient, interfering mutants of the IKKs. CIKS may help to connect upstream signaling events to IKK and SAPK/JNK modules. CIKS could coordinate the activation of two stress-induced signaling pathways, functions reminiscent of those noted for tumor necrosis factor receptor-associated factor adaptor proteins.

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Plant chloroplasts originated from an endosymbiotic event by which an ancestor of contemporary cyanobacteria was engulfed by an early eukaryotic cell and then transformed into an organelle. Oxygenic photosynthesis is the specific feature of cyanobacteria and chloroplasts, and the photosynthetic machinery resides in an internal membrane system, the thylakoids. The origin and genesis of thylakoid membranes, which are essential for oxygenic photosynthesis, are still an enigma. Vipp1 (vesicle-inducing protein in plastids 1) is a protein located in both the inner envelope and the thylakoids of Pisum sativum and Arabidopsis thaliana. In Arabidopsis disruption of the VIPP1 gene severely affects the plant's ability to form properly structured thylakoids and as a consequence to carry out photosynthesis. In contrast, Vipp1 in Synechocystis appears to be located exclusively in the plasma membrane. Yet, as in higher plants, disruption of the VIPP1 gene locus leads to the complete loss of thylakoid formation. So far VIPP1 genes are found only in organisms carrying out oxygenic photosynthesis. They share sequence homology with a subunit encoded by the bacterial phage shock operon (PspA) but differ from PspA by a C-terminal extension of about 30 amino acids. In two cyanobacteria, Synechocystis and Anabaena, both a VIPP1 and a pspA gene are present, and phylogenetic analysis indicates that VIPP1 originated from a gene duplication of the latter and thereafter acquired its new function. It also appears that the C-terminal extension that discriminates VIPP1 proteins from PspA is important for its function in thylakoid formation.

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Neuronal synchronization in the olfactory bulb has been proposed to arise from a diffuse action of glutamate released from mitral cells (MC, olfactory bulb relay neurons). According to this hypothesis, glutamate spills over from dendrodendritic synapses formed between MC and granule cells (GC, olfactory bulb interneurons) to activate neighboring MC. The excitation of MC is balanced by a strong inhibition from GC. Here we show that MC excitation is caused by glutamate released from bulbar interneurons located in the GC layer. These reciprocal synapses depend on an unusual, 2-amino-5-phosphonovaleric acid-resistant, N-methyl-d-aspartate receptor. This type of feedback excitation onto relay neurons may strengthen the original sensory input signal and further extend the function of the dendritic microcircuit within the main olfactory bulb.

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We searched for new components that are involved in the positive regulation of nuclear gene expression by light by extending a screen for Arabidopsis cue (chlorophyll a/b-binding [CAB] protein-underexpressed) mutants (H.-M. Li, K. Culligan, R.A. Dixon, J. Chory [1995] Plant Cell 7: 1599–1610). cue mutants display reduced expression of the CAB3 gene, which encodes light-harvesting chlorophyll protein, the main chloroplast antenna. The new mutants can be divided into (a) phytochrome-deficient mutants (hy1 and phyB), (b) virescent or delayed-greening mutants (cue3, cue6, and cue8), and (c) uniformly pale mutants (cue4 and cue9). For each of the mutants, the reduction in CAB expression correlates with the visible phenotype, defective chloroplast development, and reduced abundance of the light-harvesting chlorophyll protein. Levels of protochlorophyllide oxidoreductase (POR) were reduced to varying degrees in etiolated mutant seedlings. In the dark, whereas the virescent mutants displayed reduced CAB expression and the lowest levels of POR protein, the other mutants expressed CAB and accumulated POR at near wild-type levels. All of the mutants, with the exception of cue6, were compromised in their ability to derepress CAB expression in response to phytochrome activation. Based on these results, we propose that the previously postulated plastid-derived signal is closely involved in the pathway through which phytochrome regulates the expression of nuclear genes encoding plastid proteins.

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Crossing over by homologous recombination between monomeric circular chromosomes generates dimeric circular chromosomes that cannot be segregated to daughter cells during cell division. In Escherichia coli, homologous recombination is biased so that most homologous recombination events generate noncrossover monomeric circular chromosomes. This bias is lost in ruv mutants. A novel protein, RarA, which is highly conserved in eubacteria and eukaryotes and is related to the RuvB and the DnaX proteins, γ and τ, may influence the formation of crossover recombinants. Those dimeric chromosomes that do form are converted to monomers by Xer site-specific recombination at the recombination site dif, located in the replication terminus region of the E. coli chromosome. The septum-located FtsK protein, which coordinates cell division with chromosome segregation, is required for a complete Xer recombination reaction at dif. Only correctly positioned dif sites present in a chromosomal dimer are able to access septum-located FtsK. FtsK acts by facilitating a conformational change in the Xer recombination Holliday junction intermediate formed by XerC recombinase. This change provides a substrate for XerD, which then completes the recombination reaction.

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Development of the nematode egg-laying system requires the formation of a connection between the uterine lumen and the developing vulval lumen, thus allowing a passage for eggs and sperm. This relatively simple process serves as a model for certain aspects of organogenesis. Such a connection demands that cells in both tissues become specialized to participate in the connection, and that the specialized cells are brought in register. A single cell, the anchor cell, acts to induce and to organize specialization of the epidermal and uterine epithelia, and registrates these tissues. The inductions act via evolutionarily conserved intercellular signaling pathways. The anchor cell induces the vulva from ventral epithelial cells via the LIN-3 growth factor and LET-23 transmembrane tyrosine kinase. It then induces surrounding uterine intermediate precursors via the receptor LIN-12, a founding member of the Notch family of receptors. Both signaling pathways are used multiple times during development of Caenorhabditis elegans. The outcome of the signaling is context-dependent. Both inductions are reciprocated. After the anchor cell has induced the vulva, it stretches toward the induced vulval cells. After the anchor cell has induced specialized uterine intermediate precursor cells, it fuses with a subset of their progeny.