992 resultados para Decoupling Vector Field
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Natural selection favors the survival and reproduction of organisms that are best adapted to their environment. Selection mechanism in evolutionary algorithms mimics this process, aiming to create environmental conditions in which artificial organisms could evolve solving the problem at hand. This paper proposes a new selection scheme for evolutionary multiobjective optimization. The similarity measure that defines the concept of the neighborhood is a key feature of the proposed selection. Contrary to commonly used approaches, usually defined on the basis of distances between either individuals or weight vectors, it is suggested to consider the similarity and neighborhood based on the angle between individuals in the objective space. The smaller the angle, the more similar individuals. This notion is exploited during the mating and environmental selections. The convergence is ensured by minimizing distances from individuals to a reference point, whereas the diversity is preserved by maximizing angles between neighboring individuals. Experimental results reveal a highly competitive performance and useful characteristics of the proposed selection. Its strong diversity preserving ability allows to produce a significantly better performance on some problems when compared with stat-of-the-art algorithms.
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We summarise recent results about the evolution of linear density perturbations in scalar field cosmologies with an exponential potential. We use covariant and gauge invariant perturbation variables and a dynamical systems' approach. We establish under what conditions do the perturbations decay to the future in agreement with the cosmic no-hair conjecture.
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Dissertação de mestrado integrado em Engenharia Biomédica (área de especialização em Engenharia Clínica)
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ABSTRACTThe Amazon várzeas are an important component of the Amazon biome, but anthropic and climatic impacts have been leading to forest loss and interruption of essential ecosystem functions and services. The objectives of this study were to evaluate the capability of the Landsat-based Detection of Trends in Disturbance and Recovery (LandTrendr) algorithm to characterize changes in várzeaforest cover in the Lower Amazon, and to analyze the potential of spectral and temporal attributes to classify forest loss as either natural or anthropogenic. We used a time series of 37 Landsat TM and ETM+ images acquired between 1984 and 2009. We used the LandTrendr algorithm to detect forest cover change and the attributes of "start year", "magnitude", and "duration" of the changes, as well as "NDVI at the end of series". Detection was restricted to areas identified as having forest cover at the start and/or end of the time series. We used the Support Vector Machine (SVM) algorithm to classify the extracted attributes, differentiating between anthropogenic and natural forest loss. Detection reliability was consistently high for change events along the Amazon River channel, but variable for changes within the floodplain. Spectral-temporal trajectories faithfully represented the nature of changes in floodplain forest cover, corroborating field observations. We estimated anthropogenic forest losses to be larger (1.071 ha) than natural losses (884 ha), with a global classification accuracy of 94%. We conclude that the LandTrendr algorithm is a reliable tool for studies of forest dynamics throughout the floodplain.
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The computation of the optical conductivity of strained and deformed graphene is discussed within the framework of quantum field theory in curved spaces. The analytical solutions of the Dirac equation in an arbitrary static background geometry for one dimensional periodic deformations are computed, together with the corresponding Dirac propagator. Analytical expressions are given for the optical conductivity of strained and deformed graphene associated with both intra and interbrand transitions. The special case of small deformations is discussed and the result compared to the prediction of the tight-binding model.
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We study the longitudinal and transverse spin dynamical structure factors of the spin-1/2 XXX chain at finite magnetic field h, focusing in particular on the singularities at excitation energies in the vicinity of the lower thresholds. While the static properties of the model can be studied within a Fermi-liquid like description in terms of pseudoparticles, our derivation of the dynamical properties relies on the introduction of a form of the ‘pseudofermion dynamical theory’ (PDT) of the 1D Hubbard model suitably modified for the spin-only XXX chain and other models with two pseudoparticle Fermi points. Specifically, we derive the exact momentum and spin-density dependences of the exponents ζτ(k) controlling the singularities for both the longitudinal  and transverse (τ = t) dynamical structure factors for the whole momentum range  , in the thermodynamic limit. This requires the numerical solution of the integral equations that define the phase shifts in these exponents expressions. We discuss the relation to neutron scattering and suggest new experiments on spin-chain compounds using a carefully oriented crystal to test our predictions.
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Dissertação de mestrado integrado em Engenharia Eletrónica Industrial e de Computadores
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Tese de Doutoramento em Biologia de Plantas
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Inspired by natural structures, great attention has been devoted to the study and development of surfaces with extreme wettable properties. The meticulous study of natural systems revealed that the micro/nano-topography of the surface is critical to obtaining unique wettability features, including superhydrophobicity. However, the surface chemistry also has an important role in such surface characteristics. As the interaction of biomaterials with the biological milieu occurs at the surface of the materials, it is expected that synthetic substrates with extreme and controllable wettability ranging from superhydrophilic to superhydrophobic regimes could bring about the possibility of new investigations of cellâ material interactions on nonconventional surfaces and the development of alternative devices with biomedical utility. This first part of the review will describe in detail how proteins and cells interact with micro/nano-structured surfaces exhibiting extreme wettabilities.
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This chapter describes the how the vector of coordinates are defined in the formulation of spatial multibody systems. For this purpose, the translational motion is described in terms of Cartesian coordinates, while rotational motion is specified using the technique of Euler parameters. This approach avoids the computational difficulties associated with the singularities in the case of using Euler angles or Bryant angles. Moreover, the formulation of the velocities vector and accelerations vector is presented and analyzed here. These two sets of vectors are defined in terms of translational and rotational coordinates.
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OBJECTIVE: Analyze the dromotropic disturbances (vector-electrocardiographic), and the possible anatomic causes, provoked by selective alcohol injection in the septal branch, for percutaneous treatment, of obstructive hypertrophic cardiomyopathy. METHODS: Ten patients with a mean age of 52.7 years underwent percutaneous septal ablation (PTSA) from october 1998; all in functional class III/IV). Twelve-lead electrocardiogram was performed prior to and during PTSA, and later electrocardiogram and vectorcardiogram according to Frank's method. The patients were followed up for 32 months. RESULTS: On electrocardiogram (ECG) prior to PTSA all patients had sinus rhythm and left atrial enlargement, 8 left ventricular hypertrophy of systolic pattern. On ECG immediately after PTSA, 8 had complete right bundle-branch block; 1 transient total atrioventricular block; 1 alternating transient bundle-branch block either right or hemiblock. On late ECG 8 had complete right bundle-branch block confirmed by vectorcardiogram, type 1 or Grishman. CONCLUSION: Septal fibrosis following alcohol injection caused a predominance of complete right bundle-branch block, different from surgery of myotomy/myectomy.
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v.13:pt.2:no.1(1918)
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v.13:pt.2:no.2(1919)
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El “Mal de Río Cuarto” es la enfermedad más importante del maíz en la Argentina. El agente causal es un fijivirus denominado Mal de Río Cuarto virus (MRCV). Se transmite únicamente a través de delfácidos (Hemiptera-Delphacidae) de forma persistente propagativa. Se han descripto diversas especies con demostrada capacidad vectora, entre ellos Delphacodes kuscheli Fennah y Toya propinqua Fieber. La primera es de gran importancia tanto por su abundancia en las zonas maiceras de nuestro país como por su eficiencia de transmisión mientras que T. propinqua es una especie cosmopolita que se encuentra ampliamente distribuida en toda el área productiva. Ambas especies poseen una demostrada capacidad de transmisión a cereales de grano fino, importantes epidemiológicamente por su rol como reservorios del virus y el vector en época invernal. Un aspecto que requiere especial atención es la aparición de una nueva virosis, un Cytorhabdovirus, en infecciones mixtas con MRCV en cereales de invierno en el sur de la provincia de Córdoba (región endémica del Mal de Río Cuarto). Al igual que este último el rhabdovirus se transmite por insectos delfácidos, por lo que sería relevante estudiar las posibles interacciones entre la coinfección por ambos patógenos y sus consecuencias en la transmisión del MRCV. La capacidad vectora puede estar afectada por diversos aspectos biológicos, entre los que se pueden mencionar el estadío del insecto al momento de la adquisición del virus, los niveles de concentración viral alcanzados en el organismo del vector, la existencia de barreras morfofisiológicas (como las membranas basales del intestino medio y glándulas salivales, y mecanismos de inmunidad innata) y la presencia de endosimbiontes. Se conoce que existen diferencias en la transmisión según el MRCV se adquiera como ninfa de primer o tercer estadío, por lo que se propone realizar estudios comparativos entre ambos grupos. Se plantea además evaluar el efecto de diferencias de concentración del MRCV en el organismo del insecto en la transmisión mediante RT-qPCR, en infecciones simples y mixtas. Se analizará la posible existencia de barreras morfofisiológicas observando el tropismo de las partículas virales en los tejidos del vector a través de inmunomicroscopía confocal y la activación diferencial de genes de inmunidad innata con RT-qPCR. Dado que existen antecedentes de la presencia de endosimbiontes, como Wolbachia pipientis en este grupo de insectos, se propone además estudiar la prevalencia de esta bacteria y analizar las cepas existentes en poblaciones de delfácidos del área maicera. Este objetivo es importante por dos razones. En primer lugar, W pipientis es ampliamente estudiada como potencial biocontrolador de vectores debido al fenómeno de incompatibilidad citoplasmática que expresa en sus hospedantes. En segundo lugar, esta bacteria influye en la eficiencia de transmisión de enfermedades ya que se conoce que los endosimbiontes producen proteínas denominadas simbioninas que protegen las partículas virales de la degradación enzimática durante su circulación por la hemolinfa. De este modo, la presencia de Wolbachia podría condicionar la replicación, estabilidad y persistencia de las partículas virales en insectos vectores, fenómenos comprobados para otros patosistemas. Este proyecto tiene como objetivo final profundizar los conocimientos acerca del fenómeno de la transmisión viral y establecer bases para el manejo integrado del vector y la enfermedad.