998 resultados para Tierra deformable


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Esta serie tiene como finalidad dar a conocer las especies presentes en los diferentes estados provinciales.

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A ciento veintidós años de las primeras menciones realizadas por Perugia en 1891 sobre peces del Canal Beagle, editamos la presente iconografía que incluye alrededor de treinta especies de las mencionadas por López et al., en 1996. Este trabajo, desarrollado en el CADIC dentro del proyecto Biología de los recursos ictícos del Canal de Beagle financiado por el CONICET, junto al publicado por Lloris y Rucabado (1991), proveyeron elementos de base para tener una visión más profunda del componente ictiofaunistíco de la región. En la presente publicación se destaca la magnífica obra del maestro Miguel Barbagallo, quién vuelca su capacidad y espíritu en estas láminas, las que además de su valor artístico son un aporte más a la consolidación del conocimiento de los recursos naturales de nuestro país.

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Using the level-set method and the continuum interface model, the axisymmetric thermocapillary migration of gas bubbles in an immiscible bulk liquid with a temperature gradient at moderate to large Marangoni number is simulated numerically. Constant material properties of the two phases are assumed. Steady state of the motion can always be reached. The terminal migration velocity decreases monotonously with the increase of the Marangoni number due to the wrapping of isotherms around the front surface of the bubble. Good agreements with space experimental data and previous theoretical and numerical studies in the literature are evident. Slight deformation of bubble is observed, but no distinct influence on the motion occurs. It is also found that the influence of the convective transport of heat inside bubbles cannot be neglected at finite Marangoni number, while the influence of the convective transport of momentum inside bubbles may be actually negligible.

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Cox, S.J. (2006) Calculations of the minimal perimeter for N deformable cells of equal area confined in a circle. Philosophical Magazine Letters. 86:569-578.

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32 hojas : fotografías.

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We describe a method for shape-based image database search that uses deformable prototypes to represent categories. Rather than directly comparing a candidate shape with all shape entries in the database, shapes are compared in terms of the types of nonrigid deformations (differences) that relate them to a small subset of representative prototypes. To solve the shape correspondence and alignment problem, we employ the technique of modal matching, an information-preserving shape decomposition for matching, describing, and comparing shapes despite sensor variations and nonrigid deformations. In modal matching, shape is decomposed into an ordered basis of orthogonal principal components. We demonstrate the utility of this approach for shape comparison in 2-D image databases.

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A new deformable shape-based method for color region segmentation is described. The method includes two stages: over-segmentation using a traditional color region segmentation algorithm, followed by deformable model-based region merging via grouping and hypothesis selection. During the second stage, region merging and object identification are executed simultaneously. A statistical shape model is used to estimate the likelihood of region groupings and model hypotheses. The prior distribution on deformation parameters is precomputed using principal component analysis over a training set of region groupings. Once trained, the system autonomously segments deformed shapes from the background, while not merging them with similarly colored adjacent objects. Furthermore, the recovered parametric shape model can be used directly in object recognition and comparison. Experiments in segmentation and image retrieval are reported.

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A method for deformable shape detection and recognition is described. Deformable shape templates are used to partition the image into a globally consistent interpretation, determined in part by the minimum description length principle. Statistical shape models enforce the prior probabilities on global, parametric deformations for each object class. Once trained, the system autonomously segments deformed shapes from the background, while not merging them with adjacent objects or shadows. The formulation can be used to group image regions based on any image homogeneity predicate; e.g., texture, color, or motion. The recovered shape models can be used directly in object recognition. Experiments with color imagery are reported.

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We propose to investigate a model-based technique for encoding non-rigid object classes in terms of object prototypes. Objects from the same class can be parameterized by identifying shape and appearance invariants of the class to devise low-level representations. The approach presented here creates a flexible model for an object class from a set of prototypes. This model is then used to estimate the parameters of low-level representation of novel objects as combinations of the prototype parameters. Variations in the object shape are modeled as non-rigid deformations. Appearance variations are modeled as intensity variations. In the training phase, the system is presented with several example prototype images. These prototype images are registered to a reference image by a finite element-based technique called Active Blobs. The deformations of the finite element model to register a prototype image with the reference image provide the shape description or shape vector for the prototype. The shape vector for each prototype, is then used to warp the prototype image onto the reference image and obtain the corresponding texture vector. The prototype texture vectors, being warped onto the same reference image have a pixel by pixel correspondence with each other and hence are "shape normalized". Given sufficient number of prototypes that exhibit appropriate in-class variations, the shape and the texture vectors define a linear prototype subspace that spans the object class. Each prototype is a vector in this subspace. The matching phase involves the estimation of a set of combination parameters for synthesis of the novel object by combining the prototype shape and texture vectors. The strengths of this technique lie in the combined estimation of both shape and appearance parameters. This is in contrast with the previous approaches where shape and appearance parameters were estimated separately.

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An improved method for deformable shape-based image indexing and retrieval is described. A pre-computed index tree is used to improve the speed of our previously reported on-line model fitting method; simple shape features are used as keys in a pre-generated index tree of model instances. In addition, a coarse to fine indexing scheme is used at different levels of the tree to further improve speed while maintaining matching accuracy. Experimental results show that the speedup is significant, while accuracy of shape-based indexing is maintained. A method for shape population-based retrieval is also described. The method allows query formulation based on the population distributions of shapes in each image. Results of population-based image queries for a database of blood cell micrographs are shown.

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An improved method for deformable shape-based image segmentation is described. Image regions are merged together and/or split apart, based on their agreement with an a priori distribution on the global deformation parameters for a shape template. The quality of a candidate region merging is evaluated by a cost measure that includes: homogeneity of image properties within the combined region, degree of overlap with a deformed shape model, and a deformation likelihood term. Perceptually-motivated criteria are used to determine where/how to split regions, based on the local shape properties of the region group's bounding contour. A globally consistent interpretation is determined in part by the minimum description length principle. Experiments show that the model-based splitting strategy yields a significant improvement in segmention over a method that uses merging alone.

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Mechanical stimuli are important factors that regulate cell proliferation, survival, metabolism and motility in a variety of cell types. The relationship between mechanical deformation of the extracellular matrix and intracellular deformation of cellular sub-regions and organelles has not been fully elucidated, but may provide new insight into the mechanisms involved in transducing mechanical stimuli to biological responses. In this study, a novel fluorescence microscopy and image analysis method was applied to examine the hypothesis that mechanical strains are fully transferred from a planar, deformable substrate to cytoplasmic and intranuclear regions within attached cells. Intracellular strains were measured in cells derived from the anulus fibrosus of the intervertebral disc when attached to an elastic silicone membrane that was subjected to tensile stretch. Measurements indicated cytoplasmic strains were similar to those of the underlying substrate, with a strain transfer ratio (STR) of 0.79. In contrast, nuclear strains were much smaller than those of the substrate, with an STR of 0.17. These findings are consistent with previous studies indicating nuclear stiffness is significantly greater than cytoplasmic stiffness, as measured using other methods. This study provides a novel method for the study of cellular mechanics, including a new technique for measuring intranuclear deformations, with evidence of differential magnitudes and patterns of strain transferred from the substrate to cell cytoplasm and nucleus.

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El presente trabajo se focaliza en el estudio del valor de la tierra en pradera pampeana y su relación con los commodities agropecuarios para el período comprendido entre los años 1988 y 2008. En la década de 1990 se ha producido un nuevo escenario en el mercado inmobiliario rural argentino, principalmente en la zona conocida como Pradera Pampeana. Los motivos principales que lo han desencadenado fueron la adaptación de la siembra directa y el uso de variedades transgénicas, acompañado por todo un paquete tecnológico hasta entonces desconocido en el país. El valor de la tierra está determinado por la productividad de los factores y el instrumento que se utilizó para cuantificar el mismo fue el método de flujo de fondos y del valor residual descontado por la tasa de corte imperante en cada período bajo análisis. En el presente trabajo se buscó verificar el comportamiento del valor de equilibrio (técnico) de la tierra en la pampa húmeda y su relación con el valor de mercado. El valor de la tierra en las distintas zonas de la pampa húmeda constituye un sistema de vasos comunicantes que se expresa a través de la correlación que existe entre los valores de las distintas zonas. Se produce una revalorización de los campos por arbitraje o arrastre al variar los precios de algunos commodities más que otros. Finalmente se demostró que el precio relativo de los granos a nivel internacional, la tecnología aplicada, las políticas públicas vigentes y la tasa de corte son determinantes del valor técnico de la tierra; el cual, sumado a las expectativas de valoración genera el valor de mercado. Las encuestas realizadas a expertos en el mercado inmobiliario rural reflejan que el valor de la tierra se debe a lo dicho, además de ser un factor escaso y un refugio contra la desvalorización del dólar y el peso.

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La deforestación a gran escala de los bosques secos de Argentina es un ejemplo de la intensificación del uso de la tierra que está sufriendo el planeta. Aprovechando la aplicación de una técnica de manejo que elimina grandes extensiones de vegetación arbustiva (rolado), este trabajo evaluó cómo los cambios en la estructura de la vegetación afectaron el balance hídrico y la productividad de un bosque seco del centro de la provincia de San Luis, Argentina. Mediante experimentos a campo (escala de parcela) y usando imágenes satelitales (escala de paisaje) se realizaron comparaciones de la dinámica del agua y de la dinámica de la vegetación en sitios pareados de bosque/desmonte. A escala de parcela, la eliminación de los arbustos produjo un aumento en la cobertura de los pastos y en la biomasa radical fina del primer metro de suelo. A lo largo del tiempo, los sitios deforestados presentaron cada vez menores cantidades de sal en los primeros metros del perfil pero también menores cantidades de agua, sugiriendo un lixiviado de sales, que elevó el potencial osmótico y permitió una reducción del potencial mátrico de magnitud similar. A escala de paisaje, el desmonte produjo una caída en la productividad total, acortando la estación de crecimiento hasta 3 meses. El cambio en la proporción leñosas/herbáceas incrementó el albedo (de 0.8 a 0.12) y la temperatura superficial (entre 1.5- 4°C dependiendo de la fecha) y redujo la evapotranspiración en un 30 por ciento. La sabanización de este ecosistema ilustra cómo, al simplificarse las comunidades vegetales, los flujos de agua se pueden modificar al punto de alterar la dinámica de las sales, las que a su vez pueden producir a mediano plazo efectos suficientes sobre la vegetación como para alterar el balance hídrico y llevar el sistema hacia un funcionamiento hidrológico diferente.