26 resultados para Fradkin, Raúl Osvaldo


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Este trabajo tiene como objetivo el diseño de una herramienta práctica y fácil de llevar a cabo que permita al seleccionador de talentos tener una lista de los mejores pelotaris en base a todos los factores influyentes en el rendimiento. Para ello, primero se lleva a cabo una revisión sobre cuáles son los factores influyentes y como valorarlos. Posteriormente, la revisión se aplicará en el deporte de la pelota mano, diferenciando importancias entre los indicadores de cada factor y entre factores. Finalmente, el resultado será una herramienta con indicadores y los protocolos para medirlos que permita poner una nota lo más objetiva posible al pelotari a la hora de quien seleccionar para un programa de talentos.

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This paper investigates the errors of the solutions as well as the shadowing property of a class of nonlinear differential equations which possess unique solutions on a certain interval for any admissible initial condition. The class of differential equations is assumed to be approximated by well-posed truncated Taylor series expansions up to a certain order obtained about certain, in general nonperiodic, sampling points t(i) is an element of [t(0), t(J)] for i = 0, 1, . . . , J of the solution. Two examples are provided.

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Lymphangioleiomyomatosis (LAM) is a rare lung-metastasizing neoplasm caused by the proliferation of smooth muscle-like cells that commonly carry loss-of-function mutations in either the tuberous sclerosis complex 1 or 2 (TSC1 or TSC2) genes. While allosteric inhibition of the mechanistic target of rapamycin (mTOR) has shown substantial clinical benefit, complementary therapies are required to improve response and/or to treat specific patients. However, there is a lack of LAM biomarkers that could potentially be used to monitor the disease and to develop other targeted therapies. We hypothesized that the mediators of cancer metastasis to lung, particularly in breast cancer, also play a relevant role in LAM. Analyses across independent breast cancer datasets revealed associations between low TSC1/2 expression, altered mTOR complex 1 (mTORC1) pathway signaling, and metastasis to lung. Subsequently, immunohistochemical analyses of 23 LAM lesions revealed positivity in all cases for the lung metastasis mediators fascin 1 (FSCN1) and inhibitor of DNA binding 1 (ID1). Moreover, assessment of breast cancer stem or luminal progenitor cell biomarkers showed positivity in most LAM tissue for the aldehyde dehydrogenase 1 (ALDH1), integrin-beta 3 (ITGB3/CD61), and/or the sex-determining region Y-box 9 (SOX9) proteins. The immunohistochemical analyses also provided evidence of heterogeneity between and within LAM cases. The analysis of Tsc2-deficient cells revealed relative over-expression of FSCN1 and ID1; however, Tsc2-deficient cells did not show higher sensitivity to ID1-based cancer inhibitors. Collectively, the results of this study reveal novel LAM biomarkers linked to breast cancer metastasis to lung and to cell stemness, which in turn might guide the assessment of additional or complementary therapeutic opportunities for LAM.

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Se ha medido la emisividad espectral (2,5-25 micras) normal de una herramienta de corte industrial, compuesta en un 55% por nitruro de boro cúbico (cBN), en el rango de temperaturas 200-1000 ºC. La emisividad medida muestra un comportamiento suavemente descendente al aumentar la longitud de onda, propio de metales, con un descenso pronunciado alrededor de 9 micras. Este valle se corresponde con la emisividad calculada para el cBN cúbico puro en la literatura, que sin embargo no exhibe el comportamiento metálico medido. Así mismo, se observa que la emisividad espectral es esencialmente independiente de la temperatura, aunque no así la emisividad total. Los resultados experimentales para el cBN puro indican que la reflectividad de dicho compuesto se puede explicar satisfactoriamente mediante un modelo de Lorentz para dieléctricos, mientras que el ajuste teórico de la reflectividad medida para la herramienta de corte necesita incluir una contribución del modelo de Drude para explicar el comportamiento metálico observado. Este modelo combinado se ajusta razonablemente bien a las medidas, y revela que la herramienta de corte se comporta como un semiconductor degenerado, con una alta densidad de portadores libres. Además, permite realizar una estimación teórica de sus constantes ópticas. Por último, se ha realizado un estudio sobre la medida y el control de la temperatura de la muestra, empleando distintos métodos de unión termopar.

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[ES] La finalidad de este trabajo es la identificación taxonómica de algunos de los quironómidos (Diptera) presentes en el entorno de la Estación Depuradora de Aguas Residuales de Galindo. La captura de los insectos se llevó a cabo mediante dos metodologías distintas, en los clarificadores de Decantación Secundaria de la E.D.A.R. La identificación taxonómica se ha realizado con la consulta de guías de identificación de machos adultos, los cuales presentan características morfológicas diferenciadoras más útiles y complejas. La identificación llevó al establecimiento de cuatro morfotipos, que agrupan a los individuos observados según características morfológicas comunes. En cada morfotipo se incluyen los taxones correspondientes de acuerdo con su identificación taxonómica. Sin embargo, en algunos casos, la identificación no ha alcanzado el nivel de especie.

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[EN] Parasitic diseases have a great impact in human and animal health. The gold standard for the diagnosis of the majority of parasitic infections is still conventional microscopy, which presents important limitations in terms of sensitivity and specificity and commonly requires highly trained technicians. More accurate molecular-based diagnostic tools are needed for the implementation of early detection, effective treatments and massive screenings with high-throughput capacities. In this respect, sensitive and affordable devices could greatly impact on sustainable control programmes which exist against parasitic diseases, especially in low income settings. Proteomics and nanotechnology approaches are valuable tools for sensing pathogens and host alteration signatures within microfluidic detection platforms. These new devices might provide novel solutions to fight parasitic diseases. Newly described specific parasite derived products with immune-modulatory properties have been postulated as the best candidates for the early and accurate detection of parasitic infections as well as for the blockage of parasite development. This review provides the most recent methodological and technological advances with great potential for biosensing parasites in their hosts, showing the newest opportunities offered by modern “-omics” and platforms for parasite detection and control.

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Hartle's model provides the most widely used analytic framework to describe isolated compact bodies rotating slowly in equilibrium up to second order in perturbations in the context of General Relativity. Apart from some explicit assumptions, there are some implicit, like the "continuity" of the functions in the perturbed metric across the surface of the body. In this work we sketch the basics for the analysis of the second order problem using the modern theory of perturbed matchings. In particular, the result we present is that when the energy density of the fluid in the static configuration does not vanish at the boundary, one of the functions of the second order perturbation in the setting of the original work by Hartle is not continuous. This discrepancy affects the calculation of the change in mass of the rotating star with respect to the static configuration needed to keep the central energy density unchanged.

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This paper relies on the concept of next generation matrix defined ad hoc for a new proposed extended SEIR model referred to as SI(n)R-model to study its stability. The model includes n successive stages of infectious subpopulations, each one acting at the exposed subpopulation of the next infectious stage in a cascade global disposal where each infectious population acts as the exposed subpopulation of the next infectious stage. The model also has internal delays which characterize the time intervals of the coupling of the susceptible dynamics with the infectious populations of the various cascade infectious stages. Since the susceptible subpopulation is common, and then unique, to all the infectious stages, its coupled dynamic action on each of those stages is modeled with an increasing delay as the infectious stage index increases from 1 to n. The physical interpretation of the model is that the dynamics of the disease exhibits different stages in which the infectivity and the mortality rates vary as the individual numbers go through the process of recovery, each stage with a characteristic average time.