11 resultados para anaerobic threshold

em Universidad Politécnica de Madrid


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Se han realizado muchos estudios relacionados con el fútbol, pero pocos con jugadores profesionales evaluándolos en un periodo de dos temporadas consecutivas. El objetivo de este trabajo fue investigar las variaciones que sufren parámetros relacionados con la composición corporal, la velocidad, la fuerza y la resistencia de futbolistas profesionales de alto y medio nivel en el periodo de una temporada. Material y métodos: 20 jugadores de categoría alta (CA) y 21 jugadores de categoría media (CM) fueron evaluados a lo largo de una temporada en tres ocasiones, la primera a mitad de pretemporada (M1), la segunda a mitad del periodo competitivo (M2) y la última al final de la temporada (M3). Algunos de ellos, 16 de CA y 8 de CM participaron durante dos temporadas seguidas realizando un total de seis evaluaciones. En cada evaluación se midió la talla (TA), peso corporal (PC), sumatorio de pliegues grasos (ZP), el índice de masa corporal (IMC), el tiempo en 5 (T5) y 20 (T20) metros, el salto en contra movimiento (CMJ), Abalakov (ABA), la velocidad del umbral anaeróbico (VUAN), el peso de potencia media (PPM) y la potencia media (PMW) en el ejercicio de media sentadilla. Resultados: Hubo diferencias significativas en el ZP en el grupo de CA entre la M1 (45,28±8,98) y la M2 (40,57±5,89) al igual que en la VUAN entre la M1 (12,49±0,67) con respecto a la M2 (12,93±0,62) y la M3 (12,93±0,44). Además, se encontraron diferencias significativas en el grupo CA en la (T5) entre la M1 (1,04±0,06) y la M2 (0,99±0,04) y la M3 (1,00±0,04) y en el grupo CM sólo entre la M1 (1,05±0,05) y la M3 (1,01±0,04). El PPM fue superior en la M2 (94±13,74) con respecto a la M1 (82±13,64) de forma significativa, así como la PMW, M1 (1642,87±207,05) frente a M2 (1735,07±168,01) en el grupo de CA y también hubo diferencias significativas en el PPM entre la M1 (70,67±10,74) y la M2 (80,50±13,20) en el grupo de CM, así como en la PMW en la M1 (1574,90±205,66) con la M2 (1642,87±207,05). Conclusiones: Hubo parámetros condicionales que sufrieron variaciones a lo largo de la temporada. Los cambios más importantes se produjeron desde la mitad del periodo preparatorio hasta la mitad del periodo competitivo, no apreciándose cambios desde la mitad del periodo competitivo hasta el final del mismo. ABSTRACT They have been many studies on soccer, but few with professional players evaluating them during two consecutive seasons. The purpose of this study was to investigate seasonal variations in fitness parameters as body composition, speed, strength and stamina in top and medium class professional soccer players during a hole season. Methods: 20 Top Class male (CA) and 21 Medium Class male (CM) soccer players were evaluated during a season in three different periods. The first one at half preseason (M1), second one at the middle of the competitive period (M2) and last one at the end of the season (M3). 16 players from group CA and 8 from group CM were registered from two seasons in a row, doing a total of 6 evaluation periods. In each evaluation period was measured body height (TA), body mass (PC), skinfolds sum (ZP), body mass index (IMC), acceleration on 5 (T5) y 20 (T20) meters, countermovement jump (CMJ), free arms countermovement jump (ABA), anaerobic threshold speed (VUAN), average power strength weight (PPM) and average power (PMW) on half squat. Results: significant decrease on ZP were found in group CA from M1 (45,28±8,98) to M2 (40,57±5,89) and a significant increase on VUAN from M1 (12,49±0,67) to M2 (12,93±0,62) and M3 (12,93±0,44). Also a significant decrease was found in group CA on (T5) from M1 (1,04±0,06) to M2 (0,99±0,04) and M3 (1,00±0,04). PPM was significantly higher from M2 (94±13,74) to M1 (82±13,64) as PMW from M1 (1642,87±207,05) to M2 (1735,07±168,01) in CA group and also was found a significant increase in group CM on PPM from M1 (70,67±10,74) to M2 (80,50±13,20) and on PMW from M1 (1574,90±205,66) to M2 (1642,87±207,05). Conclusions: Some of the fitness parameters did suffer seasonal variations. The most important changes took place from the middle of the preseason period until middle of the competitive period, remaining unchanged from middle of the competitive period until the end of the season.

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El entrenamiento con cargas es una actividad anaeróbica glucolítica intensa y se ha comprobado que el error en las estimaciones del gasto energético en esta actividad varía entre un 13 y un 30%. El principal objetivo de este trabajo es describir la contribución anaeróbica de energía en un circuito con cargas. Doce hombres (20-26 años) y diecisiete mujeres (18-29 años) estudiantes de Ciencias de la Actividad Física y del Deporte realizaron un entrenamiento en circuito de cargas a 6 intensidades diferentes (entre el 30% y 80% de su 15RM). Durante la totalidad de los circuitos se registró el gasto energético aeróbico por calorimetría indirecta, la frecuencia cardiaca con pulsómetro Polar® y la concentración de lactato en sangre capilar para medir la contribución anaeróbica. El incremento que produjo la energía anaeróbica se situó entre el 5,1% y un máximo del 13,5%, lo que hace evidente que medir o no la contribución anaeróbica en el entrenamiento en circuito puede provocar un error medio del 9,65%. Existen diferencias significativas (Pmenor que 0,05) entre el gasto energético aeróbico y total (aeróbico+anaeróbico) en todas las intensidades, en un circuito de entrenamiento con cargas a intensidades progresivas.

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Relacionado con línea de investigación del GDS del ISOM ver http://www.isom.upm.es/dsemiconductores.php

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To improve percolation modelling on soils the geometrical properties of the pore space must be understood; this includes porosity, particle and pore size distribution and connectivity of the pores. A study was conducted with a soil at different bulk densities based on 3D grey images acquired by X-ray computed tomography. The objective was to analyze the effect in percolation of aspects of pore network geometry and discuss the influence of the grey threshold applied to the images. A model based on random walk algorithms was applied to the images, combining five bulk densities with up to six threshold values per density. This allowed for a dynamical perspective of soil structure in relation to water transport through the inclusion of percolation speed in the analyses. To evaluate separately connectivity and isolate the effect of the grey threshold, a critical value of 35% of porosity was selected for every density. This value was the smallest at which total-percolation walks appeared for the all images of the same porosity and may represent a situation of percolation comparable among bulks densities. This criterion avoided an arbitrary decision in grey thresholds. Besides, a random matrix simulation at 35% of porosity with real images was used to test the existence of pore connectivity as a consequence of a non-random soil structure.

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In recent decades, there has been an increasing interest in systems comprised of several autonomous mobile robots, and as a result, there has been a substantial amount of development in the eld of Articial Intelligence, especially in Robotics. There are several studies in the literature by some researchers from the scientic community that focus on the creation of intelligent machines and devices capable to imitate the functions and movements of living beings. Multi-Robot Systems (MRS) can often deal with tasks that are dicult, if not impossible, to be accomplished by a single robot. In the context of MRS, one of the main challenges is the need to control, coordinate and synchronize the operation of multiple robots to perform a specic task. This requires the development of new strategies and methods which allow us to obtain the desired system behavior in a formal and concise way. This PhD thesis aims to study the coordination of multi-robot systems, in particular, addresses the problem of the distribution of heterogeneous multi-tasks. The main interest in these systems is to understand how from simple rules inspired by the division of labor in social insects, a group of robots can perform tasks in an organized and coordinated way. We are mainly interested on truly distributed or decentralized solutions in which the robots themselves, autonomously and in an individual manner, select a particular task so that all tasks are optimally distributed. In general, to perform the multi-tasks distribution among a team of robots, they have to synchronize their actions and exchange information. Under this approach we can speak of multi-tasks selection instead of multi-tasks assignment, which means, that the agents or robots select the tasks instead of being assigned a task by a central controller. The key element in these algorithms is the estimation ix of the stimuli and the adaptive update of the thresholds. This means that each robot performs this estimate locally depending on the load or the number of pending tasks to be performed. In addition, it is very interesting the evaluation of the results in function in each approach, comparing the results obtained by the introducing noise in the number of pending loads, with the purpose of simulate the robot's error in estimating the real number of pending tasks. The main contribution of this thesis can be found in the approach based on self-organization and division of labor in social insects. An experimental scenario for the coordination problem among multiple robots, the robustness of the approaches and the generation of dynamic tasks have been presented and discussed. The particular issues studied are: Threshold models: It presents the experiments conducted to test the response threshold model with the objective to analyze the system performance index, for the problem of the distribution of heterogeneous multitasks in multi-robot systems; also has been introduced additive noise in the number of pending loads and has been generated dynamic tasks over time. Learning automata methods: It describes the experiments to test the learning automata-based probabilistic algorithms. The approach was tested to evaluate the system performance index with additive noise and with dynamic tasks generation for the same problem of the distribution of heterogeneous multi-tasks in multi-robot systems. Ant colony optimization: The goal of the experiments presented is to test the ant colony optimization-based deterministic algorithms, to achieve the distribution of heterogeneous multi-tasks in multi-robot systems. In the experiments performed, the system performance index is evaluated by introducing additive noise and dynamic tasks generation over time.

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Ionoluminescence (IL) has been used in this work as a sensitive tool to probe the microscopic electronic processes and structural changes produced on quartz by the irradiation with swift heavy ions. The IL yields have been measured as a function of irradiation fluence and electronic stopping power. The results are consistent with the assignment of the 2.7 eV (460 nm) band to the recombination of self-trapped excitons at the damaged regions in the irradiated material. Moreover, it was possible to determine the threshold for amorphization by a single ion impact, as 1:7 keV/nm, which agrees well with the results of previous studies.

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This paper focuses on the general problem of coordinating multiple robots. More specifically, it addresses the self-selection of heterogeneous specialized tasks by autonomous robots. In this paper we focus on a specifically distributed or decentralized approach as we are particularly interested in a decentralized solution where the robots themselves autonomously and in an individual manner, are responsible for selecting a particular task so that all the existing tasks are optimally distributed and executed. In this regard, we have established an experimental scenario to solve the corresponding multi-task distribution problem and we propose a solution using two different approaches by applying Response Threshold Models as well as Learning Automata-based probabilistic algorithms. We have evaluated the robustness of the algorithms, perturbing the number of pending loads to simulate the robot’s error in estimating the real number of pending tasks and also the dynamic generation of loads through time. The paper ends with a critical discussion of experimental results.

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A great challenge for future information technologies is building reliable systems on top of unreliable components. Parameters of modern and future technology devices are affected by severe levels of process variability and devices will degrade and even fail during the normal lifeDme of the chip due to aging mechanisms. These extreme levels of variability are caused by the high device miniaturizaDon and the random placement of individual atoms. Variability is considered a "red brick" by the InternaDonal Technology Roadmap for Semiconductors. The session is devoted to this topic presenDng research experiences from the Spanish Network on Variability called VARIABLES. In this session a talk entlited "Modeling sub-threshold slope and DIBL mismatch of sub-22nm FinFet" was presented.

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Division of labor is a widely studied aspect of colony behavior of social insects. Division of labor models indicate how individuals distribute themselves in order to perform different tasks simultaneously. However, models that study division of labor from a dynamical system point of view cannot be found in the literature. In this paper, we define a division of labor model as a discrete-time dynamical system, in order to study the equilibrium points and their properties related to convergence and stability. By making use of this analytical model, an adaptive algorithm based on division of labor can be designed to satisfy dynamic criteria. In this way, we have designed and tested an algorithm that varies the response thresholds in order to modify the dynamic behavior of the system. This behavior modification allows the system to adapt to specific environmental and collective situations, making the algorithm a good candidate for distributed control applications. The variable threshold algorithm is based on specialization mechanisms. It is able to achieve an asymptotically stable behavior of the system in different environments and independently of the number of individuals. The algorithm has been successfully tested under several initial conditions and number of individuals.

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One of the most productive discoveries of art and architectural criticism is the comparative reading between different situations. It is an approach that does away with all conventions and destroys any attempt to codifing the future. It also reveals the futility of established styles or movements. In the early 20th century, the Russian Formalists spoke of the dissimilarity of the similar in literature and more than a few studies on the visual arts have used the comparative method, from Heinrich Wolfflin to Robert Venturi. But something more has to be added, personal biography. The involvement of the individual, their name and their life, in the history of art bursts in with all the force of what is real, with no need for credibility, because it merely is what it is. The histories of architecture and art tell things in a believable, perfectly connected manner, without the fits and starts of personal biography - when this appears we find ourselves in a different sort of situation.