209 resultados para Gâteaux-Smoothness
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INTRODUCTION: Motion metrics have become an important source of information when addressing the assessment of surgical expertise. However, their direct relationship with the different surgical skills has not been fully explored. The purpose of this study is to investigate the relevance of motion-related metrics in the evaluation processes of basic psychomotor laparoscopic skills, as well as their correlation with the different abilities sought to measure. METHODS: A framework for task definition and metric analysis is proposed. An explorative survey was first conducted with a board of experts to identify metrics to assess basic psychomotor skills. Based on the output of that survey, three novel tasks for surgical assessment were designed. Face and construct validation study was performed, with focus on motion-related metrics. Tasks were performed by 42 participants (16 novices, 22 residents and 4 experts). Movements of the laparoscopic instruments were registered with the TrEndo tracking system and analyzed. RESULTS: Time, path length and depth showed construct validity for all three tasks. Motion smoothness and idle time also showed validity for tasks involving bi-manual coordination and tasks requiring a more tactical approach respectively. Additionally, motion smoothness and average speed showed a high internal consistency, proving them to be the most task-independent of all the metrics analyzed. CONCLUSION: Motion metrics are complementary and valid for assessing basic psychomotor skills, and their relevance depends on the skill being evaluated. A larger clinical implementation, combined with quality performance information, will give more insight on the relevance of the results shown in this study.
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INTRODUCTION: Objective assessment of motor skills has become an important challenge in minimally invasive surgery (MIS) training.Currently, there is no gold standard defining and determining the residents' surgical competence.To aid in the decision process, we analyze the validity of a supervised classifier to determine the degree of MIS competence based on assessment of psychomotor skills METHODOLOGY: The ANFIS is trained to classify performance in a box trainer peg transfer task performed by two groups (expert/non expert). There were 42 participants included in the study: the non-expert group consisted of 16 medical students and 8 residents (< 10 MIS procedures performed), whereas the expert group consisted of 14 residents (> 10 MIS procedures performed) and 4 experienced surgeons. Instrument movements were captured by means of the Endoscopic Video Analysis (EVA) tracking system. Nine motion analysis parameters (MAPs) were analyzed, including time, path length, depth, average speed, average acceleration, economy of area, economy of volume, idle time and motion smoothness. Data reduction was performed by means of principal component analysis, and then used to train the ANFIS net. Performance was measured by leave one out cross validation. RESULTS: The ANFIS presented an accuracy of 80.95%, where 13 experts and 21 non-experts were correctly classified. Total root mean square error was 0.88, while the area under the classifiers' ROC curve (AUC) was measured at 0.81. DISCUSSION: We have shown the usefulness of ANFIS for classification of MIS competence in a simple box trainer exercise. The main advantage of using ANFIS resides in its continuous output, which allows fine discrimination of surgical competence. There are, however, challenges that must be taken into account when considering use of ANFIS (e.g. training time, architecture modeling). Despite this, we have shown discriminative power of ANFIS for a low-difficulty box trainer task, regardless of the individual significances between MAPs. Future studies are required to confirm the findings, inclusion of new tasks, conditions and sample population.
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In solid mechanics the weak formulation produces an integral equation ready for a discretization and with less restrictive requiremets than the standard field equations. Fundamentally the weak formulation is a expresion of a green formula. An alternative is to choose another green formula materializing a reciprocity relationship between the basis unknowns and an auxiliary family of functions. The degree of smoothness requiered to practice the discretization is then translated to the auxiliar functions. The subsequent discretization (constant, linear etc.)produces a set of equations on the boundary of the domain. For linear 3-D problems the BIEM appears then as a powerful alternative to FEM, because of the reduction to 2-D thanks to the features previously described.
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In recent years, remote sensing imaging systems for the measurement of oceanic sea states have attracted renovated attention. Imaging technology is economical, non-invasive and enables a better understanding of the space-time dynamics of ocean waves over an area rather than at selected point locations of previous monitoring methods (buoys, wave gauges, etc.). We present recent progress in space-time measurement of ocean waves using stereo vision systems on offshore platforms, which focus on sea states with wavelengths in the range of 0.01 m to 1 m. Both traditional disparity-based systems and modern elevation-based ones are presented in a variational optimization framework: the main idea is to pose the stereoscopic reconstruction problem of the surface of the ocean in a variational setting and design an energy functional whose minimizer is the desired temporal sequence of wave heights. The functional combines photometric observations as well as spatial and temporal smoothness priors. Disparity methods estimate the disparity between images as an intermediate step toward retrieving the depth of the waves with respect to the cameras, whereas elevation methods estimate the ocean surface displacements directly in 3-D space. Both techniques are used to measure ocean waves from real data collected at offshore platforms in the Black Sea (Crimean Peninsula, Ukraine) and the Northern Adriatic Sea (Venice coast, Italy). Then, the statistical and spectral properties of the resulting observed waves are analyzed. We show the advantages and disadvantages of the presented stereo vision systems and discuss future lines of research to improve their performance in critical issues such as the robustness of the camera calibration in spite of undesired variations of the camera parameters or the processing time that it takes to retrieve ocean wave measurements from the stereo videos, which are very large datasets that need to be processed efficiently to be of practical usage. Multiresolution and short-time approaches would improve efficiency and scalability of the techniques so that wave displacements are obtained in feasible times.
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Remote sensing imaging systems for the measurement of oceanic sea states have recently attracted renovated attention. Imaging technology is economical, non-invasive and enables a better understanding of the space-time dynamics of ocean waves over an area rather than at selected point locations of previous monitoring methods (buoys, wave gauges, etc.). We present recent progress in space-time measurement of ocean waves using stereo vision systems on offshore platforms. Both traditional disparity-based systems and modern elevation-based ones are presented in a variational optimization framework: the main idea is to pose the stereoscopic reconstruction problem of the surface of the ocean in a variational setting and design an energy functional whose minimizer is the desired temporal sequence of wave heights. The functional combines photometric observations as well as spatial and temporal smoothness priors. Disparity methods estimate the disparity between images as an intermediate step toward retrieving the depth of the waves with respect to the cameras, whereas elevation methods estimate the ocean surface displacements directly in 3-D space. Both techniques are used to measure ocean waves from real data collected at offshore platforms in the Black Sea (Crimean Peninsula, Ukraine) and the Northern Adriatic Sea (Venice coast, Italy). Then, the statistical and spectral properties of the resulting observed waves are analyzed. We show the advantages and disadvantages of the presented stereo vision systems and discuss the improvement of their performance in critical issues such as the robustness of the camera calibration in spite of undesired variations of the camera parameters.
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In this paper we present an innovative technique to tackle the problem of automatic road sign detection and tracking using an on-board stereo camera. It involves a continuous 3D analysis of the road sign during the whole tracking process. Firstly, a color and appearance based model is applied to generate road sign candidates in both stereo images. A sparse disparity map between the left and right images is then created for each candidate by using contour-based and SURF-based matching in the far and short range, respectively. Once the map has been computed, the correspondences are back-projected to generate a cloud of 3D points, and the best-fit plane is computed through RANSAC, ensuring robustness to outliers. Temporal consistency is enforced by means of a Kalman filter, which exploits the intrinsic smoothness of the 3D camera motion in traffic environments. Additionally, the estimation of the plane allows to correct deformations due to perspective, thus easing further sign classification.
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Three-dimensional kinematic analysis provides quantitative assessment of upper limb motion and is used as an outcome measure to evaluate movement disorders. The aim of the present study is to present a set of kinematic metrics for quantifying characteristics of movement performance and the functional status of the subject during the execution of the activity of daily living (ADL) of drinking from a glass. Then, the objective is to apply these metrics in healthy people and a population with cervical spinal cord injury (SCI), and to analyze the metrics ability to discriminate between healthy and pathologic people. 19 people participated in the study: 7 subjects with metameric level C6 tetraplegia, 4 subjects with metameric level C7 tetraplegia and 8 healthy subjects. The movement was recorded with a photogrammetry system. The ADL of drinking was divided into a series of clearly identifiable phases to facilitate analysis. Metrics describing the time of the reaching phase, the range of motion of the joints analyzed, and characteristics of movement performance such as the efficiency, accuracy and smoothness of the distal segment and inter-joint coordination were obtained. The performance of the drinking task was more variable in people with SCI compared to the control group in relation to the metrics measured. Reaching time was longer in SCI groups. The proposed metrics showed capability to discriminate between healthy and pathologic people. Relative deficits in efficiency were larger in SCI people than in controls. These metrics can provide useful information in a clinical setting about the quality of the movement performed by healthy and SCI people during functional activities.
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La iluminación con diodos emisores de luz (LED) está reemplazando cada vez en mayor medida a las fuentes de luz tradicionales. La iluminación LED ofrece ventajas en eficiencia, consumo de energía, diseño, tamaño y calidad de la luz. Durante más de 50 años, los investigadores han estado trabajando en mejoras LED. Su principal relevancia para la iluminación está aumentando rápidamente. Esta tesis se centra en un campo de aplicación importante, como son los focos. Se utilizan para enfocar la luz en áreas definidas, en objetos sobresalientes en condiciones profesionales. Esta iluminación de alto rendimiento requiere una calidad de luz definida, que incluya temperaturas ajustables de color correlacionadas (CCT), de alto índice de reproducción cromática (CRI), altas eficiencias, y colores vivos y brillantes. En el paquete LED varios chips de diferentes colores (rojo, azul, fósforo convertido) se combinan para cumplir con la distribución de energía espectral con alto CRI. Para colimar la luz en los puntos concretos deseados con un ángulo de emisión determinado, se utilizan blancos sintonizables y diversos colores de luz y ópticas secundarias. La combinación de una fuente LED de varios colores con elementos ópticos puede causar falta de homogeneidad cromática en la distribución espacial y angular de la luz, que debe resolverse en el diseño óptico. Sin embargo, no hay necesidad de uniformidad perfecta en el punto de luz debido al umbral en la percepción visual del ojo humano. Por lo tanto, se requiere una descripción matemática del nivel de uniformidad del color con respecto a la percepción visual. Esta tesis está organizada en siete capítulos. Después de un capítulo inicial que presenta la motivación que ha guiado la investigación de esta tesis, en el capítulo 2 se presentan los fundamentos científicos de la uniformidad del color en luces concentradas, como son: el espacio de color aplicado CIELAB, la percepción visual del color, los fundamentos de diseño de focos respecto a los motores de luz y ópticas no formadoras de imágenes, y los últimos avances en la evaluación de la uniformidad del color en el campo de los focos. El capítulo 3 desarrolla diferentes métodos para la descripción matemática de la distribución espacial del color en un área definida, como son la diferencia de color máxima, la desviación media del color, el gradiente de la distribución espacial de color, así como la suavidad radial y axial. Cada función se refiere a los diferentes factores que influyen en la visión, los cuales necesitan un tratamiento distinto que el de los datos que se tendrán en cuenta, además de funciones de ponderación que pre- y post-procesan los datos simulados o medidos para la reducción del ruido, la luminancia de corte, la aplicación de la ponderación de luminancia, la función de sensibilidad de contraste, y la función de distribución acumulativa. En el capítulo 4, se obtiene la función de mérito Usl para la estimación de la uniformidad del color percibida en focos. Se basó en los resultados de dos conjuntos de experimentos con factor humano realizados para evaluar la percepción visual de los sujetos de los patrones de focos típicos. El primer experimento con factor humano dio lugar al orden de importancia percibida de los focos. El orden de rango percibido se utilizó para correlacionar las descripciones matemáticas de las funciones básicas y la función ponderada sobre la distribución espacial del color, que condujo a la función Usl. El segundo experimento con factor humano probó la percepción de los focos bajo condiciones ambientales diversas, con el objetivo de proporcionar una escala absoluta para Usl, para poder así sustituir la opinión subjetiva personal de los individuos por una función de mérito estandarizada. La validación de la función Usl se presenta en relación con el alcance de la aplicación y condiciones, así como las limitaciones y restricciones que se realizan en el capítulo 5. Se compararon los datos medidos y simulados de varios sistemas ópticos. Se discuten los campos de aplicación , así como validaciones y restricciones de la función. El capítulo 6 presenta el diseño del sistema de focos y su optimización. Una evaluación muestra el análisis de sistemas basados en el reflector y la lente TIR. Los sistemas ópticos simulados se comparan en la uniformidad del color Usl, sensibilidad a las sombras coloreadas, eficiencia e intensidad luminosa máxima. Se ha comprobado que no hay un sistema único que obtenga los mejores resultados en todas las categorías, y que una excelente uniformidad de color se pudo alcanzar por la conjunción de dos sistemas diferentes. Finalmente, el capítulo 7 presenta el resumen de esta tesis y la perspectiva para investigar otros aspectos. ABSTRACT Illumination with light-emitting diodes (LED) is more and more replacing traditional light sources. They provide advantages in efficiency, energy consumption, design, size and light quality. For more than 50 years, researchers have been working on LED improvements. Their main relevance for illumination is rapidly increasing. This thesis is focused on one important field of application which are spotlights. They are used to focus light on defined areas, outstanding objects in professional conditions. This high performance illumination required a defined light quality including tunable correlated color temperatures (CCT), high color rendering index (CRI), high efficiencies and bright, vivid colors. Several differently colored chips (red, blue, phosphor converted) in the LED package are combined to meet spectral power distribution with high CRI, tunable white and several light colors and secondary optics are used to collimate the light into the desired narrow spots with defined angle of emission. The combination of multi-color LED source and optical elements may cause chromatic inhomogeneities in spatial and angular light distribution which needs to solved at the optical design. However, there is no need for perfect uniformity in the spot light due to threshold in visual perception of human eye. Therefore, a mathematical description of color uniformity level with regard to visual perception is required. This thesis is organized seven seven chapters. After an initial one presenting the motivation that has guided the research of this thesis, Chapter 2 introduces the scientific basics of color uniformity in spot lights including: the applied color space CIELAB, the visual color perception, the spotlight design fundamentals with regards to light engines and nonimaging optics, and the state of the art for the evaluation of color uniformity in the far field of spotlights. Chapter 3 develops different methods for mathematical description of spatial color distribution in a defined area, which are the maximum color difference, the average color deviation, the gradient of spatial color distribution as well as the radial and axial smoothness. Each function refers to different visual influencing factors, and they need different handling of data be taken into account, along with weighting functions which pre- and post-process the simulated or measured data for noise reduction, luminance cutoff, the implementation of luminance weighting, contrast sensitivity function, and cumulative distribution function. In chapter 4, the merit function Usl for the estimation of the perceived color uniformity in spotlights is derived. It was based on the results of two sets of human factor experiments performed to evaluate the visual perception of typical spotlight patterns by subjects. The first human factor experiment resulted in the perceived rank order of the spotlights. The perceived rank order was used to correlate the mathematical descriptions of basic functions and weighted function concerning the spatial color distribution, which lead to the Usl function. The second human factor experiment tested the perception of spotlights under varied environmental conditions, with to objective to provide an absolute scale for Usl, so the subjective personal opinion of individuals could be replaced by a standardized merit function. The validation of the Usl function is presented concerning the application range and conditions as well as limitations and restrictions in carried out in chapter 5. Measured and simulated data of various optical several systems were compared. Fields of applications are discussed as well as validations and restrictions of the function. Chapter 6 presents spotlight system design and their optimization. An evaluation shows the analysis of reflector-based and TIR lens systems. The simulated optical systems are compared in color uniformity Usl , sensitivity to colored shadows, efficiency, and peak luminous intensity. It has been found that no single system which performed best in all categories, and that excellent color uniformity could be reached by two different system assemblies. Finally, chapter 7 summarizes the conclusions of the present thesis and an outlook for further investigation topics.
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Según Heidegger, la esencia de la arquitectura, de la construcción, descansa en un no espacio: en la materia con que se construyen las fronteras que otorgan espacios, irradiando sobre ellos aquello que los caracteriza. Si hay alguna materia, de las utilizadas por la arquitectura a lo largo de su historia para construir fronteras, que haya mantenido una especial relación con la luz y la visión, dando un carácter inconfundible a los espacios aviados por ellas, esta es el vidrio; algunas de las etimologías de su nombre: zakû (ser claro), hyalos (diáfano) o vitrum (ver), así lo evidencian. Posiblemente, sea la pregnancia de este modo fascinante de relacionarse con la luz, la que ha hecho del vidrio, a lo largo del tiempo que lleva siendo usado en arquitectura, y aún antes, el material que ha provocado en el imaginario humano la ilusión de ser aquel en que, en último término, podrían llegar a sublimarse todos los demás, dando lugar con ello a lo que en la tesis hemos denominado el sueño de la arquitectura de cristal. Siendo la luz, siempre, energía, consideraremos en la tesis luz-energía, a aquella que ilumina y calienta; es una luz científica y mesurable. Cuando la luz se “hace visible”, desvelando un mensaje “contenido” en el vidrio, hablaremos de luz-información. Esta luz, no puede medirse científicamente. La luz-energía y la luz-información, se manifiestan al conjuro de la arquitectura de vidrio. Es la segunda la que ha conformado las fronteras de vidrio enmascarado, y la que se estudia con más detenimiento en la tesis. Los distintos modos de usar en arquitectura la infinita combinatoria de las propiedades de absortancia, reflectancia, transmitancia y translucencia del vidrio, ha condicionado al hombre en su manera de “ver” el mundo. Unas veces, “inmerso” en él, puesto que solo lo separa del mismo, una frontera transparente, y “deseadamente” invisible: ese modo de usar el vidrio, ha sido el sueño imposible de una parte importante de la arquitectura del siglo XX. Otras veces, para “aislarse” de él, el hombre ha manipulado la luz y el vidrio para construir mundos diferentes. Las fronteras de vidrio enmascarado de color, mosaicos, vidrieras, pantallas y lo que hemos llamado vidrios complejos (con un cometido similar al que Schiller atribuía al coro en la tragedia griega, aislar a esta del “mundo real”, para mantener su libertad poética), son las fronteras que han construido el sueño posible de la arquitectura de cristal. Ambas actitudes, en distintos momentos de la historia de la arquitectura, han sido dos formas de querer materializar un mismo sueño. La capacidad del vidrio para adaptarse a tantos modos de presentarse ante nosotros, y a poder ser interpretado de tantas formas diferentes, es la que ha servido para dar título a la tesis, pues hasta en su faceta más transparente, el vidrio, de una forma o de otra, se ha mostrado siempre como un material enmascarado en el más amplio sentido de la palabra: se enmascara, incluso cuando apela a la transparencia o se convierte en espejo, para hacernos caer en la ilusión de que no está presente. Cuando el hombre construyó fronteras de vidrio e incluso antes, cuando soñó que con él podría llegar a construirlas, condensó en ellas toda la mítica, la mística y la epistemología en torno a la luz y la visión, dando lugar a una serie de arquetipos arquitectónicos. En la iglesia bizantina, la luz sobre, o la luz desde, los mosaicos, construyó una frontera titilante; y en la catedral gótica, la luz a través de las vidrieras construyó una frontera radiante; en ambos casos con el fin de alcanzar anagógicamente lo Inteligible. En el siglo XIX, con el descubrimiento de la electricidad y su incorporación a la arquitectura, las fronteras se vuelven fulgurantes, aviando, en este caso, el espacio urbano. Poco antes, en este mismo siglo, el espíritu del gótico tiene un efímero resurgir del que se nutrirá, a comienzos del siglo XX, el expresionismo cristalino, en el que la luz anagógica se hace laica. El espacio urbano fulgurante prefigurado por este movimiento y presente en las ciudades desde principios del siglo XX, fue potenciado a mediados de ese siglo con la aparición de las pantallas, extendiéndose desde entonces, imparable, por todo el planeta. La reciente emergencia de los vidrios complejos, ha abierto la posibilidad de construir fronteras a la carta (de vidrios de propiedades múltiples, seleccionadas de forma voluntaria y variable en cada momento). En principio, se pensó que, el uso de estos vidrios como cerramiento, podría llegar a constituirse como la panacea de los problemas del material relacionados con la luz-energía, sin necesidad de recurrir a “prótesis”, y manteniendo por tanto la seductora tersura de la fachada; aunque parece que, por ahora, esa posibilidad es, cuando menos, lejana. Sin embargo, en el campo de las megapantallas urbanas (y ,en general, en el de las pantallas de información), ubicuas actualmente en nuestras vidas, los vidrios complejos ayudan a construir los espesos velos de ilusión, que según Lefebvre sirven para mantener el capitalismo, siendo el último estadio de un desarrollo tecnológico, impuesto por el principio de economía del hombre, que como un metrónomo inexorable, y a modo de contrapunto, ha acompañado siempre (de nuevo en palabras de Lefebvre), a la necesidad del gasto, del juego, de la lucha, del arte, de la fiesta. La tecnología y el arte forman parte de la cultura producida por la sociedad y como señala Lévi-Strauss, esa cultura imprime orden; por el contrario, la sociedad, entendida como el conjunto de relaciones que los hombres mantienen entre sí, produce desorden. Del equilibrio entre esos extremos, surge el progreso, incluido el de la arquitectura. Las fronteras de vidrio que analizamos en la tesis –que avían espacios para la espiritualidad, el fasto y el espectáculo o, desde otro punto de vista, para las distintas manifestaciones del poder: la iglesia, la monarquía, el estado o el mercado– también han surgido de esa concomitancia entre el desorden y el orden; y forma parte de ese desorden, la aventura que ha impulsado al genio individual de místicos, alquimistas, geómetras, abades, reyes, inventores, poetas y arquitectos, a explorar, como escribe Apollinaire, vastos y extraños territorios donde el misterio en flor, se ofrece a quien quiera cogerlo, hogueras nuevas de colores nunca vistos, mil fantasmas imponderables a los que dar cuerpo. ABSTRACT According to Heidegger, the essence of architecture, building, lies in a non-space: the material that creates the boundaries from which something begins its presencing, radiating onto them that which characterizes them. If there is any single material amongst all those used throughout the history of architecture to build boundaries which has maintained a special relationship with light and vision, which has bestowed a distinctive character on spaces avid for them, it is glass. This is evidenced in some of its etymologies: zakû (to be clear), hyalos (transparent), vitrum (see). The rich potential of this fascinating way of relating to light in the history of the architectural use of glass, and even before, is possibly what has triggered the illusion in human imagination of being something that can ultimately sublimate all others, giving rise to what in this thesis we call The Dream of Crystal Architecture. Given that light is always energy, in this thesis we consider energy-light to be that which illuminates and warms. This is scientific, measurable light. When light "becomes visible" and reveals a message “contained” in glass, we speak of information-light. This light cannot be measured scientifically. Energy-light and information-light are manifested under the spell of glass architecture. The latter is what has shaped the boundaries of coloured glass, which is studied in this thesis. Architecture's different ways of using the infinite combinations of the absorptance, reflectance, transmittance and translucency of glass has affected the way we humans "see" the world. Sometimes we are "immersed" in it, since only an invisible, transparent boundary separates us from it: this use of glass has characterized a considerable part of 20th century architecture. In other cases, in order to "isolate" us from it, we have manipulated light and glass to build different worlds: the boundaries of glass "masked" by colour, mosaics, stained glass, screens and what we have called complex glazing, which plays a similar role to what Schiller attributed to the chorus in Greek tragedy, isolating it from the "real world" in order to maintain its poetic license. These are the boundaries that have built the viable dream of crystal architecture. These two approaches have been different ways of making same dream come true at different times in the history of architecture. The ability of glass to adapt to so many forms of manifestation, and interpretation, is what has given rise to the title of the thesis. Even in its most transparent facet, glass has one way or another always been a masking material in the broadest sense of the word: it is masked even when it invites transparency or becomes a mirror, triggering the illusion that it is not present. When man began to build glass boundaries, and even before, when he dreamed that he could build them, he condensed in them all the mythology, mysticism and epistemology concerning light and vision, which gave rise to a series of architectural archetypes. In the Byzantine church, light on or from mosaics created tenuous boundaries. In Gothic cathedrals, the light through the stained glass windows constructed radiant boundaries. In both cases the aim was to achieve, in an anagogical way, the Intelligible. In the 19th, the discovery of electricity and its use in architecture led to the production of dazzling boundaries, in this case employed in urban spaces. Earlier in the same century, the Gothic spirit had a short-lived revival, which in the early 20th century drew from crystalline expressionism in which anagogic light became secular. The dazzling urban space prefigured by this movement, present in cities since the early 20th century, was intensified in the mid-century with the emergence of screens, and since then it has spread unstoppably across the world. The recent emergence of complex glasses has made it possible to build boundaries on demand in glass with multiple properties, chosen at will and at whim at any time. Initially it was thought that the use of this glass as a wall could eventually become the panacea for the material problems related to energy-light, without needing to resort to "prosthesis" and thereby maintain the seductive smoothness of the facade. For now, that possibility seems remote, to say the least. In the realm of urban megascreens and information screens in general, now ubiquitous in our lives, complex glasses help to build the thick veils of illusion which, according to Lefebvre, serve to maintain capitalism. Like an inexorable metronome, in counterpoint, this ultimate state of technological development imposed by man's principle of economy has in fact always accompanied (again in the words of Lefebvre), the need to spend, play, fight, art, and party. Technology and art are part of the culture produced by society. As Levi-Strauss says, this culture imposes order. On the contrary, society, understood as a set of relationships amongst people, produces disorder. Progress, including that of architecture, arises from the balance between these two extremes. The glass boundaries analyzed in this thesis, which propitiate spaces for spirituality, pomp and spectacle or, from a different perspective, for the various manifestations of power: the church, the monarchy, the state and the market, have also emerged from the concomitance of order and disorder. One aspect of this disorder is the adventure that has inspired the individual genius of mystics, alchemists, surveyors, abbots, kings, inventors, poets and architects to explore, as Apollinaire says, vast, strange domains where flowering mystery offers itself to whoever wishes to pluck it, new fires, colours you have never seen before, a thousand intangible phantasms still awaiting reality.
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We extend an earlier model of protein evolution on a rugged landscape to the case in which the landscape exhibits a variable degree of correlation (i.e., smoothness). Correlation is introduced by assuming that a protein is composed of a set of independent blocks or domains and that mutation in one block affects the contribution of that block alone to the overall fitness of the protein. We study the statistical structure of such landscapes and apply our theory to the evolution by somatic hypermutation of antibody molecules composed of framework and complementarity-determining regions. We predict the expected number of replacement mutations in each region.
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We work with Besov spaces Bp,q0,b defined by means of differences, with zero classical smoothness and logarithmic smoothness with exponent b. We characterize Bp,q0,b by means of Fourier-analytical decompositions, wavelets and semi-groups. We also compare those results with the well-known characterizations for classical Besov spaces Bp,qs.
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Reconocido como una de las figuras clave en la difusión de la inoculación contra la viruela en España, el médico de origen irlandés Timoteo O'Scanlan dejó publicadas 3 obras y numerosos artículos de prensa en los que plasmó su pericia e interés por una práctica que se inició de forma tardía en nuestro país. Aceptado como miembro de la Real Academia Médica de Madrid en noviembre de 1778, leyó su discurso de ingreso en abril de 1779. El texto, que constituye la primera aproximación de O'Scanlan a la inoculación, que venía practicando con éxito desde 1771, fue incluido con algunas modificaciones y sin citar la fecha de redacción en la introducción de su primera obra, Práctica moderna de la inoculación (1784). El manuscrito se encuentra en el Archivo del Conde de Campomanes (Fundación Universitaria Española, Madrid).
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This paper deals with the estimation of a time-invariant channel spectrum from its own nonuniform samples, assuming there is a bound on the channel’s delay spread. Except for this last assumption, this is the basic estimation problem in systems providing channel spectral samples. However, as shown in the paper, the delay spread bound leads us to view the spectrum as a band-limited signal, rather than the Fourier transform of a tapped delay line (TDL). Using this alternative model, a linear estimator is presented that approximately minimizes the expected root-mean-square (RMS) error for a deterministic channel. Its main advantage over the TDL is that it takes into account the spectrum’s smoothness (time width), thus providing a performance improvement. The proposed estimator is compared numerically with the maximum likelihood (ML) estimator based on a TDL model in pilot-assisted channel estimation (PACE) for OFDM.
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In this experiment, we examined the extent to which the spatiotemporal reorganization of muscle synergies mediates skill acquisition on a two degree-of-freedom (df) target-acquisition task. Eight participants completed five practice sessions on consecutive days. During each session they practiced movements to eight target positions presented by a visual display. The movements required combinations of flexion/extension and pronation/supination of the elbow joint complex. During practice sessions, eight targets displaced 5.4 cm from the start position ( representing joint excursions of 54) were presented 16 times. During pre- and posttests, participants acquired the targets at two distances (3.6 cm [36 degrees] and 7.2 cm [72 degrees]). EMG data were recorded from eight muscles contributing to the movements during the pre- and posttests. Most targets were acquired more rapidly after the practice period. Performance improvements were, in most target directions, accompanied by increases in the smoothness of the movement trajectories. When target acquisition required movement in both dfs, there were also practice-related decreases in the extent to which the trajectories deviated from a direct path to the target. The contribution of monofunctional muscles ( those producing torque in a single df) increased with practice during movements in which they acted as agonists. The activity in bifunctional muscles ( those contributing torque in both dfs) remained at pretest levels in most movements. The results suggest that performance gains were mediated primarily by changes in the spatial organization of muscles synergies. These changes were expressed most prominently in terms of the magnitude of activation of the monofunctional muscles.
Resumo:
We discuss the construction of a photometric redshift catalogue of luminous red galaxies (LRGs) from the Sloan Digital Sky Survey (SDSS), emphasizing the principal steps necessary for constructing such a catalogue: (i) photometrically selecting the sample, (ii) measuring photometric redshifts and their error distributions, and (iii) estimating the true redshift distribution. We compare two photometric redshift algorithms for these data and find that they give comparable results. Calibrating against the SDSS and SDSS-2dF (Two Degree Field) spectroscopic surveys, we find that the photometric redshift accuracy is sigma similar to 0.03 for redshifts less than 0.55 and worsens at higher redshift (similar to 0.06 for z < 0.7). These errors are caused by photometric scatter, as well as systematic errors in the templates, filter curves and photometric zero-points. We also parametrize the photometric redshift error distribution with a sum of Gaussians and use this model to deconvolve the errors from the measured photometric redshift distribution to estimate the true redshift distribution. We pay special attention to the stability of this deconvolution, regularizing the method with a prior on the smoothness of the true redshift distribution. The methods that we develop are applicable to general photometric redshift surveys.