555 resultados para horne-zeilinger entanglement


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OBJETIVO: Investigar a tipologia circadiana e as diferenças de gênero em universitários do sul do Brasil. MÉTODOS: Voluntários (736) de 17 a 49 anos preencheram a versão brasileira do Questionário de Cronotipo (QC), tradução do Morningness-eveningness Questionnaire (MEQ) de Horne e Östberg. Medidas de tendência central e dispersão e curva de distribuição dos escores do QC (Kolmogorov-Smirnov) foram calculadas de acordo com gênero (teste t de Student), idade, estação de nascimento e desconforto com o horário de verão (qui-quadrado). RESULTADOS: Foram incluídos 648 indivíduos (36% homens, 64% mulheres), com perdas de 12% por questionários incorretos. A distribuição dos escores do QC evidenciou uma curva normal (amplitude = 18-77; média = 46,6; desvio-padrão = 10,8). Nesta amostra, 32% foram vespertinos, 54% intermediários e 14% matutinos. As médias do QC foram significativamente diferentes (p = 0,003): homens (44,9 ± 10,8) comparados com mulheres (47,5 ± 10,7) e 70% dos que nasceram na primavera e no verão foram vespertinos (p = 0,015), sem associação gênero-estação do ano. CONCLUSÃO: Homens e nascidos na primavera-verão evidenciaram preferência pela vespertinidade, não havendo diferença de gênero com relação à estação de nascimento. Nossos resultados estão de acordo com estudos realizados no hemisfério norte que mostraram, também, uma associação entre a estação de nascimento e o cronotipo.

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Supplemental data for this article can be accessed at http://dx.doi.org/10.1080/07900627.2015.1070091. It includes an easy-to-use spreadsheet that calculates the efficiencies used in this paper, that is Sefficiency with energy considerations.

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Dissertação de mestrado em Ecologia

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Considérations méthodologiques Nous avons limité aux précisions indispensables à la compréhension de notre propos les considérations sur la gigantomachie en général. Nous renvoyons aux études signalées plus haut (supra, p. 7, n. 2), principalement pour ce qui concerne les géants avant leur transformation en anguipèdes à partir de l'époque hellénistique. Notre recherche de parallèles reposera sur quelques oeuvres d'art encore existantes : les sculptures décorant les plus importantes d'entre elles feront dès lors figure d'archétype, même si, bien sûr, rien ne permet d'exclure qu'il en ait existé de plus significatives. Parmi les nombreux monuments aujourd'hui disparus, respectivement parmi ceux qui seraient encore à découvrir, il s'en trouvait sans doute qui auraient été susceptibles de servir de modèle pour les sculptures ornant le fanum de Lousonna, duquel bien peu de restes nous sont parvenus. A l'exception de quelques renvois ponctuels, notre démarche s'est appuyée exclusivement sur du matériel et des informations déjà publiés. Pour la reconstitution des bas-reliefs de Lousonna, nous nous sommes inspiré généralement de sculptures hellénistiques et romaines dont l'ornementation présentait des similitudes avec les fragments à notre disposition ; la plupart des parallèles sont mentionnés dans le Lexicon Iconographicum Mythologiae Classicae. L'examen des volumes du Corpus Signorum Imperii Romani et de quelques autres recueils nous a permis de faire des propositions pour les cas restés en suspens. A une exception près, l'échantillonnage aéré formé à partir d'ensembles sculptés qui devaient avoir les mêmes caractéristiques que le matériel que nous tenterons d'identifier : ils comportaient des monstres anguipèdes avec les jambes se terminant par la tête du serpent, remontant au plus tard à la fin de la période romaine et produits dans un atelier gréco-romain. Afin de recréer avec le plus de vraisemblance possible l'environnement du fanum de Lousonna, nous avons recherché des édifices de caractéristiques semblables dans les catalogues de temples gallo-romains dressés par P. D. HORNE et A. C. KING (1980), respectivement I. FAUDUET et P. ARCELIN (1993). Tant l'absence presque complète de restes architecturaux susceptibles d'être rapportés à l'édifice religieux que la nature somme toute modeste du vicus lémanique nous ont fait opter pour une variante minimaliste, se limitant finalement à la structure supportant la gigantomachie devant un temple sans aucune décoration. Pour tenter de préciser les modalités de la transmission du thème des géants, nous envisagerons trois cheminements possibles : la tradition orale, la transmission littéraire et, enfin, la représentation iconographique, qu'il s'agisse de monuments, d'objets mobiliers ou même des quelques rares illustrations de textes antiques. Sauf indication contraire, les textes anciens sont cités dans les traductions des Belles-Lettres, des Sources chrétiennes ou de la Loeb Classical Library dont la liste figure à la page 161. La version française des textes dont aucune traduction n'était disponible est généralement due à François Mottas (traduction F.M.). Nous ne reportons les dates de naissance des auteurs ou des artistes mentionnés que lorsqu'elles sont utiles à la compréhension de notre exposé. En plus du rôle qu'ont pu jouer les oeuvres d'art disparues au cours des deux derniers millénaires, divers facteurs ont dû assurer la constitution et la mise au point d'un imaginaire de plus en plus élaboré des gigantomachies. La mémoire a certes sa part dans l'inspiration des artistes qui réalisèrent les sculptures de la cité lémanique; mais si un mythe ou le récit d'un événement peuvent s'être transmis de bouche à oreille au cours des siècles, certaines ressemblances dans l'attitude des personnages sont trop frappantes, même en tenant compte de ces gestes qu'il n'existe qu'une seule façon de représenter: il n'est dès lors pas possible d'imaginer que la transmission des détails des scènes se serait pratiquée uniquement par voie orale. Si le voyage touristique; tel que nous l'entendons de nos jours, n'a pas existé, les personnes susceptibles d'avoir ramené des informations de leurs déplacements à travers l'Empire sont plus nombreuses qu'on ne le croirait au premier abord. Fonctionnaires allant prendre leur charge ou en mission dans une contrée voisine; soldats, parmi lesquels des mercenaires gaulois; pèlerins ayant visité de grands sanctuaires, comme celui d'Esculape à Pergame, emplacement de la gigantomachie la plus impressionnante, ou d'autres lieux de culte; jeunes fortunés ayant étudié à Athènes; commerçants accompagnés par des muletiers ou des portefaix acheminant leurs marchandises; membres de corporations ou artisans exerçant des métiers itinérants; esclaves, dont l'exportation devait représenter une source de revenus intéressante pour les commerçants romains; en dernier lieu, sans parler des artistes eux-mêmes, ces arpenteurs-géomètres chargés de toutes sortes de relevés qui accompagnaient les empereurs lors de leurs déplacements (infra, p. 36). Il faudra cependant rester prudent quant à l'affirmation d'une connaissance visuelle directe que les sculpteurs de Lousonna auraient eue des réalisations antiques avec lesquelles nous mettrons la gigantomachie en parallèle. Même si elle n'a toujours pas pu être prouvée, la circulation de cahiers de modèles semble bel et bien assurée: dans un atelier, les maîtres ont forcément passé leurs croquis à leurs successeurs et ceci s'est peut-être répété pour plusieurs générations d'artisans. Sans parler des monnaies, d'autres moyens de transmission peuvent encore être mentionnés : éventuelles éditions illustrées de textes antiques, motifs gravés sur des gemmes ou représentés sur des récipients décorés... Une observation s'impose ici : la plupart des monuments que nous utiliserons pour notre reconstitution existaient encore lors de l'érection de notre gigantomachie. Une fois les bas-reliefs de Lousonna reconstitués, restait donc à combler l'absence de toute étude sur la survie de la gigantomachie à travers les âges et à préciser l'emploi qui en serait fait à la Renaissance. Divers recueils d'ouvrages consacrés à la mythologie et remontant à cette période nous ont permis de décrire les modalités de la reprise du récit de la guerre des géants; en l'absence de toute synthèse sur ceux-ci dans la peinture de la Renaissance, c'est en partant de l'examen des nombreux travaux consacrés au Palazzo del Te à Mantoue que nous avons pu établir un lien entre les représentations de géants peintes durant la première moitié du 16ème siècle, au cours duquel la gigantomachie était redevenue un sujet d'actualité. Le monument de la bourgade lémanique comporte encore neuf personnages et constitue, avec celui d'Yzeures-sur-Creuse, l'exemplaire le plus complet découvert dans la partie occidentale de l'Empire romain : il méritait bien d'être à l'origine d'une telle démarche.

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Per a determinar la dinàmica espai-temporal completa d’un sistema quàntic tridimensional de N partícules cal integrar l’equació d’Schrödinger en 3N dimensions. La capacitat dels ordinadors actuals permet fer-ho com a molt en 3 dimensions. Amb l’objectiu de disminuir el temps de càlcul necessari per a integrar l’equació d’Schrödinger multidimensional, es realitzen usualment una sèrie d’aproximacions, com l’aproximació de Born–Oppenheimer o la de camp mig. En general, el preu que es paga en realitzar aquestes aproximacions és la pèrdua de les correlacions quàntiques (o entrellaçament). Per tant, és necessari desenvolupar mètodes numèrics que permetin integrar i estudiar la dinàmica de sistemes mesoscòpics (sistemes d’entre tres i unes deu partícules) i en els que es tinguin en compte, encara que sigui de forma aproximada, les correlacions quàntiques entre partícules. Recentment, en el context de la propagació d’electrons per efecte túnel en materials semiconductors, X. Oriols ha desenvolupat un nou mètode [Phys. Rev. Lett. 98, 066803 (2007)] per al tractament de les correlacions quàntiques en sistemes mesoscòpics. Aquesta nova proposta es fonamenta en la formulació de la mecànica quàntica de de Broglie– Bohm. Així, volem fer notar que l’enfoc del problema que realitza X. Oriols i que pretenem aquí seguir no es realitza a fi de comptar amb una eina interpretativa, sinó per a obtenir una eina de càlcul numèric amb la que integrar de manera més eficient l’equació d’Schrödinger corresponent a sistemes quàntics de poques partícules. En el marc del present projecte de tesi doctoral es pretén estendre els algorismes desenvolupats per X. Oriols a sistemes quàntics constituïts tant per fermions com per bosons, i aplicar aquests algorismes a diferents sistemes quàntics mesoscòpics on les correlacions quàntiques juguen un paper important. De forma específica, els problemes a estudiar són els següents: (i) Fotoionització de l’àtom d’heli i de l’àtom de liti mitjançant un làser intens. (ii) Estudi de la relació entre la formulació de X. Oriols amb la aproximació de Born–Oppenheimer. (iii) Estudi de les correlacions quàntiques en sistemes bi- i tripartits en l’espai de configuració de les partícules mitjançant la formulació de de Broglie–Bohm.

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The 1st International Symposium on Ostracoda (ISO) was held in Naples (1963). The philosophy behind this symposium and the logical outcome of what is now known as the International Research Group on Ostracoda (IRGO) is here reviewed, namely ostracodology over the last 50 years is sociologically analysed. Three different and important historic moments for the scientific achievements of this domain are recognised. The first one, between about 1963-1983, is related to applied research for the oil industry as well as to the great interest in the better description of the marine environment by both zoologists and palaeontologists. Another important aspect during this period was the work by researchers dealing with Palaeozoic ostracods, who had their own discussion group, IRGPO. Gradually, the merger of this latter group with those dealing with post-Palaeozoic ostracods at various meetings improved communication between the two groups of specialists. A second period was approximately delineated between 1983 and 2003. During this time-slice, more emphasis was addressed to environmental research with topics such as the study of global events and long-term climate change. Ostracodologists profited also from the research "politics" within national and international programmes. Large international research teams emerged using new research methods. During the third period (2003-2013), communication and collaborative research reached a global dimension. Amongst the topics of research we cite the reconstruction of palaeoclimate using transfer functions, the building of large datasets of ostracod distributions for regional and intercontinental studies, and the implementation of actions that should lead to taxonomic harmonisation. Projects within which molecular biological techniques are routinely used, combined with sophisticated morphological information, expanded now in their importance. The documentation of the ostracod description improved through new techniques to visualise morphological details, which stimulated also communication between ostracodologists. Efforts of making available ostracod information through newsletters and electronic media are evoked.

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PURPOSE: Our study identified factors common to a variety of populations and settings that may promote or inhibit uptake and adherence to falls-related interventions. DESIGN AND METHODS: Semistructured interviews to assess perceived advantages and barriers to taking part in falls-related interventions were carried out in six European countries with 69 people aged 68 to 97 years. The sample was selected to include people with very different experiences of participation or nonparticipation in falls-related interventions, but all individuals were asked about interventions that included strength and balance training. RESULTS: Attitudes were similar in all countries and contexts. People were motivated to participate in strength and balance training by a wide range of perceived benefits (interest and enjoyment, improved health, mood, and independence) and not just reduction of falling risk. Participation also was encouraged by a personal invitation from a health practitioner and social approval from family and friends. Barriers to participation included denial of falling risk, the belief that no additional falls-prevention measures were necessary, practical barriers to attendance at groups (e.g., transport, effort, and cost), and a dislike of group activities. IMPLICATIONS: Because many older people reject the idea that they are at risk of falling, the uptake of strength and balance training programs may be promoted more effectively by maximizing and emphasizing their multiple positive benefits for health and well-being. A personal invitation from a health professional to participate is important, and it also may be helpful to provide home-based programs for those who dislike or find it difficult to attend groups.

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The stable isotope composition of ostracod fossils is useful for palaeoenvironmental reconstruction. Laboratory as well as 'natural environment' cultures demonstrate that the carbon and oxygen isotope compositions of ostracod shells faithfully record the environmental conditions at the time of valve precipitation. Oxygen isotope composition of ostracod calcite reflects the composition and temperature of the host water, but ostracod shells are enriched in 18O compared to the value expected for inorganic calcite precipitating under equilibrium under the same conditions. This 'vital effect' is generally constant for closely related species and equals 1.5 to 3 0/00 for Candoninae, 0 to 2.5 0/00 for Cyprididae and 0.8 to 1.5 0/00 for Cytheroidea. The carbon isotope composition of ostracod calcite is controlled by a complex interaction between the ecology of the species and environmental parameters. Previous natural environmental studies suggest that many (but not all) taxa crystallize their shells in or very close to equilibrium with the carbon isotope composition of dissolved inorganic carbon, and that the composition of littoral, epifaunal species reflects seasonal variation in the carbon isotope composition of dissolved inorganic carbon of bottom water according to their life cycles, while that of deep-water, infaunal species reflects the variation interstitial pore water according to microhabitat preferences.

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Particle physics studies highly complex processes which cannot be directly observed. Scientific realism claims that we are nevertheless warranted in believing that these processes really occur and that the objects involved in them really exist. This dissertation defends a version of scientific realism, called causal realism, in the context of particle physics. I start by introducing the central theses and arguments in the recent philosophical debate on scientific realism (chapter 1), with a special focus on an important presupposition of the debate, namely common sense realism. Chapter 2 then discusses entity realism, which introduces a crucial element into the debate by emphasizing the importance of experiments in defending scientific realism. Most of the chapter is concerned with Ian Hacking's position, but I also argue that Nancy Cartwright's version of entity realism is ultimately preferable as a basis for further development. In chapter 3,1 take a step back and consider the question whether the realism debate is worth pursuing at all. Arthur Fine has given a negative answer to that question, proposing his natural ontologica! attitude as an alternative to both realism and antirealism. I argue that the debate (in particular the realist side of it) is in fact less vicious than Fine presents it. The second part of my work (chapters 4-6) develops, illustrates and defends causal realism. The key idea is that inference to the best explanation is reliable in some cases, but not in others. Chapter 4 characterizes the difference between these two kinds of cases in terms of three criteria which distinguish causal from theoretical warrant. In order to flesh out this distinction, chapter 5 then applies it to a concrete case from the history of particle physics, the discovery of the neutrino. This case study shows that the distinction between causal and theoretical warrant is crucial for understanding what it means to "directly detect" a new particle. But the distinction is also an effective tool against what I take to be the presently most powerful objection to scientific realism: Kyle Stanford's argument from unconceived alternatives. I respond to this argument in chapter 6, and I illustrate my response with a discussion of Jean Perrin's experimental work concerning the atomic hypothesis. In the final part of the dissertation, I turn to the specific challenges posed to realism by quantum theories. One of these challenges comes from the experimental violations of Bell's inequalities, which indicate a failure of locality in the quantum domain. I show in chapter 7 how causal realism can further our understanding of quantum non-locality by taking account of some recent experimental results. Another challenge to realism in quantum mechanics comes from delayed-choice experiments, which seem to imply that certain aspects of what happens in an experiment can be influenced by later choices of the experimenter. Chapter 8 analyzes these experiments and argues that they do not warrant the antirealist conclusions which some commentators draw from them. It pays particular attention to the case of delayed-choice entanglement swapping and the corresponding question whether entanglement is a real physical relation. In chapter 9,1 finally address relativistic quantum theories. It is often claimed that these theories are incompatible with a particle ontology, and this calls into question causal realism's commitment to localizable and countable entities. I defend the commitments of causal realism against these objections, and I conclude with some remarks connecting the interpretation of quantum field theory to more general metaphysical issues confronting causal realism.

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Cannabinoid receptor 1 (CB(1) receptor) controls several neuronal functions, including neurotransmitter release, synaptic plasticity, gene expression and neuronal viability. Downregulation of CB(1) expression in the basal ganglia of patients with Huntington's disease (HD) and animal models represents one of the earliest molecular events induced by mutant huntingtin (mHtt). This early disruption of neuronal CB(1) signaling is thought to contribute to HD symptoms and neurodegeneration. Here we determined whether CB(1) downregulation measured in patients with HD and mouse models was ubiquitous or restricted to specific striatal neuronal subpopulations. Using unbiased semi-quantitative immunohistochemistry, we confirmed previous studies showing that CB(1) expression is downregulated in medium spiny neurons of the indirect pathway, and found that CB(1) is also downregulated in neuropeptide Y (NPY)/neuronal nitric oxide synthase (nNOS)-expressing interneurons while remaining unchanged in parvalbumin- and calretinin-expressing interneurons. CB(1) downregulation in striatal NPY/nNOS-expressing interneurons occurs in R6/2 mice, Hdh(Q150/Q150) mice and the caudate nucleus of patients with HD. In R6/2 mice, CB(1) downregulation in NPY/nNOS-expressing interneurons correlates with diffuse expression of mHtt in the soma. This downregulation also occludes the ability of cannabinoid agonists to activate the pro-survival signaling molecule cAMP response element-binding protein in NPY/nNOS-expressing interneurons. Loss of CB(1) signaling in NPY/nNOS-expressing interneurons could contribute to the impairment of basal ganglia functions linked to HD.

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Integrated approaches using different in vitro methods in combination with bioinformatics can (i) increase the success rate and speed of drug development; (ii) improve the accuracy of toxicological risk assessment; and (iii) increase our understanding of disease. Three-dimensional (3D) cell culture models are important building blocks of this strategy which has emerged during the last years. The majority of these models are organotypic, i.e., they aim to reproduce major functions of an organ or organ system. This implies in many cases that more than one cell type forms the 3D structure, and often matrix elements play an important role. This review summarizes the state of the art concerning commonalities of the different models. For instance, the theory of mass transport/metabolite exchange in 3D systems and the special analytical requirements for test endpoints in organotypic cultures are discussed in detail. In the next part, 3D model systems for selected organs--liver, lung, skin, brain--are presented and characterized in dedicated chapters. Also, 3D approaches to the modeling of tumors are presented and discussed. All chapters give a historical background, illustrate the large variety of approaches, and highlight up- and downsides as well as specific requirements. Moreover, they refer to the application in disease modeling, drug discovery and safety assessment. Finally, consensus recommendations indicate a roadmap for the successful implementation of 3D models in routine screening. It is expected that the use of such models will accelerate progress by reducing error rates and wrong predictions from compound testing.

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We prove for any pure three-quantum-bit state the existence of local bases which allow one to build a set of five orthogonal product states in terms of which the state can be written in a unique form. This leads to a canonical form which generalizes the two-quantum-bit Schmidt decomposition. It is uniquely characterized by the five entanglement parameters. It leads to a complete classification of the three-quantum-bit states. It shows that the right outcome of an adequate local measurement always erases all entanglement between the other two parties.

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The backbones of proteins form linear chains. In the case of some proteins, these chains can be characterized as forming linear open knots. The knot type of the full chain reveals only limited information about the entanglement of the chain since, for example, subchains of an unknotted protein can form knots and subchains of a knotted protein can form different types of knots than the entire protein. To understand fully the entanglement within the backbone of a given protein, a complete analysis of the knotting within all of the subchains of that protein is necessary. In the present article, we review efforts to characterize the full knotting complexity within individual proteins and present a matrix that conveys information about various aspects of protein knotting. For a given protein, this matrix identifies the precise localization of knotted regions and shows the knot types formed by all subchains. The pattern in the matrix can be considered as a knotting fingerprint of that protein. We observe that knotting fingerprints of distantly related knotted proteins are strongly conserved during evolution and discuss how some characteristic motifs in the knotting fingerprints are related to the structure of the knotted regions and their possible biological role.