972 resultados para Qualitative Differences
Resumo:
The focus of the study is on the values, priorities and arguments needed to advance ‘design for sustainability’. The discussion critiques conventions related to innovation and technology and offers a product design approach that emphasises minimal intervention, integrated thinking-and-doing, reinstating the familiar, localization and the particularities of place. These interdependent themes are discussed in terms of their relationship to design for sustainability and are clarified through the conceptualization, design, production and use of a simple functional object that is, essentially, a ‘symbolic sustainable artefact’. Although it is fully functional, its practical usefulness in contemporary society would probably be seen as marginal. Its potential contribution is as a symbol of an alternative direction. It asks us to consider aspects of our humanity that are beyond instrumental approaches. It challenges sustainable initiatives that become so caught up in practical and environmental concerns that they fail to question the underlying values, priorities and social drivers which affect how we act in the world; those behaviours and norms that have created the very problems we are so urgently trying to tackle. The discussion is accompanied by a parallel series of photographs that document the relationship between argument, locale and the creation of the conceptual artefact. These photographs convey some of the qualitative differences between the place of much contemporary artefact acquisition, i.e. the shopping mall, and the particular locale that yielded the artefact created during this study; they are also useful in conveying the potential relationship that exist between place and the aesthetics of functional objects.
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Nombreux individus vont expérimenter avec les drogues d’abus, mais peu vont devenir toxicomanes. Plusieurs facteurs sont impliqués dans la transition d’un usage récréatif à l’addiction. Les drogues, les conditionnements et les voies d’administration qui mènent à l’augmentation rapide du taux drogue dans le cerveau favorisent cette évolution. La raison est méconnue. Nous avons émis l’hypothèse que l’injection rapide de drogue promeut des changements dans le cerveau qui mènent à l’augmentation de la consommation et de la motivation à obtenir la drogue. Nous avons comparé la consommation lors de conditions à ratio fixe (FR) et à ratio progressif (PR) chez des rats s’auto-administrant la cocaïne administrée par voie intraveineuse (i.v.) en 5 ou 90 secondes (s). Tous les rats ont été entrainés à peser sur un levier afin de s’auto administrer des injections de cocaïne de 0.25 ou 0.5 mg/kg par voie intraveineuse injectée en 5 s sous FR avant d’être divisés en groupes s’auto administrant la cocaïne injectée en 5 ou 90 s pendant 1 heure (h)/session. Pour étudier les différences potentielles en consommation, l’accès à la cocaïne à été augmenté à 6 h/session. Les différences en motivation ont été détectées par l’auto administration de la cocaïne sous PR en fonction de la dose et de la vitesse d’infusion. L’accès à la drogue pendant 1 h/session n’a pas influencé la consommation. Lorsque l’accès a été prolongé à 6 h, tous les animaux ont augmenté leur consommation, mais l’augmentation était plus prononcée chez les rats s’injectant la cocaïne en 5 s. De plus, la vitesse d’injection a influencé la motivation pour obtenir la drogue. Lors de conditions à PR, la courbe dose-réponse pour le nombre d’infusions prises a été déplacée vers le haut pour les rats s’auto administrant des injections de cocaïne en 5 s versus 90 s. De plus, des différences qualitatives on été observées en PR. La consommation de cocaïne des rats s’injectant des infusions en 5 s était dépendante de la dose, tandis que les rats s’auto administrant la drogue en 90 s ont pris la même quantité de drogue, peu importe la dose. Finalement, les rats s’auto administrant des infusions de cocaïne 0.5 mg/kg en 5 s ont consommé plus de cocaïne que les rats prenant des infusions en 90 s, peu importe si elle était injectée en 5 ou 90 s le jour du test. Ainsi, nos résultats montrent que l’injection rapide de drogue dans le cerveau mène à l’augmentation de la consommation et de la motivation pour obtenir la cocaïne, deux symptômes qui caractérisent la toxicomanie.
Resumo:
L’aptitude à reconnaitre les expressions faciales des autres est cruciale au succès des interactions sociales. L’information visuelle nécessaire à la catégorisation des expressions faciales d’émotions de base présentées de manière statique est relativement bien connue. Toutefois, l’information utilisée pour discriminer toutes les expressions faciales de base entre elle demeure encore peu connue, et ce autant pour les expressions statiques que dynamiques. Plusieurs chercheurs assument que la région des yeux est particulièrement importante pour arriver à « lire » les émotions des autres. Le premier article de cette thèse vise à caractériser l’information utilisée par le système visuel pour discriminer toutes les expressions faciales de base entre elles, et à vérifier l’hypothèse selon laquelle la région des yeux est cruciale pour cette tâche. La méthode des Bulles (Gosselin & Schyns, 2001) est utilisée avec des expressions faciales statiques (Exp. 1) et dynamiques (Exp. 2) afin de trouver quelles régions faciales sont utilisées (Exps. 1 et 2), ainsi que l’ordre temporel dans lequel elles sont utilisées (Exp. 2). Les résultats indiquent que, contrairement à la croyance susmentionnée, la région de la bouche est significativement plus utile que la région des yeux pour discriminer les expressions faciales de base. Malgré ce rôle prépondérant de la bouche, c’est toute de même la région des yeux qui est sous-utilisée chez plusieurs populations cliniques souffrant de difficultés à reconnaitre les expressions faciales. Cette observation pourrait suggérer que l’utilisation de la région des yeux varie en fonction de l’habileté pour cette tâche. Le deuxième article de cette thèse vise donc à vérifier comment les différences individuelles en reconnaissance d’expressions faciales sont reliées aux stratégies d’extraction de l’information visuelle pour cette tâche. Les résultats révèlent une corrélation positive entre l’utilisation de la région de la bouche et l’habileté, suggérant la présence de différences qualitatives entre la stratégie des patients et celle des normaux. De plus, une corrélation positive est retrouvée entre l’utilisation de l’œil gauche et l’habileté des participants, mais aucune corrélation n’est retrouvée entre l’utilisation de l’œil droit et l’habileté. Ces résultats indiquent que la stratégie des meilleurs participants ne se distingue pas de celle des moins bons participants simplement par une meilleure utilisation de l’information disponible dans le stimulus : des différences qualitatives semblent exister même au sein des stratégies des participants normaux.
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We present the first relativistic many-electron SCF correlation diagram for a superheavy quasimolecule: Pb - Pb. The discussion shows a large number of quantitative as well as qualitative differences as compared with the known one-electron correlation diagram.
Resumo:
En la depresión unipolar el estado de ánimo predominante es la tristeza y la experiencia corporal es de un cuerpo que se siente más cómodo con la quietud que con la actividad, parecido a la pereza de la vida cotidiana. En la depresión bipolar el estado de ánimo predominante es de apagamiento emocional. La experiencia corporal es de un cuerpo pesado, cansado, un elemento que se interpone entre los deseos de actuar y la realización de las acciones y que se vuelve un obstáculo para el movimiento. Además, en la depresión bipolar hay mayor bradipsíquia, dificultad para concentrarse y desesperanza que en la unipolar. Se realizó una investigación de tipo cualitativo, exploratorio, de las experiencias subjetivas (de primera persona) de un grupo de pacientes con depresión unipolar y bipolar. Se utilizó entrevistas en profundidad de orientación fenomenológica.
Resumo:
Predicting metal bioaccumulation and toxicity in soil organisms is complicated by site-specific biotic and abiotic parameters. In this study we exploited tissue fractionation and digestion techniques, combined with X-ray absorption spectroscopy (XAS), to investigate the whole-body and subcellular distributions, ligand affinities, and coordination chemistry of accumulated Pb and Zn in field populations of the epigeic earthworm Lumbricus rubellus inhabiting three contrasting metalliferous and two unpolluted soils. Our main findings were (i) earthworms were resident in soils with concentrations of Pb and Zn ranging from 1200 to 27 000 mg kg(-1) and 200 to 34 000 mg kg(-1), respectively; (ii) Pb and Zn primarily accumulated in the posterior alimentary canal in nonsoluble subcellular fractions of earthworms; (iii) site-specific differences in the tissue and subcellular partitioning profiles of populations were observed, with earthworms from a calcareous site partitioning proportionally more Pb to their anterior body segments and Zn to the chloragosome-rich subcellular fraction than their acidic-soil inhabiting counterparts; (iv) XAS indicated that the interpopulation differences in metal partitioning between organs were not accompanied by qualitative differences in ligand-binding speciation, because crystalline phosphate-containing pyromorphite was a predominant chemical species in the whole-worm tissues of all mine soil residents. Differences in metal (Pb, Zn) partitioning at both organ and cellular levels displayed by field populations with protracted histories of metal exposures may reflect their innate ecophysiological responses to essential edaphic variables, such as Ca2+ status. These observations are highly significant in the challenging exercise of interpreting holistic biomarker data delivered by "omic" technologies.
Resumo:
The aroma volatiles of four cultivars of muskmelon were examined using solid phase microextraction, followed by gas chromatography-mass spectrometry. The melons studied were Galia, from the reticulatus group, cantaloupe, from the cantaloupensis group, and honeydew and Piel de Sapo, from the inodorus group. Quantitative and qualitative differences existed between all four cultivars. Possible pathways for the formation of volatile compounds in melons are discussed.
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Physiological evidence using Infrared Video Microscopy during the uncaging of glutamate has proven the existence of excitable calcium ion channels in spine heads, highlighting the need for reliable models of spines. In this study we compare the three main methods of simulating excitable spines: Baer & Rinzel's Continuum (B&R) model, Coombes' Spike-Diffuse-Spike (SDS) model and paired cable and ion channel equations (Cable model). Tests are done to determine how well the models approximate each other in terms of speed and heights of travelling waves. Significant quantitative differences are found between the models: travelling waves in the SDS model in particular are found to travel at much lower speeds and sometimes much higher voltages than in the Cable or B&R models. Meanwhile qualitative differences are found between the B&R and SDS models over realistic parameter ranges. The cause of these differences is investigated and potential solutions proposed.
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This study uses an analytical model, based on the cooling-to-space approximation, and a fixed dynamical heating model to investigate the structure of the stratospheric cooling that occurs in response to a uniform increase in stratospheric water vapour (SWV). At all latitudes, the largest cooling occurs in the lower stratosphere and decreases in magnitude with height. The cooling is strongly enhanced in the Extratropics compared to the Tropics. This is markedly different to the case of an increase in CO2, which causes maximum cooling near the stratopause and a small warming in the tropical lower stratosphere. The qualitative differences in the structure of the cooling can be explained by the smaller opacity of water vapour bands in the stratosphere compared to CO2. The small opacity means that the magnitude of the initial heating rate perturbation only decreases by a factor of four between the upper and lower stratosphere for a SWV perturbation. Therefore, to balance the heating rate perturbation, the largest temperature change is required in the lower stratosphere. Increasing the background concentration of SWV causes the water vapour bands to become more opaque. For a SWV perturbation applied to a background SWV concentration ≥30 ppmv, the heating rate perturbation and temperature change structurally resemble those from an increase in CO2. In the Extratropics, the lower height of the tropopause is found to cause the enhancement in the cooling at those latitudes. By controlling the depth of atmosphere which adjusts to the SWV perturbation, the tropopause height affects the net exchange of radiation between the layers in the stratosphere as they cool. The latitudinal gradient in upwelling infrared radiation at the tropopause and variations in the background temperature are found to have only a minor effect on the structure of the stratospheric temperature response to a change in SWV.
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In the heart, inflammatory cytokines including interleukin (IL) 1β are implicated in regulating adaptive and maladaptive changes, whereas IL33 negatively regulates cardiomyocyte hypertrophy and promotes cardioprotection. These agonists signal through a common co-receptor but, in cardiomyocytes, IL1β more potently activates mitogen-activated protein kinases and NFκB, pathways that regulate gene expression. We compared the effects of external application of IL1β and IL33 on the cardiomyocyte transcriptome. Neonatal rat cardiomyocytes were exposed to IL1β or IL33 (0.5, 1 or 2h). Transcriptomic profiles were determined using Affymetrix rat genome 230 2.0 microarrays and data were validated by quantitative PCR. IL1β induced significant changes in more RNAs than IL33 and, generally, to a greater degree. It also had a significantly greater effect in downregulating mRNAs and in regulating mRNAs associated with selected pathways. IL33 had a greater effect on a small, select group of specific transcripts. Thus, differences in intensity of intracellular signals can deliver qualitatively different responses. Quantitatively different responses in production of receptor agonists and transcription factors may contribute to qualitative differences at later times resulting in different phenotypic cellular responses.
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Novel acidic varieties of muskmelon (Cucumis melo L.) are emerging onto the UK market. These melons contain almost twice the amount of citric acid compared to standard melons and are described as ‘zesty and fresh’. This study compared the flavour components of three acidic varieties with a standard Galia-type melon. The volatile and semivolatile compounds were extracted using dynamic headspace extraction (DHE) or solid-phase microextraction (SPME) and solid phase extraction (SPE) respectively, followed by gas chromatography – mass spectrometry (GC-MS) and gas chromatography – olfactometry (GC-O). More than 50 volatile and 50 semivolatile compounds were identified in the headspace and the SPE extracts respectively. GC-O revealed 15 odour-active components in the headspace, with esters being consistently higher in acidic variety. This study showed quantitative and qualitative differences between all four varieties and key differences between acidic varieties and standard melons.
Resumo:
A method to solve a quasi-geostrophic two-layer model including the variation of static stability is presented. The divergent part of the wind is incorporated by means of an iterative procedure. The procedure is rather fast and the time of computation is only 60–70% longer than for the usual two-layer model. The method of solution is justified by the conservation of the difference between the gross static stability and the kinetic energy. To eliminate the side-boundary conditions the experiments have been performed on a zonal channel model. The investigation falls mainly into three parts: The first part (section 5) contains a discussion of the significance of some physically inconsistent approximations. It is shown that physical inconsistencies are rather serious and for these inconsistent models which were studied the total kinetic energy increased faster than the gross static stability. In the next part (section 6) we are studying the effect of a Jacobian difference operator which conserves the total kinetic energy. The use of this operator in two-layer models will give a slight improvement but probably does not have any practical use in short periodic forecasts. It is also shown that the energy-conservative operator will change the wave-speed in an erroneous way if the wave-number or the grid-length is large in the meridional direction. In the final part (section 7) we investigate the behaviour of baroclinic waves for some different initial states and for two energy-consistent models, one with constant and one with variable static stability. According to the linear theory the waves adjust rather rapidly in such a way that the temperature wave will lag behind the pressure wave independent of the initial configuration. Thus, both models give rise to a baroclinic development even if the initial state is quasi-barotropic. The effect of the variation of static stability is very small, qualitative differences in the development are only observed during the first 12 hours. For an amplifying wave we will get a stabilization over the troughs and an instabilization over the ridges.
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In accord with the general program of researching factors relating to ultimate attainment and maturational constraints in adult language acquisition, this commentary highlights the importance of input differences in amount, type, and setting between naturalistic and classroom learners of an L2. It is suggested that these variables are often confounded with age factors. Herein, we wish to call attention to the possible deterministic role that the differences in the grammatical quality of classroom input have on development and on competence outcomes. Framing what we see as greater formal complexity of the learning task for classroom learners, we suggest that one might benefit from focusing less on difference and more on how classroom L2 learners, at least some of them, come to acquire all that they do despite crucial qualitative differences in their input.
Resumo:
A recent nonlinear system by Friston et al. (2000. NeuroImage 12: 466–477) links the changes in BOLD response to changes in neural activity. The system consists of five subsystems, linking: (1) neural activity to flow changes; (2) flow changes to oxygen delivery to tissue; (3) flow changes to changes in blood volume and venous outflow; (4) changes in flow, volume, and oxygen extraction fraction to deoxyhemoglobin changes; and finally (5) volume and deoxyhemoglobin changes to the BOLD response. Friston et al. exploit, in subsystem 2, a model by Buxton and Frank coupling flow changes to changes in oxygen metabolism which assumes tissue oxygen concentration to be close to zero. We describe below a model of the coupling between flow and oxygen delivery which takes into account the modulatory effect of changes in tissue oxygen concentration. The major development has been to extend the original Buxton and Frank model for oxygen transport to a full dynamic capillary model making the model applicable to both transient and steady state conditions. Furthermore our modification enables us to determine the time series of CMRO2 changes under different conditions, including CO2 challenges. We compare the differences in the performance of the “Friston system” using the original model of Buxton and Frank and that of our model. We also compare the data predicted by our model (with appropriate parameters) to data from a series of OIS studies. The qualitative differences in the behaviour of the models are exposed by different experimental simulations and by comparison with the results of OIS data from brief and extended stimulation protocols and from experiments using hypercapnia.
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We compare the quasi-equilibrium heat balances, as well as their responses to 4×CO2 perturbation, among three global climate models with the aim to identify and explain inter-model differences in ocean heat uptake (OHU) processes. We find that, in quasi-equilibrium, convective and mixed layer processes, as well as eddy-related processes, cause cooling of the subsurface ocean. The cooling is balanced by warming caused by advective and diapycnally diffusive processes. We also find that in the CO2-perturbed climates the largest contribution to OHU comes from changes in vertical mixing processes and the mean circulation, particularly in the extra-tropics, caused both by changes in wind forcing, and by changes in high-latitude buoyancy forcing. There is a substantial warming in the tropics, a significant part of which occurs because of changes in horizontal advection in extra-tropics. Diapycnal diffusion makes only a weak contribution to the OHU, mainly in the tropics, due to increased stratification. There are important qualitative differences in the contribution of eddy-induced advection and isopycnal diffusion to the OHU among the models. The former is related to the different values of the coefficients used in the corresponding scheme. The latter is related to the different tapering formulations of the isopycnal diffusion scheme. These differences affect the OHU in the deep ocean, which is substantial in two of the models, the dominant region of deep warming being the Southern Ocean. However, most of the OHU takes place above 2000 m, and the three models are quantitatively similar in their global OHU efficiency and its breakdown among processes and as a function of latitude.