906 resultados para DIRECTIONAL ATTRACTIVE FORCES
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Understanding the dynamics of blood cells is a crucial element to discover biological mechanisms, to develop new efficient drugs, design sophisticated microfluidic devices, for diagnostics. In this work, we focus on the dynamics of red blood cells in microvascular flow. Microvascular blood flow resistance has a strong impact on cardiovascular function and tissue perfusion. The flow resistance in microcirculation is governed by flow behavior of blood through a complex network of vessels, where the distribution of red blood cells across vessel cross-sections may be significantly distorted at vessel bifurcations and junctions. We investigate the development of blood flow and its resistance starting from a dispersed configuration of red blood cells in simulations for different hematocrits, flow rates, vessel diameters, and aggregation interactions between red blood cells. Initially dispersed red blood cells migrate toward the vessel center leading to the formation of a cell-free layer near the wall and to a decrease of the flow resistance. The development of cell-free layer appears to be nearly universal when scaled with a characteristic shear rate of the flow, which allows an estimation of the length of a vessel required for full flow development, $l_c \approx 25D$, with vessel diameter $D$. Thus, the potential effect of red blood cell dispersion at vessel bifurcations and junctions on the flow resistance may be significant in vessels which are shorter or comparable to the length $l_c$. The presence of aggregation interactions between red blood cells lead in general to a reduction of blood flow resistance. The development of the cell-free layer thickness looks similar for both cases with and without aggregation interactions. Although, attractive interactions result in a larger cell-free layer plateau values. However, because the aggregation forces are short-ranged at high enough shear rates ($\bar{\dot{\gamma}} \gtrsim 50~\text{s}^{-1}$) aggregation of red blood cells does not bring a significant change to the blood flow properties. Also, we develop a simple theoretical model which is able to describe the converged cell-free-layer thickness with respect to flow rate assuming steady-state flow. The model is based on the balance between a lift force on red blood cells due to cell-wall hydrodynamic interactions and shear-induced effective pressure due to cell-cell interactions in flow. We expect that these results can also be used to better understand the flow behavior of other suspensions of deformable particles such as vesicles, capsules, and cells. Finally, we investigate segregation phenomena in blood as a two-component suspension under Poiseuille flow, consisting of red blood cells and target cells. The spatial distribution of particles in blood flow is very important. For example, in case of nanoparticle drug delivery, the particles need to come closer to microvessel walls, in order to adhere and bring the drug to a target position within the microvasculature. Here we consider that segregation can be described as a competition between shear-induced diffusion and the lift force that pushes every soft particle in a flow away from the wall. In order to investigate the segregation, on one hand, we have 2D DPD simulations of red blood cells and target cell of different sizes, on the other hand the Fokker-Planck equation for steady state. For the equation we measure force profile, particle distribution and diffusion constant across the channel. We compare simulation results with those from the Fokker-Planck equation and find a very good correspondence between the two approaches. Moreover, we investigate the diffusion behavior of target particles for different hematocrit values and shear rates. Our simulation results indicate that diffusion constant increases with increasing hematocrit and depends linearly on shear rate. The third part of the study describes development of a simulation model of complex vascular geometries. The development of the model is important to reproduce vascular systems of small pieces of tissues which might be gotten from MRI or microscope images. The simulation model of the complex vascular systems might be divided into three parts: modeling the geometry, developing in- and outflow boundary conditions, and simulation domain decomposition for an efficient computation. We have found that for the in- and outflow boundary conditions it is better to use the SDPD fluid than DPD one because of the density fluctuations along the channel of the latter. During the flow in a straight channel, it is difficult to control the density of the DPD fluid. However, the SDPD fluid has not that shortcoming even in more complex channels with many branches and in- and outflows because the force acting on particles is calculated also depending on the local density of the fluid.
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In order to grow and survive, a firm must create value with consumers in ways that both fit in with consumer demands and stand out from competitors. Focusing on and understanding consumer and firm assessments of value and creation of value has become a central scope in the contemporary strategic management and marketing literature for understanding and explaining firm survival and success. Consequently, the overall aim of this thesis is to provide a conceptually and empirically grounded understanding of consumers’ and managers’ value assessments and behavior in value creation. This thesis draws on a consumer experience perspective and theories on social construction, organizational identity, self-congruence, and the theory of attractive quality, and combines multiple qualitative and quantitative studies. The findings in this thesis shed light on the interplay between consumers, firms, and contextual structures in value creation. Contextual structural, cultural, and political forces are shown to affect and be affected by the shared and individual cognitions of value creation that firms and consumers use in their assessment and creation value. The results of the study enhance the understanding of how firms can adopt various strategic schemas or organizing logics to optimize different types of use value creation when choosing between opposing and contradictive demands in their value creation. Furthermore, the thesis provides a deeper understanding of the hierarchical nature of consumer judgments of value that can be used to enhance the effectiveness of firm prioritizations and as a foundation for future value-creating strategies.
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Relief shown by hachures.
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La réalisation de l’évaluation environnementale, en France, est encouragée par l’existence de règlements, lois, directives et normes Européennes (notamment la Directive 2001/42/CE du Parlement européen et du Conseil du 27 juin 2001 relative à l'évaluation des incidences de certains plans et programmes sur l'environnement et la Loi n° 2015-992 du 17 août 2015 relative à la transition énergétique pour la croissance verte). La compréhension du cadre Drivers – Pressures – State – Impacts – Responses permet de replacer les différentes méthodologies dans un cadre conceptuel plus large. Les méthodes d’analyse de flux de matières (Pressures) et d’analyse de cycle de vie (Impacts) sont les deux familles d’évaluation environnementale considérées dans ce travail. C’est plus précisément l’analyse de flux de matières selon Eurostat et l’analyse de cycle de vie territoriale qui ont été appliquées au territoire métropolitain d’Aix-Marseille-Provence. Un état de l’art relevant les études dans lesquelles sont réalisées des analyses de flux de matières a pu montrer que cette famille de méthodes informe sur le métabolisme des territoires à partir de différents types de flux. L’importance des flux indirects et des ressources minérales dans les métabolismes a ainsi été démontrée. Du côté des études analysant les cycles de vie sur les territoires, comme c’est le cas dans l’analyse de cycle de vie territoriale, la distinction faite entre les impacts et dommages, directs ou globaux, permet d’offrir des recommandations ciblées, améliorant la qualité de vie des citoyens. La mise en œuvre de ces deux méthodes sur le territoire métropolitain a mis en évidence l’importance dominante des flux indirects liés aux importations et exportations que génèrent les activités du territoire, elles-mêmes fortement influencées par la présence du port de Marseille-Fos. L’activité pétrochimique, qui caractérise elle aussi la métropole, est une grande consommatrice de combustibles fossiles, ce qui se reflète dans les volumes de flux calculés et leurs impacts associés. Les deux méthodologies s’avèrent complémentaires, chacune ayant ses forces et faiblesses respectives. Pour l’analyse de cycle de vie, la pensée cycle de vie et la prise en compte de la qualité de la matière, d’une part, et la facilité d’application et la marge d’erreur réduite de l’analyse de flux de matières, d’autre part, en plus de leurs résultats complémentaires, justifient un usage hybride pour la prise d’actions ciblées. En effet, la collecte commune des données rend intéressante leur exploitation et l’interprétation croisée de leurs résultats.
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Background: Among other causes the long-term result of hip prostheses in dogs is determined by aseptic loosening. A prevention of prosthesis complications can be achieved by an optimization of the tribological system which finally results in improved implant duration. In this context a computerized model for the calculation of hip joint loadings during different motions would be of benefit. In a first step in the development of such an inverse dynamic multi-body simulation (MBS-) model we here present the setup of a canine hind limb model applicable for the calculation of ground reaction forces. Methods: The anatomical geometries of the MBS-model have been established using computer tomography- (CT-) and magnetic resonance imaging- (MRI-) data. The CT-data were collected from the pelvis, femora, tibiae and pads of a mixed-breed adult dog. Geometric information about 22 muscles of the pelvic extremity of 4 mixed-breed adult dogs was determined using MRI. Kinematic and kinetic data obtained by motion analysis of a clinically healthy dog during a gait cycle (1 m/s) on an instrumented treadmill were used to drive the model in the multi-body simulation. Results and Discussion: As a result the vertical ground reaction forces (z-direction) calculated by the MBS-system show a maximum deviation of 1.75%BW for the left and 4.65%BW for the right hind limb from the treadmill measurements. The calculated peak ground reaction forces in z- and y-direction were found to be comparable to the treadmill measurements, whereas the curve characteristics of the forces in y-direction were not in complete alignment. Conclusion: In conclusion, it could be demonstrated that the developed MBS-model is suitable for simulating ground reaction forces of dogs during walking. In forthcoming investigations the model will be developed further for the calculation of forces and moments acting on the hip joint during different movements, which can be of help in context with the in silico development and testing of hip prostheses.
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New devices were designed to generate a localized mechanical vibration of flexible gels where human umbilical vein endothelial cells (HUVECs) were cultured. The stimulation setups were able to apply relatively large strains (30%~50%) at high temporal frequencies (140~207 Hz) in a localized subcellular region. One of the advantages of this technique was to be less invasive to the innate cellular functions because there was no direct contact between the stimulating probe and the cell body. A mechanical vibration induced by the device in the substrate gel where cells were seeded could mainly cause global calcium responses of the cells. This global response was initiated by the influx of calcium across the stretch-activated channels in the plasma membrane. The subsequent production of inositol triphosphate (IP3) via phospholipase C (PLC) activation triggered the calcium release from the endoplasmic reticulum (ER) to cause a global intracellular calcium fluctuation over the whole cell body. This global calcium response was also shown to depend on actomyosin contractility and F-actin integrity, probably controlling the membrane stretch-activated channels. The localized nature of the stimulation is one of the most important features of these new designs as it allowed the observation of the calcium signaling propagation by ER calcium release. The next step was to focus on the calcium influx, more specifically the TRPM7 channels. As TRPM7 expression may modulate cell adhesion, an adhesion assay was developed and tested on HUVECs seeded on gel substrates with different treatments: normal treatment on gels showed highest attachment rate, followed by the partially treated gels (only 5% of usual fibronectin amount) and untreated gels, with the lowest attachment rate. The trend of the attachment rates correlated to the magnitude of the calcium signaling observed after mechanical stimulation. TRPM7 expression inhibition by siRNA caused an increased attachment rate when compared to both control and non-targeting siRNA-treated cells, but resulted in an actual weaker response in terms of calcium signaling. It suggests that TRPM7 channels are indeed important for the calcium signaling in response to mechanical stimulation. A complementary study was also conducted consisting in the mechanical stimulation of a dissected Drosophila embryo. Although ionomycin treatment showed calcium influx in the tissue, the mechanical stimulation delivered as a vertical vibration did not elicited calcium signaling in response. One possible reason is the dissection procedure causing desensitization of the tissue due to the scrapings and manipulations to open the embryo.
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Interactions between surface waves and sea ice are thought to be an important, but poorly understood, physical process in the atmosphere-ice-ocean system. In this work, airborne scanning lidar was used to observe ocean waves propagating into the marginal ice zone (MIZ). These represent the first direct spatial measurements of the surface wave field in the polar MIZ. Data were compared against two attenuation models, one based on viscous dissipation and one based on scattering. Both models were capable of reproducing the measured wave energy. The observed wavenumber dependence of attenuation was found to be consistent with viscous processes, while the spectral spreading of higher wavenumbers suggested a scattering mechanism. Both models reproduced a change in peak direction due to preferential directional filtering. Floe sizes were recorded using co-located visible imagery, and their distribution was found to be consistent with ice breakup by the wave field.
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The thesis focuses on military crisis management and strategy.
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Mode of access: Internet.
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Cover title.
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Les manifestations de crise, en Côte d'Ivoire, ont été extrêmement violentes. Au cours des quinze dernières années, plus de 400 personnes sont mortes, tuées dans des affrontements avec les forces de sécurités ou des contre-manifestants. Malgré la gravité du problème, peu d’études scientifiques y sont consacrées et les rares analyses et enquêtes existantes portent, de façon unilatérale, sur l’identité et la responsabilité pénale des auteurs et commanditaires putatifs de cette violence. La présente étude s’élève contre le moralisme inhérent à ces approches pour aborder la question sous l’angle de l’interaction : cette thèse a pour objectif de comprendre les processus et logiques qui sous-tendent l’usage de la violence au cours des manifestations. Le cadre théorique utilisé dans cette étude qualitative est l’interactionnisme symbolique. Le matériel d’analyse est composé d’entrevues et de divers documents. Trente-trois (33) entrevues semi-dirigées ont été réalisées avec des policiers et des manifestants, cooptés selon la technique de la boule de neige, entre le 3 janvier et le 15 mai 2013, à Abidjan. Les rapports d’enquête, de l’ONG Human Rights Watch, sur les manifestations de crise, les manuels de formation de la police et divers autres matériaux périphériques ont également été consultés. Les données ont été analysées suivant les principes et techniques de la théorisation ancrée (Paillée, 1994). Trois principaux résultats ont été obtenus. Premièrement, le système ivoirien de maintien de l'ordre est conçu selon le modèle d’une « police du prince ». Les forces de sécurité dans leur ensemble y occupent une fonction subalterne d’exécutant. Elles sont placées sous autorité politique avec pour mandat la défense inconditionnelle des institutions. Le style standard de gestion des foules, qui en découle, est légaliste et répressif, correspondant au style d’escalade de la force (McPhail, Schweingruber, & Carthy, 1998). Cette « police du prince » dispose toutefois de marges de manœuvre sur le terrain, qui lui permettent de moduler son style en fonction de la conception qu’elle se fait de l’attitude des manifestants : paternaliste avec les foules dites calmes, elle devient répressive ou déviante avec les foules qu’elle définit comme étant hostiles. Deuxièmement, à rebours d’une conception victimaire de la foule, la violence est une transaction situationnelle dynamique entre forces de sécurité et manifestants. La violence suit un processus ascendant dont les séquences et les règles d’enchainement sont décrites. Ainsi, le premier niveau auquel s’arrête la majorité des manifestations est celui d’une force non létale bilatérale dans lequel les deux acteurs, protestataires et policiers, ont recours à des armes non incapacitantes, où les cailloux des premiers répondent au gaz lacrymogène des seconds. Le deuxième niveau correspond à la létalité unilatérale : la police ouvre le feu lorsque les manifestants se rapprochent de trop près. Le troisième et dernier niveau est atteint lorsque les manifestants utilisent à leur tour des armes à feu, la létalité est alors bilatérale. Troisièmement, enfin, le concept de « l’indignité républicaine » rend compte de la logique de la violence dans les manifestations. La violence se déclenche et s’intensifie lorsqu’une des parties, manifestants ou policiers, interprète l’acte posé par l’adversaire comme étant en rupture avec le rôle attendu du statut qu’il revendique dans la manifestation. Cet acte jugé indigne a pour conséquence de le priver de la déférence rattachée à son statut et de justifier à son encontre l’usage de la force. Ces actes d’indignités, du point de vue des policiers, sont symbolisés par la figure du manifestant hostile. Pour les manifestants, l’indignité des forces de sécurité se reconnait par des actes qui les assimilent à une milice privée. Le degré d’indignité perçu de l’acte explique le niveau d’allocation de la violence.
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Shows fortifications and names of some residents.