989 resultados para Robinson, Denard


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Ce mémoire étudie les origines de l’engagement des combattants de nationalité française en faveur de la sécession du Katanga (1960-63), au moment de l’indépendance du Congo belge. Recrutés pour s’opposer à l’Armée nationale congolaise et aux Casques bleus de l’ONU qui cherchent à faire réintégrer la province par la force, ces hommes aguerris par quinze années de guerre contre-insurrectionnelle vont s’avérer être les éléments clefs du dispositif militaire katangais. Centrée sur les « conditions objectives » de l’action plutôt que sur ses « fondements psychologiques », notre étude vise à mettre en lumière les « forces profondes » au gré desquelles l’intervention des « affreux » a pris forme. Elle s’intéresse en particulier à la trajectoire de trois figures remarquables du point de vue de l'historiographie de l'engagement armé international : Roger Trinquier, Roger Faulques et Bob Denard. Inspirée de la sociologie du champ intellectuel et militant dont elle contribue à montrer la pertinence pour l’étude du fait militaire transnational, notre recherche soutient que le sens de l'engagement ne peut être saisi qu'en replaçant la trajectoire de ces hommes au sein des différents niveaux de contexte dans lesquels elle s’est réalisée. Notre mémoire montre que le recours aux « affreux » coïncide avec le recul des vieilles puissances coloniales sur la scène internationale et avec l'affirmation des nouveaux acteurs que sont les États-Unis, l'URSS et l'ONU. L'engagement de ces hommes, dépourvus de statut officiel, apparaît pour la France comme un moyen détourné de maintenir en Afrique des intérêts et une influence contraire à la dynamique des indépendances.

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En 1936, l’American Music League publiait le recueil de chansons afro-américaines Negro Songs of Protest collectées par le folkloriste communiste Lawrence Gellert. Puis en 1938 et 1939, grâce au financement du mouvement communiste américain, le producteur John Hammond présentait deux concerts intitulés From Spirituals to Swing au Carnegie Hall de New York. En plus de rendre hommage à l’histoire de la musique noire américaine, ces deux concerts défiaient la ségrégation raciale, permettant au Noirs et aux Blancs d’être rassemblés sur une même scène et de s’asseoir ensemble dans l’assistance. Au même moment, la chanteuse jazz Billie Holiday faisait fureur au Café Society, premier club « intégré » de New York et lieu de rassemblement de la gauche radicale, en interprétant soir après soir la chanson ‘’Strange Fruit’’ qui dénonçait l’horreur du lynchage toujours en vigueur dans le Sud des États-Unis. C’était l’époque du Front Populaire, la plus importante période d’influence du mouvement communiste aux États-Unis et, de surcroît, le moment de l’histoire américaine durant lequel la gauche organisée détenait un pouvoir sans précédent sur la culture de masse. Partant d’une discussion sur le potentiel révolutionnaire de la musique noire américaine et cherchant à comprendre le positionnement des mouvements sociaux vis-à-vis la culture, ce mémoire met en lumière le point de vue des communistes américains blancs face à l’émergence et à la popularité grandissante du blues et du jazz noirs aux États-Unis. En fonction des trois principales phases politiques du Parti Communiste américain (CPUSA) – la phase du colorblind class (1919-1928); la phase du nationalisme noir (1928-1935); le Front Populaire (1935-1940) – ce mémoire retrace les changements d’attitude de la vieille gauche envers la culture populaire et suggère que le mouvement communiste américain a tenté d’utiliser le blues et le jazz à des fins d’agit-prop.

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Leigh Hunt's authorship of "A legend of Florence" (1840) — a drama inspired by the rich cultural, intellectual, and political climate of Italy — reflects, as Michael Eberle-Sinatra demonstrates in the final essay of the first section, not only a literary exchange between England and Italy, but argues that during the creation of his play, Hunt engaged in his own version of border crossing as he managed the transition between writing about and writing for the stage. A complex maneuver that required Hunt to rech beyond his own intellectual boundaries, the shift from critic to dramatist challenged and enriched his thoughts regarding the work of the theater.

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Adrenergic stimulation has an inyortant role in the pancreatic It-cell proliferation and insulin secretion. In the present study. we have investigaled how sympathetic system mgulales the panrrealic n I rnerui nr ht an:ilyiing I'pinephi inn 1111 ), Norepinephrinc (NE) and /1-adrenergic receptor changes in the brain as (%eli is in the I swirls. Fill and NII showed a significant decrease in the brain regions, pancreas and plasma :rt 72Ius iller partial prurcrealectonty. We observed an increase in the circulating insulin levels at 72 hrs. Scatchard analysis using I CHI propranolol showed a significant increase in the number of loth the low affinity and high affinity t-adrenergic receplors in cerebral cortex and hypothalamus of partially pancreatectornised rats during peak DNA synthesis. The affinity of the receptors decrea,ed significantly in the low and high affinity receptors of cerebral cortex and the high affinity hypothalamic receptors. In file brain stein, low affinity receptors were increased significantly during regeneration whereas there was no change in the high affinity receptors. The pancreatic ff-adrenergic receptors were also up regulated at 72 firs after partial panerealectony. In vitro studies showed that /i-adrenergic receptors are positive regulators of islet cell proliferation and insulin secretion. Thus our results suggest that the t-adrenergic receptors are functionally enhanced during pancreatic regeneration, which in turn increases pancreatic ft-cell proliferation an(hilisulin secretion in wean hug rats.

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Parasympathetic system plays an important role in insulin secretion from the pancreas. Cholinergic effect on pancreatic beta cells exerts primarily through muscarinic receptors. In the present study we investigated the specific role of muscarinic M1 and M3 receptors in glucose induced insulin secretion from rat pancreatic islets in vitro. The involvement of muscarinic receptors was studied using the antagonist atropine. The role of muscarinic MI and M3 receptor subtypes was studied using subtype specific antagonists. Acetylcholine agonist, carbachol, stimulated glucose induced insulin secretion at low concentrations (10-8-10-5 M) with a maximum stimulation at 10-7 M concentration. Carbachol-stimulated insulin secretion was inhibited by atropine confirming the role of muscarinic receptors in cholinergic induced insulin secretion. Both M1 and M3 receptor antagonists blocked insulin secretion induced by carbachol. The results show that M3 receptors are functionally more prominent at 20 mM glucose concentration when compared to MI receptors. Our studies suggest that muscarinic M1 and M3 receptors function differentially regulate glucose induced insulin secretion, which has clinical significance in glucose homeostasis.

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The mononuclear cobalt(II) complex [CoL2] H2O (where HL is quinoxaline-2-carboxalidine- 2-amino-5-methylphenol) has been prepared and characterized by elemental analysis, conductivity measurement, IR, UV-Vis spectroscopy, TG-DTA, and X-ray structure determination. The crystallographic study shows that cobalt(II) is distorted octahedral with each tridentate NNO Schiff base in a cis arrangement. The crystal exhibits a 2-D polymeric structure parallel to [010] plane, formed by O-H...N and O-H... O intermolecular hydrogen bonds and pye stacking interactions, as a racemic mixture of optical enantiomers. The ligand is a Schiff base derived from quinoxaline-2-carboxaldehyde

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An efficient one-pot synthesis of two new heterocyclic perimidines 4-(2,3-dihydro-1H-perimidin-2-yl)-2-methoxyphenol and 2-(quinoxalin-2-yl)-2,3-dihydro-1H-perimidine in good yields is presented. This methodology provides a simple, straightforward synthetic route to these interesting classes of heterocycles. Crystal structure, solvatochromism and antibacterial activity of these organic compounds are discussed.

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The Schiff base compounds N,N0-bis[(E)-quinoxalin-2-ylmethylidene] propane-1,3-diamine, C21H18N6, (I), and N,N0-bis[(E)- quinoxalin-2-ylmethylidene]butane-1,4-diamine, C22H20N6, (II), crystallize in the monoclinic crystal system. These molecules have crystallographically imposed symmetry. Compound (I) is located on a crystallographic twofold axis and (II) is located on an inversion centre. The molecular conformations of these crystal structures are stabilized by aromatic pye stacking interactions.

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A novel bisazomethine Schiff base was synthesised by the condensation of 3-hydroxyquinoxaline-2- carboxaldehyde and 2,3-diaminomaleonitrile. 1H NMR, 13C NMR, HPLC and FT-IR studies revealed that the compound exists in two major tautomeric forms. The Schiff base exhibits positive absorption and fluorescent solvatochromism and displays dual fluorescence with large stoke shifts. Cyclic voltammetric analysis of the compound in 1:1 methanol–THF was influenced by scan rate. Thermal analysis of the compound was undertaken using TG–DTA and DSC

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Two new complexes, [MII(L)(Cl)(H2O)2]·H2O (where M=Ni or Ru and L = heterocyclic Schiff base, 3- hydroxyquinoxaline-2-carboxalidene-4-aminoantipyrine), have been synthesized and characterized by elemental analysis, FT-IR, UV–vis diffuse reflectance spectroscopy, FAB-MASS, TG–DTA, AAS, cyclic voltammetry, conductance and magnetic susceptibility measurements. The complexes have a distorted octahedral structure andwere found to be effective catalysts for the hydrogenation of benzene. The influence of several reaction parameters such as reaction time, temperature, hydrogen pressure, concentration of the catalyst and concentration of benzenewas tested. A turnover frequency of 5372 h−1 has been found in the case of ruthenium complex for the reduction of benzene at 80 ◦C with 3.64×10−6 mol catalyst, 0.34 mol benzene and at a hydrogen pressure of 50 bar. In the case of the nickel complex, a turnover frequency of 1718 h−1 has been found for the same reaction with 3.95×10−6 mol catalyst under similar experimental conditions. The nickel complex shows more selectivity for the formation of cyclohexene while the ruthenium complex is more selective for the formation of cyclohexane

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The metal complex, [Ni(en)2(H2O)2](NO3)2 (en = ethylenediamine), was decomposed in a static furnace at 200 C by autogenous decomposition to obtain phase pure metallic nickel nanocrystallites. The nickel metal thus obtained was studied by XRD, IR spectra, SEM and CHN analysis. The nickel crystallites are in the nanometer range as indicated by XRD studies. The IR spectral studies and CHN analyses show that the surface is covered with a nitrogen containing species. Thermogravimetric mass gain shows that the product purity is high (93%). The formed nickel is stable and resistant to oxidation up to 350 C probably due to the coverage of nitrogen containing species. Activation energy for the oxidation of the prepared nickel nanocrystallites was determined by non-isothermal methods and was found to depend on the conversion ratio. The oxidation kinetics of the nickel crystallites obeyed a Johnson–Mehl–Avrami mechanism probably due to the special morphology and crystallite strain present on the metal.

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The Schiff base, 3-hydroxyquinoxaline-2-carboxalidine-4-aminoantipyrine, was synthesized by the condensation of 3-hydroxyquinoxaline-2-carboxaldehyde with 4-aminoantipyrine. HPLC, FT-IR and NMR spectral data revealed that the compound exists predominantly in the amide tautomeric form and exhibits both absorption and fluorescence solvatochromism, large stokes shift, two electron quasireversible redox behaviour and good thermal stability, with a glass transition temperature of 104oC. The third-order non-linear optical character was studied using open aperture Z-scan methodology employing 7 ns pulses at 532 nm. The third-order non-linear absorption coefficient, b, was 1.48 x 10-6 cm W-1 and the imaginary part of the third-order non-linear optical susceptibility, Im c(3), was 3.36 x10-10 esu. The optical limiting threshold for the compound was found to be 340 MW cm-2.

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The Schiff base, 3-hydroxyquinoxaline-2-carboxalidine-4-aminoantipyrine, was synthesized by the condensation of 3-hydroxyquinoxaline-2-carboxaldehyde with 4-aminoantipyrine. HPLC, FT-IR and NMR spectral data revealed that the compound exists predominantly in the amide tautomeric form and exhibits both absorption and fluorescence solvatochromism, large stokes shift, two electron quasireversible redox behaviour and good thermal stability, with a glass transition temperature of 104 oC. The third-order non-linear optical character was studied using open aperture Z-scan methodology employing 7 ns pulses at 532 nm. The third-order non-linear absorption coefficient, b, was 1.48 x 10-6 cm W-1 and the imaginary part of the third-order non-linear optical susceptibility, Im c(3), was 3.36x10-10 esu. The optical limiting threshold for the compound was found to be 340 MW cm-2.

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Dept.of Applied Chemistry,Cochin University of Science and Technology

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In the present study a detailed investigation on the alterations of dopamine and its receptors in the brain regions of streptozotocin induced diabetic and insulin induced hypoglycaemic rats were carried out. Glutamate receptor, NMDARI gene expression in the hypoglycaemic and hyperglycaemic brain was also studied. EEG recording in hypoglycaemic and hyperglycaemic will be carried out to measure brain activity. in vitro studies on glucose uptake and insulin secretion, with and without specific antagonists were carried out to confirm the specific receptor subtypes - DA D1, DA D2 and NMDA involved in the functional regulation during hyperglycaemic and hypoglycaemic brain damage. The molecular studies on the brain damage through dopaminergic and glutamergic receptors will elucidate the therapeutic role in the corrective measures of the damage to the brain during hypoglycaemia and hyperglycaemia. This has importance in the management of diabetes and antidiabetic treatment for better intellectual functioning of the individual.