999 resultados para Wells, H. G
Resumo:
Comprend : [ Planche 1 ] Pritanée de la 1ère classe. [ Monument public républicain. XVIIIè siècle.] Dessinée par J. Molinos et Le Grand. Gravée par Poulleau. 1791. [ Cote : BNF C 103551. ] ; [ Planche 2. ] Pritanée de 2ème classe. [ Monument public républicain. XVIIIè siècle.] Dessinée par J. Molinos et Le Grand, gravée par Poulleau, 1791. [ Cote : BNF C 103552. ] ; [ Planche 3. ] Printanée de la 3ème classe. [ Monument public républicain. XVIIIè siècle.] Dessinée par J. Molinos et Le Grand, 1791. Gravée par Poulleau. [ Cote : BNF C 103553. ] ; [ Planche 4. ] Projet de pritanée à élever sur les ruines de la Bastille. [ Monument public républicain. XVIIIè siècle.] Dessinée par J. Molinos et Le Grand, 1791. Gravée par Poulleau. [ Cote : BNF C 103554. ] ; [ Planche 5. ] Projet d'une salle pour l'Assemblée Nationale dans les nouvelles constructions destinées à la Madeleine de la Ville l'Evêque. [ Monument public républicain. XVIIIè siècle.] Dessinée par J. Molinos et Le Grand, 1791. [ Cote ; [ Planche 6. ] Elévation du Palais National. [ Monument public républicain. XVIIIè siècle.] Dessinée par Le Grand et J.Molinos, 1791. Gravée par Poulleau. [ Cote : BNF C 103556. ] ; [ Planche 7. ] Plan général du Palais National. [ Monument public républicain. XVIIIè siècle.] Dessinée par Molinos et Le GRand, 1791. Gravée par Poulleau. [ Cote : BNF C 103557. ] ; [ Planche 8. ] Coupe de la longueur du Palais National. [ Monument public républicain. XVIIIè siècle.] Dessinée par Molinos et Le Grand. Gravée par Poulleau. [ Cote : BNF C 103558. ] ; [ Planche 9. ] Projet du Cirque National. [ Monument public républicain. XVIIIè siècle.] Dessinée par Molinos et Le Grand, 1791. Gravée par Poulleau. [ Cote : BNF C 103559. ] ; [ Planche 10. ] Projet du Museum, [ ancien Palais du Louvre. Monument public républicain. XVIIIè siècle.] Dessinée par Molinos et Le Grand, 1791. Gravée par Poulleau. [ Cote : BNF C 103560. ] ; [ Planche 11. ] Distribution du Louvre pour l'Institut National. [ Monument public républicain. XVIIIè siècle.] Dessinée par Molinos et Le Grand, 1791. Gravée par Poulleau. [ Cote : BNF C 103561. ] ; [ Planche 12. ] Plan général du Louvre et des Tuileries [ vers 1791. ] Dessinée par Molinos et Le Grand, 1791. [ Cote : BNF C 103562. ]
Resumo:
In patients with venous thromboembolism (VTE), assessment of the risk of fatal recurrent VTE and fatal bleeding during anticoagulation may help to guide intensity and duration of therapy. We aimed to provide estimates of the case-fatality rate (CFR) of recurrent VTE and major bleeding during anticoagulation in a 'real life' population, and to assess these outcomes according to the initial presentation of VTE and its etiology. The study included 41,826 patients with confirmed VTE from the RIETE registry who received different durations of anticoagulation (mean 7.8 ± 0.6 months). During 27,110 patient-years, the CFR was 12.1% (95% CI, 10.2-14.2) for recurrent VTE, and 19.7% (95% CI, 17.4-22.1) for major bleeding. During the first three months of anticoagulant therapy, the CFR of recurrent VTE was 16.1% (95% CI, 13.6-18.9), compared to 2.0% (95% CI, 0-4.2) beyond this period. The CFR of bleeding was 20.2% (95% CI, 17.5-23.1) during the first three months, compared to 18.2% (95% CI, 14.0-23.2) beyond this period. The CFR of recurrent VTE was higher in patients initially presenting with PE (18.5%; 95% CI, 15.3-22.1) than in those with DVT (6.3%; 95% CI, 4.5-8.6), and in patients with provoked VTE (16.3%; 95% CI, 13.6-19.4) than in those with unprovoked VTE (5.5%; 95% CI, 3.5-8.0). In conclusion, the CFR of recurrent VTE decreased over time during anticoagulation, while the CFR of major bleeding remained stable. The CFR of recurrent VTE was higher in patients initially presenting with PE and in those with provoked VTE.
Resumo:
The interplay between Rashba, Dresselhaus, and Zeeman interactions in a quantum well submitted to an external magnetic field is studied by means of an accurate analytical solution of the Hamiltonian, including electron-electron interactions in a sum-rule approach. This solution allows us to discuss the influence of the spin-orbit coupling on some relevant quantities that have been measured in inelastic light scattering and electron-spin resonance experiments on quantum wells. In particular, we have evaluated the spin-orbit contribution to the spin splitting of the Landau levels and to the splitting of charge- and spin-density excitations. We also discuss how the spin-orbit effects change if the applied magnetic field is tilted with respect to the direction perpendicular to the quantum well.
Resumo:
The interplay between Rashba, Dresselhaus, and Zeeman interactions in a quantum well submitted to an external magnetic field is studied by means of an accurate analytical solution of the Hamiltonian, including electron-electron interactions in a sum-rule approach. This solution allows us to discuss the influence of the spin-orbit coupling on some relevant quantities that have been measured in inelastic light scattering and electron-spin resonance experiments on quantum wells. In particular, we have evaluated the spin-orbit contribution to the spin splitting of the Landau levels and to the splitting of charge- and spin-density excitations. We also discuss how the spin-orbit effects change if the applied magnetic field is tilted with respect to the direction perpendicular to the quantum well.