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10 results for “D. Carlos I”
Les architectures brisées de Jean-Luc Lagarce. «Turandot», d'après Carlo Gozzi et Giacomo Puccini
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EOS-DATA-2016-01: Monte Carlo Pseudo Events for the Decays Bbar -> P mu X_nubar, P = D,pi
<p>This archive EOS-DATA-2016-01 contains pseudo events of the decays</p> <p> Bbar -> P mu X_nubar</p> <p>where X_nubar is either nubar or (nubar nu nubar), and P = D or pi. The archive<br /> complements the publication EOS-2016-01. The events are stored as binary files<br /> in the HDF5 format.</p>
FIGURE. Drosera tomentosa (a–d): a, rosette; b, rosette and base of inflorescences of D. tomentosa var. glabrata (Serra do Cipó, MG); c, inflorescence of the "type morphotype" of D. tomentosa (Chapada Diamantina, BA); d, inflorescence with open flower of the "glabrate morphotype" of D. tomentosa, side view (Diamantina, MG). Drosera villosa (e, f): e, habit; f, flower (Parque Estadual da Serra Negra da Mantiqueira, MG). Drosera viridis (g–i): g, rosettes of D. viridis (bottom) and D. communis (single plant, top; Imbituva, PR); h, leaf, detail (Piraquara, PR); i, flower (Balsa Nova, PR). Photo credits: a, b, d–f by PMG; c by FR; g–i by Carlos Rohrbacher. in A synopsis of the genus Drosera (Droseraceae) in Brazil
FIGURE. Drosera tomentosa (a–d): a, rosette; b, rosette and base of inflorescences of D. tomentosa var. glabrata (Serra do Cipó, MG); c, inflorescence of the "type morphotype" of D. tomentosa (Chapada Diamantina, BA); d, inflorescence with open flower of the "glabrate morphotype" of D. tomentosa, side view (Diamantina, MG). Drosera villosa (e, f): e, habit; f, flower (Parque Estadual da Serra Negra da Mantiqueira, MG). Drosera viridis (g–i): g, rosettes of D. viridis (bottom) and D. communis (single plant, top; Imbituva, PR); h, leaf, detail (Piraquara, PR); i, flower (Balsa Nova, PR). Photo credits: a, b, d–f by PMG; c by FR; g–i by Carlos Rohrbacher.
Supplementary material 1 from: Bartolucci F, Domina G, Ardenghi NMG, Bacchetta G, Bernardo L, Buccomino G, Buono S, Caldararo F, Calvia G, Carruggio F, Cavagna A, D'Amico FS, Di Carlo F, Festi F, Forte L, Galasso G, Gargano D, Gottschlich G, Lazzaro L, Magrini S, Maiorca G, Medagli P, Mei G, Mennini F, Mereu G, Miserocchi D, Olivieri N, Passalacqua NG, Pazienza G, Peruzzi L, Prosser F, Rempicci M, Roma-Marzio F, Ruggero A, Sani A, Saulle D, Steffanini C, Stinca A, Terzi M, Tondi G, Trenchi M, Viciani D, Wagensommer RP, Nepi C (2018) Notulae to the Italian native vascular flora: 6. Italian Botanist 6: 45-64. https://doi.org/10.3897/italianbotanist.6.30575
Supplementary data : Explanation note: 1. Nomenclature updates; 2. Distribution updates; 3. Synonyms, misapplied or included names.
Figure 4 from: Silva AS, Pitta Groz M, Leandro P, Assis CA, Figueira R (2018) Ichthyological collection of the Museu Oceanográfico D. Carlos I. ZooKeys 752: 137-148. https://doi.org/10.3897/zookeys.752.20086
Figure 4 Geographic area covered by the collection (in darker blue). Plots indicate sites for the 29 georeferenced records.
Figure 3 from: Silva AS, Pitta Groz M, Leandro P, Assis CA, Figueira R (2018) Ichthyological collection of the Museu Oceanográfico D. Carlos I. ZooKeys 752: 137-148. https://doi.org/10.3897/zookeys.752.20086
Figure 3 Temporal profile of the sampling years of the specimens held in the ichthyological collection. Blue dots represent sampling years for each order, for which, in parentheses, the number of specimens is provided. The red curve shows the number of specimens collected per year.
Figure 2 from: Silva AS, Pitta Groz M, Leandro P, Assis CA, Figueira R (2018) Ichthyological collection of the Museu Oceanográfico D. Carlos I. ZooKeys 752: 137-148. https://doi.org/10.3897/zookeys.752.20086
Figure 2 Number and percentage of the orders represented in the dataset. Only the orders with at least 15 specimens are labelled.
Figure 1 from: Silva AS, Pitta Groz M, Leandro P, Assis CA, Figueira R (2018) Ichthyological collection of the Museu Oceanográfico D. Carlos I. ZooKeys 752: 137-148. https://doi.org/10.3897/zookeys.752.20086
Figure 1 Number and percentage of the classes represented in the dataset.
Data set from De Carlo M, Testa L, Leoncini M, Nicolini E, Varbella F, Cortese B, Ribichini F, Bartorelli AL, Calabria P, Indolfi C, Tomai F, Loi B, Fischietti D, Tarantini G, Bedogni F, Petronio AS. Two-year clinical outcomes of the "Italian diffuse/multivessel disease absorb prospective registry" (IT-DISAPPEARS). Int J Cardiol. 2019 Sep 1;290:21-26. doi: 10.1016/j.ijcard.2019.04.095. Epub 2019 May 3. PMID: 31104821.
<p>Data set from De Carlo M, Testa L, Leoncini M, Nicolini E, Varbella F, Cortese B, Ribichini F, Bartorelli AL, Calabria P, Indolfi C, Tomai F, Loi B, Fischietti D, Tarantini G, Bedogni F, Petronio AS. Two-year clinical outcomes of the "Italian diffuse/multivessel disease absorb prospective registry" (IT-DISAPPEARS). Int J Cardiol. 2019 Sep 1;290:21-26. doi: 10.1016/j.ijcard.2019.04.095. Epub 2019 May 3. PMID: 31104821.</p> <p> </p> <p>This is the abstract:</p> <p><strong>Background: </strong>Large prospective studies on the use of bioresorbable vascular scaffolds (BVS) for diffuse coronary artery disease are lacking. IT DISAPPEARS is a large multicentre prospective registry investigating the short and long-term outcomes of everolimus-eluting BVS in patients with long coronary lesions and/or multivessel coronary artery disease (ClinicalTrials.gov: <a href="http://clinicaltrials.gov/show/NCT02004730">NCT02004730</a>). We hereby report the 2-year outcomes of the registry.</p> <p><strong>Methods: </strong>We enrolled 1002 patients with complex lesions undergoing implantation of 2040 BVS with a prespecified technique including predilation, correct sizing, and postdilation with non-compliant balloons. The primary endpoint was the rate of device-oriented composite endpoint (DOCE), consisting of cardiac death, target vessel-related myocardial infarction (MI), and ischaemia-driven target lesion revascularization (TLR). Secondary endpoints included: 1) patient-oriented composite endpoint (POCE), consisting of all-cause mortality, all infarctions and all revascularisations; 2) definite/probable scaffold thrombosis.</p> <p><strong>Results: </strong>Clinical presentation was an acute coronary syndrome in 59.8% of patients. Total BVS length implanted was 47 ± 22 mm. Postdilation of all scaffolds per patient was performed in 96.8%, while optimal implantation as per study guidelines was applied in 71.4%. Through 2-year follow-up, DOCE occurred in 9.5% of patients (cardiac death 0.6%, target vessel-related MI 5.3%, TLR 6.6%). The rate of POCE was 16.6% and of scaffold thrombosis 1.1%. Female gender, total length of coronary lesions, treatment of bifurcation lesions and use of 2.5 mm scaffolds were independent predictors of DOCE.</p> <p><strong>Conclusions: </strong>The 2-year results of IT-DISAPPEARS show that BVS may yield acceptable clinical outcomes in patients with complex coronary lesions when the implantation technique is appropriate.</p> <p> </p>
REPLACED: EOS-DATA-2016-01: Monte Carlo Pseudo Events for the decays Bbar -> P mu X_nubar, P = D,pi
<p>This dataset has been replaced after an error in the original analytical calculation has been uncovered.</p> <p>This archive EOS-DATA-2016-01 contains pseudo events of the decays</p> <p> Bbar -> P mu X_nubar</p> <p>where X_nubar is either nubar or (nubar nu nubar), and P = D or pi. The archive<br /> complements the publication EOS-2016-01. The events are stored as binary files<br /> in the HDF5 format.</p>
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