965 resultados para Reid, Thomas, 1710-1796.


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Ce ms. a appartenu à l'humaniste Jean Lebègue (1368-1457). Au f. 1, Jean Lebègue a tracé sa signature cryptographique V363713 et au f. 122v son anagramme. A la fin du XVe s., un certain Chefdeville, dont la signature se lit en transparence sur la garde collée du contreplat inf., possédait ce ms. (cf. G. Ouy). Il est ensuite passé dans les collections de la bibliothèque de la cathédrale Notre-Dame de Paris. Au contreplat sup. figure la signature de Claude Joly, chantre de Notre-Dame, suivie de la date "maio 1654" et au f. 1 l'ex-libris "A la bibliotheque de l'Eglise de Paris", précédé de la cote M14 (XVIIe s.). Notre-Dame.

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Este Relatório sobre a Saúde no Mundo foi produzido sob a direcção geral de Carissa Etienne, Assistente do Director-Geral, Sistemas e Serviços de Saúde e Anarfi Asamoa-Baah, Director Geral Adjunto. Os redactores principais froam David B Evans, Riku Elovainio e Gary Humphreys; com contribuições de Daniel Chisholm, Joseph Kutzin, Sarah Russell, Priyanka Saksena e Ke Xu. Contribuições sob a forma de caixas de texto e análises foram fornecidos por: Ole Doetinchem, Adelio Fernandes Antunes, Justine Hsu, Chandika K. Indikadahena, Jeremy Lauer, Nathalie van de Maele, Belgacem Sabri, Hossein Salehi, Xenia Scheil-Adlung (ILO) and Karin Stenberg. Sugestões e comentários foram recebidos dos Directores Regionais, Assistentes do Director-Geral e respectivas equipas. Análises, dados e revisões da organização do texto, vários rascunhos ou secções específicas foram fornecidos por (em adição às pessoas jáacima mencionadas): Dele Abegunde, Michael Adelhardt, Hector Arreola, Guitelle Baghdadi-Sabeti, Dina Balabanova, Dorjsuren Bayarsaikhan, Peter Berman, Melanie Bertram, Michael Borowitz, Reinhard Busse, Alexandra Cameron, Guy Carrin, Andrew Cassels, Eleonora Cavagnero, John Connell, David de Ferranti, Don de Savigny, Varatharajan Durairaj, Tamás Evetovits, Josep Figueras, Emma Fitzpatrick, Julio Frenk, Daniela Fuhr, Ramiro Guerrero, Patricia Hernandez Pena, Hans V Hogerzeil, Kathleen Holloway, Melitta Jakab, Elke Jakubowski, Christopher James, Mira Johri, Matthew Jowett, Joses Kirigia, Felicia Knaul, Richard Laing, Nora Markova, Awad Mataria, Inke Mathauer, Don Matheson, Anne Mills, Eduardo Missoni, Laurent Musango, Helena Nygren-Krug, Ariel Pablos-Mendez, Anne-Marie Perucic, Claudia Pescetto, Jean Perrot, Alexander Preker, Magdalena Rathe, Dag Rekve, Ritu Sadana, Rocio Saenz, Thomas Shakespeare, Ian Smith, Peter C Smith, Alaka Singh, Ruben Suarez Berenguela, Tessa Tan-Torres Edejer, Richard Scheffler, Viroj Tangcharoensathien, Fabrizio Tediosi, Sarah Thomson, Ewout van Ginneken, Cornelis van Mosseveld e Julia Watson. A redacção do Relatório foi informada por muitos indivíduos de várias instituições que forneceram documentos de suporte; estes documentos de suporte podem ser encontrados em: http://www.who.int/healthsystems/topics/financing/healthreport/whr_background/en Michael Reid editou as cópias do Relatório, Gaël Kernen produziu as figuras e Evelyn Omukubi forneceu o valioso apoio secretarial e administrativo. O desenho e paginação foi feito por Sophie Guetaneh Aguettant e Cristina Ortiz. Ilustração por Edel Tripp (http://edeltripp.daportfolio.com). A tradução foi realizada por Jorge Cabral e Aurélio Floriano e revista por Aurélio Floriano e Paulo Ferrinho, do Instituto de Higiene e Medicina Tropical, da Universidade Nova de Lisboa - Lisboa, Portugal. A publicação foi produzida com o apoio da Comunidade dos Países de Língua Portuguesa (CPLP), sob autorização do Director Geral da Organização Mundial da Saúde (OMS). As informações contidas neste Relatório não podem, de forma alguma, ser tomadas como a expressão das posições da CPLP

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Searching and handling time of Chrysoperla externa (Hagen, 1861) (Neuroptera, Chrysopidae) larvae fed on Uroleucon ambrosiae (Thomas, 1878) (Hemiptera, Aphididae). The objective of this research was to determine the searching and handling times of three larval instars of C. externa fed on U. ambrosiae at densities of 30, 40 and 50 per vial, with the feeding of the larvae at the preceding instars being U. ambrosiae nymphs or Sitotroga cerealella (Olivier, 1819) eggs. The larvae were maintained at 25 ± 2 ºC, 70 ± 10% RH and a 14-h photophase. A completely randomized design in a 6 x 3 factorial scheme with 12 replicates was adopted. The shortest searching time was found for the 2nd and 3rd instar larvae of C. externa, and this parameter was variable depending on the feeding given to the larvae previously. The handling time was similar for the 1st, 2nd and 3rd instar larvae. The longest searching time was found at an aphid density of 30, as compared to densities of 40 and 50 prey, with which there were no significant differences. Prey density did not have any influence on handling time.

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Feeding potential of Chrysoperla externa (Hagen) (Neuroptera, Chrysopidae) in different densities of Uroleucon ambrosiae (Thomas) (Hemiptera, Aphididae). The feeding potential of 2nd and 3rd instar larvae of Chrysoperla externa (Hagen, 1861) in relation to different densities of 30, 40 and 50 nymphs of Uroleucon ambrosiae (Thomas, 1878) at 3rd and 4th instars was evaluated. The treatments were individualized into 2.5 cm in diameter and 8.5 cm tall flat bottom glass vials and maintained in a controlled environmental chamber at 25±2 ºC temperature, 70±10% RH and 14 h photophase. A completely randomized experimental design with 10 replications was used. The consumption of the prey nymphs by the predator larvae was evaluated after 1, 2, 4, 8, 16 and 24 h from the beginning of the experiment and at every subsequent 24 h period until 2nd instar larvae molted or 3rd instar larvae pupated. Results have shown that for 2nd instar larvae, during the 1 h to 24 h period, there was a decreasing prey consumption at the 30 and 40 prey densities. However an increase in the consumption at the 50 prey density was observed. After this period, C. externa larvae presented a progressive increase on nymphs consumption as a function of the prey density. The same occurred with de 3rd instar predator larvae in all treatments. When daily mean consumption was evaluated the predator/prey ratio was 1:23, 1:27 and 1:33 for 2nd instar larvae and 1:27, 1:33 and 1:41 for 3rd instar larvae at 30, 40 and 50 nymph densities, respectively.