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59 results for “Bionomy”
Fig. 27–32 in Latvian Molytinae (Coleoptera, Curculionidae): Research History, Fauna And Bionomy
Fig. 27–32. Pronotum, dorsal view: 27 – Pissodes piceae, 28 – P. pini, 29 – P. castaneus, 30 – P. harcyniae, 31 – P. validirostris, 32 – P. piniphilus.
Fig. 9–17 in Latvian Molytinae (Coleoptera, Curculionidae): Research History, Fauna And Bionomy
Fig. 9–17. Molytinae, habitus, dorsal view: 9 – Pissodes piceae (after Borowiec 2007), 10 – P. pini, 11 – P. castaneus, 12 – P. harcyniae, 13 – Anoplus roboris, 14 – Anoplus plantaris, 15 – Trachodes hispidus, 16 – Pissodes piniphilus, 17 – P. validirostris.
Fig. 18–26 in Latvian Molytinae (Coleoptera, Curculionidae): Research History, Fauna And Bionomy
Fig. 18–26. Molytinae: 18 - Hylobius transversovittatus, rostrum and antennae, 19 – Pissodes harcyniae, rostrum and antennae, 20 – Anoplus sp., protarsus, 21 – Hylobius sp., protarsus, 22 – Hylobius abietis, apex of rostrum, dorsal view, 23 – Lepyrus palustris, apex of rostrum, dorsal view, 24 – Hylobius transversovittatus, antenna, 25 – Hylobius pinastri, antenna, 26 – Hylobius abietis, antenna.
Fig. 1–8 in Latvian Molytinae (Coleoptera, Curculionidae): Research History, Fauna And Bionomy
Fig. 1–8. Molytinae, habitus, dorsal view: 1 – Liparus glabrirostris, 2 – L. coronatus, 3 – Hylobius abietis, 4 – H. excavatus, 5 – H. pinastri, 6 – Lepyrus palustris, 7 – L. capucinus, 8 – Hylobius transversovittatus.
Fig. 4 in Bionomy of two flies of sanitary and forensic importance: Peckia (Sarcodexia) lambens (Wiedemann) and Oxysarcodexia amorosa (Schiner) (Diptera, Sarcophagidae)
Fig. 4. Number of larvae deposited on putrefied ground beef throughout the experiment per female of Oxysarcodexia amorosa kept under laboratory conditions (27 ± 1 ◦ C, 60 ± 10% RH with 12 h of photophase).
Fig. 2 in Bionomy of two flies of sanitary and forensic importance: Peckia (Sarcodexia) lambens (Wiedemann) and Oxysarcodexia amorosa (Schiner) (Diptera, Sarcophagidae)
Fig. 2. Number of larvae deposited on putrefied ground beef throughout the experiment per female of Peckia (Sarcodexia) lambens kept under laboratory conditions (27 ± 1 ◦ C, 60 ± 10% RH with 12 h of photophase).
Fig. 7 in Biometry of neotropical invertebrates inhabiting floodplain rivers: unraveling bionomy
Fig. 7. Differences in slopes obtained for lineal regressions of mollusks with and without shells. Invertebrates were collected in the Paraná River floodplain from 2005 through 2014.
Fig. 1 in Biometry of neotropical invertebrates inhabiting floodplain rivers: unraveling bionomy
Fig. 1. Lower to higher fit level (R2) for the lineal models on metric-DW variation of invertebrates. The pie-chart shows the proportion (%) of values that fall within each R2 category. Invertebrates were collected in the Paraná River floodplain from 2005 through 2014.
Fig. 2-5 in Biometry of neotropical invertebrates inhabiting floodplain rivers: unraveling bionomy
Fig. 2-5. Dispersion plots and lineal curves on L-DW regressions for (2) oligochaetes, (3) mollusks, (4) insects and (5) all invertebrates together. For Planorbidae L=D and for Ampullariidae L= H. In Fig. 5 only apple snails H-DW were considered within "Gastropoda" and only Corbiculidae and Hyriidae (and not Sphaeriidae) were considered within "Bivalvia". Invertebrates were collected in the Paraná River floodplain from 2005 through 2014.
Fig. 6 in Biometry of neotropical invertebrates inhabiting floodplain rivers: unraveling bionomy
Fig. 6. Fit levels obtained from freshwater invertebrates metric-DW lineal regressions. L= length, W= width and other metrics= "W" for clams, "D2" for apple snails and "Tibia" for mayflies. Invertebrates were collected in the Paraná River floodplain from 2005 through 2014.
Fig. 9 in Biometry of neotropical invertebrates inhabiting floodplain rivers: unraveling bionomy
Fig. 9. Box-plot of invertebrates AFDW/DW. Significance values (p) of Mann-Whitney pairwise comparisons are showed on the lower-right side. P-values: * p= 0.01-0.05; ** p<0.01-0.001; *** p<0.001. Invertebrates were collected in the Paraná River floodplain from 2005 through 2014.
Fig. 8 in Biometry of neotropical invertebrates inhabiting floodplain rivers: unraveling bionomy
Fig. 8. Values of slopes (=b) of regression equations obtained for metrics-DW relationships. Invertebrates were collected in the Paraná River floodplain from 2005 through 2014.
Figure 4 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 4. Coleoptera Immature Collection (CIC-MZUSP). (A) Notebook with daily records of Coleoptera immatures in the laboratory; (B-D) Sergio Ide, Leopoldina Pascher and Adriana Pires working on the collection; (E) Sônia Casari and Maria Eulina Jorge; (F) Adriana Pires and Sergio Ide; (G) Cleide Costa and Wanessa Zorzan; (H) Cabinets of the Coleoptera Immature Collection-MZUSP.
Figure 3 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 3. Cleide Costa's drawing process. (A) Drafts to final art of adult and larva of Glyptolopus quadricostatus Heinze, 1944 (Cerylonidae), from Costa et al., 1996. (B) Pencil draft and final art of Scraptia triangularis Champion, 1916 (Scraptiidae), from Vanin et al., 1996.
Figure 2 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 2. Correspondences between Dr.Cleide Costa and Dr. Ubirajara Martins during her first studies of beetles.These letters were the beginning of their contributions.
Figure 1 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 1. Cleide Costa working at the Museu de Zoologia da Universidade de São Paulo. (A) Dr. Cleide Costa; (B) Cleide working on the Elateridae collection, June 1972; (C) Cleide working with Wanessa Zorzan, 1980; (D) Cleide and Sergio Vanin, May 1993; (E) Cleide and the MZUSP team at the inauguration of the new facilities of Boracéia Biological Station, August, 1996; (F) Cleide, currently working at the MZUSP; (G) Tribute from the MZUSP for Cleide's "50 years of outstanding performance, dedication, ethics and love for the research and teaching", Marcos Tavares, Cleide Costa, Sônia Casari, Sergio Vanin and Simone Rosa.
Figure 5 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 5. Cleide Costa at fieldwork. (A-E) Expedition to Parque Nacional das Emas, Goiás, to search for bioluminescent Elateridae, March-April 1984; (A-D) Collecting elaterid larvae from termite molds; (E) Cleide standing higher to photograph the vastness of luminous termite mounds in central Brazil; (F) Francisco de Abreu, Lázaro Silva, SergioVanin, Sônia Casari, andWanessa Zorzan at Peruíbe (São Paulo), December 1980; (G) Cleide Costa searching for Coleoptera larvae in decayed tree trunks, Peruíbe (São Paulo), December 1984; (H) Cleide Costa, Sônia Casari and Wanessa Zorzan at Peruíbe (São Paulo), April 1981; (I) Édson Teixeira searching for Cneoglossa edsoni Costa, Vanin & Ide, 1999 in their type-locality, Parque Estadual da Cantareira, São Paulo, 1992; (J) Sergio Ide, Cleide Costa and Sônia Casari at Costa Rica (Mato Grosso do Sul), December 1987; (K) Francisco de Abreu,Wanessa Zorzan, Sônia Casari, Luis Roberto Fontes, Sergio Vanin and Lázaro Silva at Peruíbe, (São Paulo), July 1981; (L) Cleide Costa on a ferry, crossing the Paraná River, between São Paulo and Mato Grosso do Sul, 1984.
Figure 6 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 6. Cleide Costa et al. Present and late colleagues and friends. (A) Cleide and Ubirajara Martins; (B) Cleide, Ubirajara Martins, SergioVanin and Nelson Papavero; (C) Carlos Estevão Simonka, Sergio Ide and Cleide Costa at the release of book Insetos Imaturos: Metamorfose e Identificação, May 2006; (D) Fieldwork team at Parque Nacional das Emas (Goiás): José Sanches, two field assistants, Etelvino Bechara, Sônia Casari, Cleide Costa and Dalton Amorim, March 1984; (E) Hans Reichardt, June 1972; (F) Cleide Costa, John Lawrence and the students of the Lawrence's Coleoptera Course, MZUSP, August 2000; (G) The MZUSP Coleoptera team and visitors: Luiz Roberto Fontes, Gabriel Biffi, Bruno Zilberman, Francisco Nacimento, Antonio Santos-Silva, Juares Fuhrmann, Rafael Sousa, Thiago Polizei, Letizia Migliore, Juan Pablo Botero, Cleide Costa, Sergio Vanin, Eugenio Nearns (USA) and Sônia Casari, July 2018; (H) Etelvino Bechara, Sônia Casari, Vadin Viniani, Cleide Costa, Dilma Solange Napp and Walter Wittmer (Switzerland), October 1994; (I) Seiroku Sakai (Japan), Cleide Costa, José Luis Leme and Maria Regina Ferreira, September 1991.
Figure 8 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 8. Cleide Costa and her students. (A) Maria Eulina Jorge da Silva; (B) Sergio Ide, Sergio Vanin, Cleide Costa and Sônia Casari; (C) Claudio Ruy V. da Fonseca; (D) Flávia Rodrigues Fernandes; (E) Felipe Barbosa, Hingrid Yara Quintino, Vinicius Ferreira, Cleide Costa and Simone Rosa. Photos from personal archive.
Figure 7 in Systematics, bionomy, and metamorphosis of Coleoptera (Insecta): Papers celebrating the 80 birthday of Cleide Costa
Figure 7. Cleide Costa et al. Cleide at national and international conferences and events. (A) Symposium/Workshop on the higher classification of Coleoptera, Detroit, USA, December 1983; (B) Coleoptera Larvae Workshop, Honolulu, USA, June 1991; (C) PrIBES 2000, São Paulo, February 2001; (D) International Insect Fair, Prague, Czech Republic, October 2013; (E) Marcela Monné, Cibele Stramare Ribeiro-Costa, Lúcia Massutti Almeida, Cleide Costa and Luciana Marinoni, III Symposium of Coleoptera, XXX Brazilian Congress of Zoology, Porto Alegre, February 2014; (F) Immature Beetle Meeting 2017, Prague, Czech Republic, October 2017; (G) Robin Kundrata and Cleide Costa at Prague, Czech Republic, October 2017. Figure F from Seidel et al., 2017.
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