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248 results for “319”
Figure 8 from: Machado M, Guzati C, Viecelli R, Molina-Gómez D, Teixeira RA (2019) A taxonomic review of the crab spider genus Sidymella (Araneae, Thomisidae) in the Neotropics. Zoosystematics and Evolution 95(2): 319-344. https://doi.org/10.3897/zse.95.34958
Figure 8 Female of Sidymellakolpogastera habitus, dorsal b prosoma, anterior c, e epigynum, ventral d, f epigynum, dorsal.
Figure 3 from: Schwerk A, Szyszko J (2011) Model of succession in degraded areas based on carabid beetles (Coleoptera, Carabidae). ZooKeys 100: 319-332. https://doi.org/10.3897/zookeys.100.1534
Figure 3 - Model graphs based on the parameters in Table 1 for the relationship between MIB values (mg) and age of stands for the first 60 years in A planted stands on forest soil, B naturally regenerated stands on post-agricultural soil, C planted stands on post-agricultural soil, D stands on ash heap, and E stands on mining heap (Open circles indicate that MIB was calculated from less than 25 individuals; broken lines indicate that the respective part of the graph cannot be verified due to a lack of data).
Figure 2 from: Schwerk A, Szyszko J (2011) Model of succession in degraded areas based on carabid beetles (Coleoptera, Carabidae). ZooKeys 100: 319-332. https://doi.org/10.3897/zookeys.100.1534
Figure 2 - Schematic illustration of the model. Succession starts from an 'initial degradation level', followed by a facultative 'delay phase' (characterized by the time of 'delay'). The optional 'delay phase' is followed by an 'increase phase' (characterized by the 'increase rate'), and a 'stagnation phase' in which the succession process runs towards a 'recovery level'. The type of area, origin of vegetation, and landscape-related aspects are assumed to influence the trajectory of succession.
Figure 1 from: Schwerk A, Szyszko J (2011) Model of succession in degraded areas based on carabid beetles (Coleoptera, Carabidae). ZooKeys 100: 319-332. https://doi.org/10.3897/zookeys.100.1534
Figure 1 - Relationship between MIB values (mg) and age of stands in A planted stands on forest soil (r = 0.343, p <0.05), B naturally regenerated stands on post-agricultural soil (r = 0.677, p <0.001), C planted stands on post-agricultural soil (r = 0.238, p <0.001), D stands on ash heap (r = 0.025, n.s.) and E stands on mining heap (r = 0.839, p <0.001) (Open circles indicate that MIB was calculated from less than 25 individuals).
Figures 319-324 from: Burks R, Masner L, Johnson N, Austin A (2013) Systematics of the parasitic wasp genus Oxyscelio Kieffer (Hymenoptera, Platygastridae s.l.), part II: the Australian and southwest Pacific fauna. ZooKeys 331: 1-266. https://doi.org/10.3897/zookeys.331.5152
Figures 319-324 - Oxyscelio sepisessor sp. n., holotype female (OSUC 438936) 319 Head and mesosoma, lateral view 320 Head and mesosoma, dorsal view 321 Metasoma, dorsal view. Paratype female (OSUC 227542) 322 Head, anterior view. Paratype male (OSUC 438946) 323 Antenna 324 Metasoma, dorsal view. Morphbank88
Figure 5 from: Grozeva S, Popov A, Simov N (2013) Sixth European Hemiptera Congress. ZooKeys 319: 1-10. https://doi.org/10.3897/zookeys.319.5975
Figure 5 - Rewarding ceremony of the winners of Michail Josifov awards, 26 June 2012, from left to right: Ondřej Balvín, Qiang Xie, Vikas Suman (the winners in the competition), Alexi Popov, Milena Josifova, Nikolay Simov. Portrait of Michail Josifov on the wall. Photo: Ilia Gjonov.
Figure 4 from: Grozeva S, Popov A, Simov N (2013) Sixth European Hemiptera Congress. ZooKeys 319: 1-10. https://doi.org/10.3897/zookeys.319.5975
Figure 4 - Opening ceremony of the Congress, 25 June 2012, from left to right: Alexi Popov, Matija Gogala, Ernst Heiss, Sakis Drosopoulos.
Figure 1 from: Grozeva S, Popov A, Simov N (2013) Sixth European Hemiptera Congress. ZooKeys 319: 1-10. https://doi.org/10.3897/zookeys.319.5975
Figure 1 - Participants in the Sixth European Hemiptera Congress in front of Scaptopara building, Blagoevgrad, Bulgaria, 26 June 2012. Photo: Werner Holzinger.
Figures 29-36 from: Fan Z, Liu G (2013) The genus Cahara Ghauri, 1978 of China (Hemiptera, Heteroptera, Pentatomidae, Halyini) with descriptions of two new species. ZooKeys 319: 37-50. https://doi.org/10.3897/zookeys.319.4275
Figures 29-36 - Cahara tibetana Zheng & Liu. 29–31 Pygophore (29 ventral view, 30 dorsal view, 31 caudal view) 32–33 Paramere (32 lateral view, 33 caudal view) 34–35 Aedeagus (34 ventral view, 35 lateral view) 36 Female genitalia.
Figures 21-28 from: Fan Z, Liu G (2013) The genus Cahara Ghauri, 1978 of China (Hemiptera, Heteroptera, Pentatomidae, Halyini) with descriptions of two new species. ZooKeys 319: 37-50. https://doi.org/10.3897/zookeys.319.4275
Figures 21-28 - Cahara nodula sp. n. 21–23 Pygophore (21 ventral view, 22 dorsal view, 23 caudal view) 24–25 Paramere (24 lateral view, 25 caudal view) 26–27 Aedeagus (26 ventral view, 27 lateral view). 28 Female genitalia.
Figures 13-20 from: Fan Z, Liu G (2013) The genus Cahara Ghauri, 1978 of China (Hemiptera, Heteroptera, Pentatomidae, Halyini) with descriptions of two new species. ZooKeys 319: 37-50. https://doi.org/10.3897/zookeys.319.4275
Figures 13-20 - Cahara incisura sp. n. 13–15 Pygophore (13 ventral view, 14 dorsal view, 15 caudal view) 16–17 Paramere (16 lateral view, 17 caudal view) 18–19 Aedeagus (18 lateral view, 19 ventral view) 20 Female genitalia. (bl. blade, b.pl. basal plate, b.pr. basal process, cap.p. capitate process, c.l. conjunctival lobe, d.c.p. dorsal conjunctival process, f.p. fingerlike process, go.I gonocoxite I, go.II gonocoxite II, l.p. left paramere, m.p.p. median penial plate, pa.VIII paratergite VIII, pa.IX paratergite IX, p.t. phallotheca, s.a. suspensory apodeme, s.p. setal patch, st. stem, v. vesica, v.c.p. ventral conjunctival process)
Figures 4-6 from: Fan Z, Liu G (2013) The genus Cahara Ghauri, 1978 of China (Hemiptera, Heteroptera, Pentatomidae, Halyini) with descriptions of two new species. ZooKeys 319: 37-50. https://doi.org/10.3897/zookeys.319.4275
Figures 4-6 - Right humeral angles in cephalic view. 4 Cahara incisura sp. n. 5 Cahara nodula sp. n. 6 Cahara tibetana.
Figures 1-3 from: Fan Z, Liu G (2013) The genus Cahara Ghauri, 1978 of China (Hemiptera, Heteroptera, Pentatomidae, Halyini) with descriptions of two new species. ZooKeys 319: 37-50. https://doi.org/10.3897/zookeys.319.4275
Figures 1-3 - Heads in dorsal view. 1a–b. Cahara incisura sp. n. (a holotype, b paratype). 2a–c Cahara nodula sp. n.(a holotype, b paratype, c paratype) 3a–b Cahara tibetana (a holotype, b allotype). (a.l. apical lobe of mandibular plate, l.l. lateral lobe of mandibular plate).
Figure 1 from: Fent M, Dursun A, Tezcan S (2013) First record of Graphosoma inexpectatum (Heteroptera, Pentatomidae, Podopinae) from Turkey with description of the female. ZooKeys 319: 51-57. https://doi.org/10.3897/zookeys.319.4298
Figure 1 - Graphosoma inexpectatum. A body, dorsal view B body, ventral view C head, dorsal view, and antenna D head, ventral view, and rostrum E female genitalia F leg, lateral view.
Figures 19-24 from: Fürstenau B, Schwertner C, Grazia J (2013) Comparative morphology of immature stages of four species of Chinavia (Hemiptera, Pentatomidae), with a key to the species of Rio Grande do Sul, Brazil. ZooKeys 319: 59-82. https://doi.org/10.3897/zookeys.319.4310
Figures 19-24 - Chinavia runaspis (Dallas, 1851). 19 Adult 20 First instar 21 Second instar 22 Third instar 23 Fourth instar 24 Fifth instar.
Figures 13-18 from: Fürstenau B, Schwertner C, Grazia J (2013) Comparative morphology of immature stages of four species of Chinavia (Hemiptera, Pentatomidae), with a key to the species of Rio Grande do Sul, Brazil. ZooKeys 319: 59-82. https://doi.org/10.3897/zookeys.319.4310
Figures 13-18 - Chinavia brasicola (Rolston, 1983). 13 Adult 14 First instar 15 Second instar 16 Third instar 17 Fourth instar 18 Fifth instar.
Figures 7-12 from: Fan Z, Liu G (2013) The genus Cahara Ghauri, 1978 of China (Hemiptera, Heteroptera, Pentatomidae, Halyini) with descriptions of two new species. ZooKeys 319: 37-50. https://doi.org/10.3897/zookeys.319.4275
Figures 7-12 - Cahara spp. 7–8 Cahara incisura sp. n., holotype 9–10 Cahara nodula sp. n., holotype 11–12 Cahara tibetana, allotype.
Figures 7-12 from: Fürstenau B, Schwertner C, Grazia J (2013) Comparative morphology of immature stages of four species of Chinavia (Hemiptera, Pentatomidae), with a key to the species of Rio Grande do Sul, Brazil. ZooKeys 319: 59-82. https://doi.org/10.3897/zookeys.319.4310
Figures 7-12 - Chinavia aseada (Rolston, 1983). 7 Adult 8 First instar 9 Second instar 10 Third instar 11 Fourth instar 12 Fifth instar.
Figures 1-6 from: Fürstenau B, Schwertner C, Grazia J (2013) Comparative morphology of immature stages of four species of Chinavia (Hemiptera, Pentatomidae), with a key to the species of Rio Grande do Sul, Brazil. ZooKeys 319: 59-82. https://doi.org/10.3897/zookeys.319.4310
Figures 1-6 - Chinavia armigera (Stål, 1859). 1 Adult 2 First instar 3 Second instar 4 Third instar 5 Fourth instar 6 Fifth instar.
Figure 4 from: Gogala M, Drosopoulos S, Trilar T (2013) New distributional and bioacoustic data about Cicadivetta goumenissa from Peloponnese, Greece (Hemiptera, Cicadidae). ZooKeys 319: 83-91. https://doi.org/10.3897/zookeys.319.4452
Figure 4 - Oscillogram of the song selection of Cicadivetta goumenissa at the end of the song with long sequences of SE and with decreasing repetition rate.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.