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588 results for “157”
Figure 4 from: Pezzini C, Jahnke SM, Köhler A (2017) Morphological characterization of immature stages of Habrobracon hebetor (Hymenoptera, Braconidae) ectoparasitoid of Ephestia kuehniella (Lepidoptera, Pyralidae). Journal of Hymenoptera Research 60: 157-171. https://doi.org/10.3897/jhr.60.20104
Figure 4 - Immature stages of Habrobracon hebetor female (side view): A Prepupa B first pupal phase C second pupal phase D third pupal phase before adult emergence. Scale: 0.5 mm.
Figure 2 from: Pezzini C, Jahnke SM, Köhler A (2017) Morphological characterization of immature stages of Habrobracon hebetor (Hymenoptera, Braconidae) ectoparasitoid of Ephestia kuehniella (Lepidoptera, Pyralidae). Journal of Hymenoptera Research 60: 157-171. https://doi.org/10.3897/jhr.60.20104
Figure 2 - Cephalic capsule (frontal view) of fourth instar larva of Habrobracon hebetor illustrating chaetotaxy (AN antenna, CS clypeal setae, FS frons setae on the antennal region, GN genal setae, HS hypostomal setae, VS vertex setae).
Figure 1 from: Pezzini C, Jahnke SM, Köhler A (2017) Morphological characterization of immature stages of Habrobracon hebetor (Hymenoptera, Braconidae) ectoparasitoid of Ephestia kuehniella (Lepidoptera, Pyralidae). Journal of Hymenoptera Research 60: 157-171. https://doi.org/10.3897/jhr.60.20104
Figure 1 - Second instar larva of Habrobracon hebetor (dorsal view) illustrating the terminology used in the text (A1-A9 abdominal segments, AS anal segment, CC cephalic capsule, T1-T3 thoracic segments).
Figures 157-160 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 157-160 - Lancets of Pristiphora. 157 abietina DEI-GISHym5174 158 compressa DEI-GISHym31606 159 compressa DEI-GISHym11922 160 decipiens DEI-GISHym31604.
Figure 157 from: Fisher JR, Fisher DM, Skvarla MJ, Nelson WA, Dowling APG (2017) Revision of torrent mites (Parasitengona, Torrenticolidae, Torrenticola) of the United States and Canada: 90 descriptions, molecular phylogenetics, and a key to species. ZooKeys 701: 1-496. https://doi.org/10.3897/zookeys.701.13261
Figure 157 - Torrenticola mulleni sp. n. female: A dorsal plates B venter (legs removed) C subcapitulum D pedipalp (setae not accurately depicted). Scale = 100 µm.
FIGURES 157–162 in A Revision of the Wasp Genus Pison Jurine, 1808 of Australia and New Zealand, New Guinea, and the Pacific Islands (Hymenoptera: Crabronidae)
FIGURES 157–162. Pison auriventre Turner. (157) Female tegula; (158) Basal flagellomeres of male; (159) Female gaster in dorsal view; (160) Apex of female gaster; male: (161) Sternum VIII (ventral surface); (162) Sternum VIII (ventral surface in lateral oblique view).
Figure 2 from: Yan Z-L, Ma H-F, Mao Y-L, Liu L (2018) Gravid females of Cephalcia chuxiongica (Hymenoptera, Pamphiliidae) are attracted to egg-carrying needles of Pinus yunnanensis. Journal of Hymenoptera Research 65: 157-166. https://doi.org/10.3897/jhr.65.26341
Figure 2 Trend rates of gravid females of Cephalciachuxiongica to volatiles in one-way choice tests. P one pine shoot V one virgin female G one gravid female PGE one pine shoot with one female and her fresh eggs on the needles PE one pine shoot with fresh eggs but no female NE needles' extract EL eggs' eluent. *Indicates a statistically significant difference (P < 0.05) between the trend rates of the gravid females to the odor and to clean air (nonparametric Wilcoxon matched pairs test, two-tailed).
Figure 4 from: Yan Z-L, Ma H-F, Mao Y-L, Liu L (2018) Gravid females of Cephalcia chuxiongica (Hymenoptera, Pamphiliidae) are attracted to egg-carrying needles of Pinus yunnanensis. Journal of Hymenoptera Research 65: 157-166. https://doi.org/10.3897/jhr.65.26341
Figure 4 Paired comparison of trend responses of gravid females of Cephalciachuxiongica to attractive odors P one pine shoot G one gravid female PGE one pine shoot with one female and her fresh eggs on the needles PE one pine shoot with fresh eggs but no female NE needles' extract EL eggs' eluent. *Indicates that the trend rate to the odor is statistically significantly higher than that to the other odor in this pair (P < 0.05, nonparametric Wilcoxon matched pairs test, two-tailed).
Figure 1 from: Yan Z-L, Ma H-F, Mao Y-L, Liu L (2018) Gravid females of Cephalcia chuxiongica (Hymenoptera, Pamphiliidae) are attracted to egg-carrying needles of Pinus yunnanensis. Journal of Hymenoptera Research 65: 157-166. https://doi.org/10.3897/jhr.65.26341
Figure 1 Oviposition selection of gravid females of Cephalciachuxiongica in pine shoots with vs. without 'pioneer' females. *Indicates a statistically significant difference (P < 0.05) between mean numbers of delivery females on the shoots with and without 'pioneer' females (non-parametric Wilcoxon matched pairs test, two-tailed).
Figure 3 from: Yan Z-L, Ma H-F, Mao Y-L, Liu L (2018) Gravid females of Cephalcia chuxiongica (Hymenoptera, Pamphiliidae) are attracted to egg-carrying needles of Pinus yunnanensis. Journal of Hymenoptera Research 65: 157-166. https://doi.org/10.3897/jhr.65.26341
Figure 3 Trend rates of virgin females of Cephalciachuxiongica to volatiles in one-way choice tests. P one pine shoot V one virgin female G one gravid female PGE one pine shoot with one female and her fresh eggs on the needles PE one pine shoot with fresh eggs but no female NE needles' extract EL eggs' eluent. *Indicates a statistically significant difference (P < 0.05) between the trend rates of the virgin females to the odor and to clean air (nonparametric Wilcoxon matched pairs test, twotailed).
Supplementary material 1 from: Galasso G, Domina G, Ardenghi NMG, Aristarchi C, Bacchetta G, Bartolucci F, Bonari G, Bouvet D, Brundu G, Buono S, Caldarella O, Calvia G, Cano-Ortiz A, Corti E, D'Amico FS, D'Antraccoli M, Di Turi A, Dutto M, Fanfarillo E, Ferretti G, Fiaschi T, Ganz C, Guarino R, Iberite M, Laface VLA, La Rosa A, Lastrucci L, Latini M, Lazzaro L, Lonati M, Lozano V, Luchino F, Magrini S, Mainetti A, Manca M, Mugnai M, Musarella CM, Nicolella G, Olivieri N, Orrù I, Pazienza G, Peruzzi L, Podda L, Prosser F, Ravetto Enri S, Restivo S, Roma-Marzio F, Ruggero A, Scoppola A, Selvi F, Spampinato G, Stinca A, Terzi M, Tiburtini M, Tornatore E, Vetromile R, Nepi C (2019) Notulae to the Italian alien vascular flora: 7. Italian Botanist 7: 157-182. https://doi.org/10.3897/italianbotanist.7.36386
: Data type: species data
FIGURE 157 in Revision of the southern African genera Nemopterella Banks and Nemia Navás (Neuroptera: Nemopteridae: Nemopterinae), with descriptions of new genera and species
FIGURE 157. Nemia angulata (Westwood), holotype and associated labels (Photo: OXUM).
Figure 157 from: Carolina Arias-Penna D, Whitfield JB, Janzen DH, Hallwachs W, Dyer LA, Smith MA, Hebert PD.N, Fernández-Triana JL (2019) A species-level taxonomic review and host associations of Glyptapanteles (Hymenoptera, Braconidae, Microgastrinae) with an emphasis on 136 new reared species from Costa Rica and Ecuador. ZooKeys 890: 1-685. https://doi.org/10.3897/zookeys.890.35786
Figure 157 Glyptapanteles mayberenbaumae sp. nov. female EC-40241 YY-A000 A Habitus B, D Head B Frontal view D Dorsal view C Head, pronotum, propleuron lateral view E Mesonotum, dorsal view F Scutellum, metanotum, propodeum, dorsal view GT1–3, dorsal view H, J Metasoma H Dorsal view J Lateral view I Mesosoma, lateral view K Fore and hind wings.
Figure 8 from: Hofman S, Grego J, Rysiewska A, Osikowski A, Falniowski A (2021) Two new species of the Balkan genus Paladilhiopsis Pavlović, 1913 (Caenogastropoda, Moitessieriidae). ZooKeys 1046: 157-176. https://doi.org/10.3897/zookeys.1046.64489
Figure 8 Renal and pallial section of the female reproductive organs of Paladilhiopsis stellatus X. Abbreviations: bc – bursa copulatrix, cbc – duct of bursa, ga – albuminoid gland, gn – nidamental gland, gp – gonoporus, ov – oviduct, ovl – loop of (renal) oviduct, rs – seminal receptacle (in the position of Radoman's (1983) rs1 – distal seminal receptacle). Scale bar: 500 μm.
Figure 7 from: Hofman S, Grego J, Rysiewska A, Osikowski A, Falniowski A (2021) Two new species of the Balkan genus Paladilhiopsis Pavlović, 1913 (Caenogastropoda, Moitessieriidae). ZooKeys 1046: 157-176. https://doi.org/10.3897/zookeys.1046.64489
Figure 7 A teleoconch sculpture of Paladilhiopsis arionB–D radula of P. stellatus. Scale bars 50 μm (A); 10 μm (B–D).
Figure 5 from: Hofman S, Grego J, Rysiewska A, Osikowski A, Falniowski A (2021) Two new species of the Balkan genus Paladilhiopsis Pavlović, 1913 (Caenogastropoda, Moitessieriidae). ZooKeys 1046: 157-176. https://doi.org/10.3897/zookeys.1046.64489
Figure 5 Maximum likelihood tree computed for concatenated partial sequences of COI and H3 sequences. Bootstrap supports given if ≥ 60%.
Figure 6 from: Hofman S, Grego J, Rysiewska A, Osikowski A, Falniowski A (2021) Two new species of the Balkan genus Paladilhiopsis Pavlović, 1913 (Caenogastropoda, Moitessieriidae). ZooKeys 1046: 157-176. https://doi.org/10.3897/zookeys.1046.64489
Figure 6 Shells of PaladilhiopsisA–PP. stellatusA, B locality 1, Studena spring (2H58, 2H59) C–P locality 2, Zvezda spring (holotype, 2H69, 2H60-2H61, 2I19-2I28, respectively) Q–SP. arion, locality 3, Vrelo "Lušac" (Gučina), BiH (holotype, 2G19, 2G22).
Figure 2 from: Hofman S, Grego J, Rysiewska A, Osikowski A, Falniowski A (2021) Two new species of the Balkan genus Paladilhiopsis Pavlović, 1913 (Caenogastropoda, Moitessieriidae). ZooKeys 1046: 157-176. https://doi.org/10.3897/zookeys.1046.64489
Figure 2 Some of the sampled localities A Studena spring (loc. 1) B Spring Zvezda (loc. 2) C, D Vrelo "Lušac" (Gučina) (loc. 3) (photographs A, B M. Olšavský C, D A. Osikowski).
Figure 4 from: Hoeksema BW (2021) In memoriam: Leendert P. van Ofwegen (1953–2021), octocoral taxonomist. ZooKeys 1052: 157-187. https://doi.org/10.3897/zookeys.1052.71435
Figure 4 Photographs of Leen during fieldwork in Indonesia (continued) a photography and sampling underwater off Jakarta in the Java Sea (2005) b preparing specimens with Yosephine Tuti in Raja Ampat (2007) c with colleagues Charles Fransen and Chiel Slierings on board of a small wooden boat during a survey in the Thousand Islands, Indonesia (2005) d Processing data with Frank Stokvis on Kri Island, Raja Ampat (2007). Photograph credits a author b Stefano Draisma c Koos van Egmond d unknown.
Figure 1 from: Hoeksema BW (2021) In memoriam: Leendert P. van Ofwegen (1953–2021), octocoral taxonomist. ZooKeys 1052: 157-187. https://doi.org/10.3897/zookeys.1052.71435
Figure 1 Portrait of Leen van Ofwegen during fieldwork in Indonesia (2003). Photograph credit: author.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
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.