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480 results for “M 15”
Figures 15-18 from: Huang S-y, Wang M, Fan X-l (2019) Notes on the genus Psychostrophia Butler, 1877 (Lepidoptera, Epicopeiidae), with description of a new species. ZooKeys 900: 111-127. https://doi.org/10.3897/zookeys.900.46973
Figures 15-18 Adults of Psychostrophia spp. and Stiboges sp. 15, 17–18 male 16 female: 15Psychostrophia nymphidiaria, holotype of Stiboges lushanica, Lushan, Sichuan 16Stiboges elodinia, mislabeled specimen of "holotype" of Stiboges lushanica, Lushan, Sichuan 17Psychostrophia picaria, Shennongjia, Hubei, PSY017 18 holotype of Psychostrophia endoi, Xam Neua, Laos, from Inoue (1992). Scale bars: 1 cm.
Figure 15 from: Garces JM, Sartori M, Freitag H (2020) Integrative taxonomy of the genus Dudgeodes Sartori, 2008 (Insecta, Ephemeroptera, Teloganodidae) from the Philippines with description of new species and complementary description of Southeast Asia species. ZooKeys 910: 93-129. https://doi.org/10.3897/zookeys.910.48659
Figure 15 Tergite VI ornamentations of Philippine Dudgeodes species. AD. pangantihoni sp. nov. BD. luntian sp. nov. CD. vonrinteleni sp. nov. DD. pescadoriED. bauernfeindi sp. nov. FD. tabang sp. nov. GD. freitagi sp. nov. Scale bar: 50 μm.
Figure 15 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328
Figure 15 Variation in the occurrence of small spines along the cutting edge of second and third teeth of mandibles in O. intermedia (A-C) (CEL-Thai-359, Krabi, Thailand) and O. brunnea (D-F) (CEL-KT-131, Hai Kou, Taiwan). Scale bars in μm.
Figure 15 from: Quicke DLJ, Shaw SR, Inayatullah M, Butcher BA (2020) The genus Vipio Latreille (Hymenoptera, Braconidae) in the Neotropical Region. ZooKeys 925: 89-140. https://doi.org/10.3897/zookeys.925.48457
Figure 15 Montaged light micrographs of Vipio melanocephalus. A Female habitus, lateral view B face C head and anterior mesosoma, lateral view D head, dorsal view E mesosoma, lateral view F anterior mesosoma, dorsal view.
Figures 15-30 from: Maddison WP, Maddison DR, Derkarabetian S, Hedin M (2020) Sitticine jumping spiders: phylogeny, classification, and chromosomes (Araneae, Salticidae, Sitticini). ZooKeys 925: 1-54. https://doi.org/10.3897/zookeys.925.39691
Figures 15-30 Attulus subgenus Attulus15–17 male and female A. distinguendus, Tuva (50.746, 93.142) 18–20 male and female A. mirandus, Tuva (50.205, 95.135) 21–23A. burjaticus: 21 male, Tuva (50.68, 92.99) 22 male, Tuva (50.205, 95.135) 23 female, Tuva (50.68, 92.99) 24–26A. zimmermanni: 24, 25 male Novosibirsk Oblast (53.721, 77.726) 26 female Novosibirsk Oblast (53.730, 77.865) 27–30A. ammophilus: 27 male Tuva (50.6690, 92.9844) 28 male Ontario, Oakville 29 female Ontario, Hamilton 30 male British Columbia (49.08, -119.52). For additional images of A. ammophilus, see Figs 69–73. For additional images of Attulus (Attulus), see Figs 31–38, 49–73.
Figure 15 from: Montoya AL, Wolff M (2020) Description of five new large species of Argentinomyia Lynch-Arribálzaga, and redescription of Talahua fervida (Fluke) (Diptera, Syrphidae, Syrphinae). . https://doi.org/10.3897/zookeys.929.37666
Figure 15 Biogeographical distribution of Argentinomyia andina sp. nov. (yellow), A. quimbaya sp. nov. (blue) and A. choachi sp. nov. (red).
Supplementary material 2 from: Hofmann MM, Fleischmann A, Renner SS (2020) Foraging distances in six species of solitary bees with body lengths of 6 to 15 mm, inferred from individual tagging, suggest 150 m-rule-of-thumb for flower strip distances. Journal of Hymenoptera Research 77: 105-117. https://doi.org/10.3897/jhr.77.51182
Table S1
Figure 4 from: Hofmann MM, Fleischmann A, Renner SS (2020) Foraging distances in six species of solitary bees with body lengths of 6 to 15 mm, inferred from individual tagging, suggest 150 m-rule-of-thumb for flower strip distances. Journal of Hymenoptera Research 77: 105-117. https://doi.org/10.3897/jhr.77.51182
Figure 4 Mean flight distances (with standard deviations) calculated from the 450 bee re-sightings shown in Suppl. material 2: Table S1, with year of observation given for Osmia cornuta, studied in both 2017 and 2018. All remaining data are from 2017. Species body sizes are from Amiet et al. (2004) and Scheuchl (2006). For the smaller species Chelostoma florisomne, C. rapunculi, and Heriades truncorum, which were colour-tagged rather than number-tagged, we cannot exclude repeated observations of the same individual.
Figure 3 from: Hofmann MM, Fleischmann A, Renner SS (2020) Foraging distances in six species of solitary bees with body lengths of 6 to 15 mm, inferred from individual tagging, suggest 150 m-rule-of-thumb for flower strip distances. Journal of Hymenoptera Research 77: 105-117. https://doi.org/10.3897/jhr.77.51182
Figure 3 Marking of an Osmia cornuta male (photos: J. Kirndorfer) a application of the glue and b, c attaching of the apiarists' tag d a labeled male ready to take off.
Figure 2 from: Hofmann MM, Fleischmann A, Renner SS (2020) Foraging distances in six species of solitary bees with body lengths of 6 to 15 mm, inferred from individual tagging, suggest 150 m-rule-of-thumb for flower strip distances. Journal of Hymenoptera Research 77: 105-117. https://doi.org/10.3897/jhr.77.51182
Figure 2 Marking of an Osmia cornuta female (photos: J. Kirndorfer). a, b A female caught with an insect net is transferred to the queen-marking tube and c, d pushed with the plunger to immobilize it (e, f a stylus is used to put glue on the mesonotum g, h the numbered colour plate is attached and i the bee released.
Figure 1 from: Hofmann MM, Fleischmann A, Renner SS (2020) Foraging distances in six species of solitary bees with body lengths of 6 to 15 mm, inferred from individual tagging, suggest 150 m-rule-of-thumb for flower strip distances. Journal of Hymenoptera Research 77: 105-117. https://doi.org/10.3897/jhr.77.51182
Figure 1 Marked individuals of AChelostoma florisomneBC. rapunculiCHeriades truncorumDHoplitis aduncaEOsmia bicornis, and FOsmia cornuta.
Supplementary material 1 from: Hofmann MM, Fleischmann A, Renner SS (2020) Foraging distances in six species of solitary bees with body lengths of 6 to 15 mm, inferred from individual tagging, suggest 150 m-rule-of-thumb for flower strip distances. Journal of Hymenoptera Research 77: 105-117. https://doi.org/10.3897/jhr.77.51182
Figure S1. Map showing the garden lay-out and location of the nest boxes at with bees were tagged
Figure 15 from: Takaoka H, Srisuka W, Fukuda M, Saeung A (2020) Twenty-one new species of the Simulium (Gomphostilbia) asakoae species group (Diptera, Simuliidae) in Thailand, with their genetic relationships. ZooKeys 950: 51-152. https://doi.org/10.3897/zookeys.950.51298
Figure 15 Male, pupa and larva of S. chaowaense sp. nov. A–D male E–G pupa H larva. A hind basitarsus and second tarsomere (left side; lateral view) B coxites, styles and ventral plate (ventral view) C ventral plate and median sclerite (lateral view) D ventral plate (caudal view) E gill filaments (right side; lateral view) F terminal hooks (caudal view) G cocoon (dorsal view) H head capsule (ventral view). Scale bars: 1.0 mm (G); 0.1 mm (A, E, H); 0.02 mm (B–D); 0.01 mm (F).
Figures 15-20 from: Liston A, Prous M (2020) Recent additions to the list of German sawflies (Hymenoptera, Symphyta). Deutsche Entomologische Zeitschrift 67(2): 127-139. https://doi.org/10.3897/dez.67.54002
Figures 15-20 Pristiphora females. 15–16.Pristiphora krausiDEI-GISHym83928; 17.melagonia sp. nov. DEI-GISHym17900; 18–19.melagonia holotype DEI-GISHym80284); 20.melagoniaDEI-GISHym20784. Scale bars 2 mm.
Figure 15 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figure 15 Nest parameters of Osmia uncinata. a) Trunk diameter at breast height of Pinus sylvestris trees selected as nesting site. b) Height of nest entrance above the ground. c) Exposure of nest. d) Length of nesting burrow. e) Number of brood cells. Grey = abandoned nests; blue = nests occupied upon discovery.
Figures 15-19 from: Espeland M, Sjöberg T, Johanson KA (2020) Description of 47 new species of the New Caledonian endemic caddisfly genus Agmina Ward & Schefter (Trichoptera, Ecnomidae). ZooKeys 956: 49-162. https://doi.org/10.3897/zookeys.956.51592
Figures 15-19 Agmina tenuisa sp. nov. male holotype 15 genitalia, left lateral view 16 genitalia, dorsal view 17 genitalia, ventral view 18 phallus, lateral view 19 phallus, ventral view.
Figure 15 from: Rosas-Ramos N, Mas-Peinado P, Gil-Tapetado D, Recuero E, Ruiz JL, García-París M (2020) Catalogue, distribution, taxonomic notes, and conservation of the Western Palearctic endemic hunchback beetles (Tenebrionidae, Misolampus). ZooKeys 963: 81-129. https://doi.org/10.3897/zookeys.963.53500
Figure 15 Fronto-dorsal view of specimens of MisolampusAMisolampus gibbulus from Santa Elena (Jaén) (MNCN_Ent 270070) BMisolampus ramburii from Málaga (MNCN_Ent 270037). Note the differences between the two species in the shape of the anterior angles of the prothorax. Scale bars: 1 mm.
Figure 15 from: Jung TW, Kim JG, Kim M-S, Yoon SM (2020) Five new subterranean amphipods of the genus Pseudocrangonyx from Korea (Crustacea, Amphipoda, Pseudocrangonyctidae). ZooKeys 970: 1-50. https://doi.org/10.3897/zookeys.970.55035
Figure 15 Pseudocrangonyx minutus sp. nov. Holotype: female, NIBRV0000862810, 9.1 mm, from Gageo Is., South Korea. A pereopod 3 B coxal gill of pereopod 3 C pereopod 4 D coxal gill of pereopod 4 E pereopod 5 F pereopod 6 G coxal gill of pereopod 6 H pereopod 7 I coxal gill of pereopod 7.
Figure 15 from: Brassard F, Leong C-M, Chan H-H, Guénard B (2020) A new subterranean species and an updated checklist of Strumigenys (Hymenoptera, Formicidae) from Macao SAR, China, with a key to species of the Greater Bay Area. ZooKeys 970: 63-116. https://doi.org/10.3897/zookeys.970.54958
Figure 15 Examples of antenna with 4 segments in S. nepalensis (A MAC_S19_LLSP_sp.3, photograph by IBBL) and antenna with 6 segments in S. membranifera (B MAC_S21_LLSP_sp.2, photograph by IBBL).
Figure 15 from: Dayrat B, Goulding TC, Apte D, Aslam S, Bourke A, Comendador J, Khalil M, Ngô XQ, Tan SK, Tan SH (2020) Systematic revision of the genus Peronia Fleming, 1822 (Gastropoda, Euthyneura, Pulmonata, Onchidiidae). ZooKeys 972: 1-224. https://doi.org/10.3897/zookeys.972.52853
Figure 15 Penial hooks, Peronia peroniiA Mauritius [5872] (MNHN-IM-2019-1605) B Mauritius [3605] (MNHN-IM-2019-1606) C, D Guam [5840] (MNHN-IM-2019-1609). Scale bars: 6 μm (A, B, D), 40 μm (C).
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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.