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Fig. 3. Phylogenetic relationships among a in Phylogenomic Species Delimitation, Taxonomy, and 'Bird Guide' Identification for the Neotropical Ant Genus Rasopone (Hymenoptera: Formicidae)
Fig. 3. Phylogenetic relationships among a curated set of COI barcode sequences for Rasopone. Black samples were sequenced for UCEs. Red samples were downloaded from the BOLD database.The tree was inferred using IQ-TREE with the data partitioned by codon position. Black circles on nodes indicate high support, which we define as ≥95% ultrafast bootstrap support and ≥95% SH-like branch support.Terminal names match taxonomic changes proposed in paper and provide useful sample identifiers (e.g., extraction codes [EX#] or BOLD process IDs).A complete, unpruned COI tree is available in Supp Fig. S1 (online only).
Fig. 8. Cyclops lacustris G.O. Sars, 1863. A−B in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 8. Cyclops lacustris G.O. Sars, 1863. A−B. ♀. A. Leg 1, frontal (ZMO: lectotype designated herein). B. Leg 4, caudal – distal margin of the first and second exopodal segments bearing spinules on the frontal surface only (ZMO: Sars Coll. 12977 ♀-2). C−F. Ƌ. C. Anal somite and caudal rami, ventral (ZMO: Sars Coll. 12977 Ƌ-1). D. Urosomites 1̅4, ventral (ZMO: Sars Coll. 12977 Ƌ-1). E. Antennal coxobasis, caudal (ZMO: Sars Coll. 12976 Ƌ-1). F. Maxillulary palp (ZMO: Sars Coll. 12976 Ƌ-1). Scale bars = 100 µm.
Fig. 6 in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 6. Cyclops bohater Koźmiński, 1933, copepodid IV, ♀. A−C. Antennule, ventral. A. Segments 1̅5 (I̅XVI), arrow points to long anterodistal seta of ancestral segment XIV. B. Segments 6̅8 (XVII̅ XXIV). C. Segments 9̅10 (XXV̅XXVIII). D. Leg 2, caudal. E. Leg 3, caudal. All drawings show specimen from Latvia (Lake Brigene ̅ MIZ 2/2016/1). Scale bar = 100 µm.
Fig. 5 in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 5. Cyclops bohater Koźmiński, 1933, Ƌ. A. Maxillulary palp. B. Maxilliped syncoxopodite, frontal. C. Leg 1, frontal. D. Leg 2, slender spine of first exopodal segment and robust spines of exopodal segments 2 and 3. E. Exopodal armature of leg 3. F. Leg 4 coxopodite, basipodite and intercoxal sclerite, caudal. All drawings show a paralectotype (NHMUK 2016. 40). Scale bars = 100 µm.
Fig. 7. Cyclops lacustris G.O. Sars, 1863 in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 7. Cyclops lacustris G.O. Sars, 1863, ♀. A. Habitus, dorsal (SMNK: 9567). B−C. Urosome, ventral (Lake Aspern, Norway ̅ MIZ 2/2016/20). B. Urosomites 1̅4. C. Anal somite and caudal rami. D. Antennular segments 12̅17, ventral (Lake Aspern, Norway ̅ MIZ 2/2016/20). E−F. Antennal coxobasis, caudal. E. ♀ from Lake Mjøsa, Norway (ZMO: Sars Coll. 12977 ♀-2). F. ♀ from Lake Aspern, Norway (MIZ 2/2016/20). G−H. Maxillulary palp. G. ♀ from Lake Mjøsa, Norway (ZMO: Sars Coll. 12977 ♀-2). H. ♀ from Lake Aspern, Norway (MIZ 2/2016/20). Scale bars: A̅H = 100 µm.
Fig. 3 in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 3. Cyclops bohater Koźmiński, 1933, ♀. A. Maxilla, caudal. B. Maxilliped, frontal. C. Leg 1, frontal, arrows point to the long setules of the medial spine/seta of basipodite, and long spinules on the basipodite between the insertions of exopodite and endopodite. D−E. Leg 4: EXP, P4 exp 3; ENP, P4 enp3. All drawings show the lectotype (NHMUK 2016. 38). Scale bars: A̅E = 100 µm.
Fig. 2 in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 2. Cyclops bohater Koźmiński, 1933, ♀. A−B. Surface ornamentation of antennal coxobasis. A. Frontal, arrow points to insertion site of long spinules missing in C. bohater. B. Caudal, arrow points to a group of spinules sometimes present. C. Labrum, epistoma and rostrum. D. Mandible, frontal, arrow points to insertion site of spinules missing in C. bohater. E. Maxillulary palp, arrows point to long setules of the setae, and spinulose ornamentation of the palp. All drawings show the lectotype (NHMUK 2016.38). Scale bars: A̅E = 100 µm.
Fig. 1 in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 1. Cyclops bohater Koźmiński, 1933, ♀. A. Habitus, dorsal. B. Pediger 5 and genital doublesomite, ventral, arrow points to lateral "wing-like" protrusion of pediger 5. C. Anal somite and caudal rami, dorsal. D−G. Antennule, ventral. D. Segments 1̅6 (I̅XIV). E. Segments 7̅14 (XV-XXIII). F. Segments 12̅14 (XXI̅XXIII). G. Segments 15̅17 (XXIV̅XXVIII). Except for A (NHMUK 2016. 39) all drawings show the lectotype (NHMUK 2016. 38). Scale bars: A = 1 mm; B̅G = 100 µm.
Fig. 10 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 10. Rhinotorus nasutus (Gravenhorst, 1829). A. Face. B. Head dorsally. C. Propodeum. D. First metasomal tergite dorsally. E. Habitus.
Fig. 13 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 13. Rhinotorus tarsilatus sp. nov., holotype, ♀. A. Face. B. Head dorsally. C. Metasoma. D. Habitus.
Fig. 8 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 8. Rhinotorus longicornis (Schmiedeknecht, 1914). A. Mesoscutellum. B. Metasoma dorsally. C. Face. D. Head dorsally. E. Habitus.
Fig. 7 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 7. Rhinotorus leucostomus (Gravenhorst, 1829). A. First metasomal tergite dorsally with projections at spiracles (arrows). B. Mesoscutellum. C. Propodeum. D. Face. E. Habitus.
Fig. 2. Mesoleius roepkei Teunissen, 1945 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 2. Mesoleius roepkei Teunissen, 1945, holotype, ♀. A. Face. B. First metasomal tergite with shallow subapical transverse impressions (arrow). C. Habitus.
Fig. 3 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 3. Rhinotorus alpinus (Roman, 1909), lectotype, ♀. A. Face. B. Mesopleuron. C. Propodeum. D. Head dorsally. E. Habitus.
Fig. 15 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 15. Rhinotorus umbrarum (Holmgren, 1857). A. ♀, face. B. ♂, face. C. Metasoma dorsally. D. Propodeum.
Fig. 1. A–D in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 1. A–D. Saotis brachycerus (Kasoparyan & Kopelke, 2009) comb. nov. A. Face. B. Propodeum. C. Habitus paratype, ♂ S. brachycerus (Kasoparyan & Kopelke, 2009). D. Habitus holotype, ♀ S.brachycerus (Kasoparyan & Kopelke, 2009). E–F. Saotis granulator Kasparyan & Kopelke, 2010. E. Habitus ♂ S. granulator Kasparyan & Kopelke, 2010. F. Habitus ♀ S. granulator Kasparyan & Kopelke, 2010.
Fig. 11 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 11. Rhinotorus ovalis (Davis, 1897), lectotype, ♀. A. Metasoma dorsally. B. Face. C. Habitus dorsally. D. Habitus laterally.
Fig. 4 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 4. Rhinotorus campester sp. nov., holotype, ♂. A. Face. B. Male genitalia laterally. C. Male genitalia ventrally. D. Mesopleuron. E. Habitus.
Fig. 6 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 6. Rhinotorus jussilai sp. nov., holotype, ♀. A. Face. B. Mesopleuron. C. Propodeum and first metasomal tergite dorsally. D. Habitus.
Figure 3 in Morphology, natural history and molecular identification of tadpoles of three endemic frog species of Nyctibatrachus Boulenger, 1882 (Anura: Nyctibatrachidae) from Central Western Ghats, India
Figure 3. Tadpole of N. jog, BNHS 5900. (a) Dorsal view; (b) ventral view; (c) lateral view; (d) mouth part (not to scale).
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.