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FIGURE 6. T1 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 6. T1 of Glypta, dorsal view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. d a i se t su z a n a sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.; I, G. ichitai sp. nov.; J, G. kamijoi Momoi; K, G. karasawensis sp. nov.; L, G. nipponica sp. nov.; M, G. shigaensis sp. nov.; N, G. suwai sp. nov.; O, G. touyaensis sp. nov.; P, G. tumor Momoi; Q, G. zenibakoensis sp. nov.
FIGURE 3 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 3. Frontal horn (left) and base of antenna (right) of Glypta, dorsal (horn) and lateral (antenna) view. ― A, G. chinensis (Uchida); B, G. cognata sp. nov.; C, G. cymolomiae Uchida; D, G. daisetsuzana sp. nov.; E, G. densepunctata sp. nov.; F, G. extincta Ratzeberg; G. G. flavitarsus sp. nov.; H, G. ichitai sp. nov.; I, G. kamijoi Momoi; J, G. karasawensis sp. nov.; K, G. nipponica sp. nov.; L, G. shigaensis sp. nov.; M, G. suwai sp. nov.; N, G. touyaensis sp. nov.; O, G. tumor Momoi; P, G. zenibakoensis sp. nov.
FIGURE 12 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 12. Distribution of Glypta extincta Ratzeberg, G. flavitarsus sp. nov., G. ichitai sp. nov. and G. kamijoi Momoi.
FIGURE 2 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 2. Head of Glypta, lateral view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. daisetsuzana sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.; I, G. ichitai sp. nov.; J, G. kamijoi Momoi; K, G. karasawensis sp. nov.; L, G. nipponica sp. nov.; M, G. shigaensis sp. nov.; N, G. suwai sp. nov.; O, G. touyaensis sp. nov.; P, G. tumor Momoi; Q, G. zenibakoensis sp. nov.
FIGURE 4 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 4. Hind leg of Glypta, anterior aspect, lateral view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. daisetsuzana sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.
FIGURE 1 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 1. Head of Glypta, dorsal view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. daisetsuzana sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.; I, G. ichitai sp. nov.; J, G. kamijoi Momoi; K, G. karasawensis sp. nov.; L, G. nipponica sp. nov.; M, G. shigaensis sp. nov.; N, G. suwai sp. nov.; O, G. touyaensis sp. nov.; P, G. tumor Momoi; Q, G. zenibakoensis sp. nov.
Crocodylian princess in Taiwan: Revising the taxonomic status of Tomistoma taiwanicus from the Pleistocene of Taiwan and its paleobiogeographic implications
<p><em>Toyotamaphimeia</em>, deriving from a mythological princess in Japan into a crocodile, refers to an extinct crocodylian lineage. Here, we reexamine the holotype of a long-forgotten species: <em>Tomistoma taiwanicus </em>from the Pleistocene of Tainan (Taiwan) and revise its taxonomic status to <em>Toyotamaphimeia taiwanicus </em>comb. nov., leading to the first recognized species of <em>Toyotamaphimeia </em>outside Japan. Our phylogenetic analyses also support this taxonomic assignment and, more interestingly, further suggest an East Asian lineage. In addition, <em>Toyotamaphimeia taiwanicus</em> represents a tropical species, resolving a long-lasting puzzle of why <em>Toyotamaphimeia </em>only inhabited the much higher latitudinal area (Japan). Given the large body size of <em>Toyotamaphimeia taiwanicus</em> (about 7 m) and geologically older than <em>Toyotamaphimeia machikanensis</em> from Japan, we propose a novel evolutionary scenario: the genus <em>Toyotamaphimeia </em>originated in Taiwan and evolved to a large body size with gigantothermic physiology, allowed an Out-of-Taiwan scheme, and dispersed further north to Japan. Our taxonomic identification shows the presence of an extinct endemic crocodylian species from the Pleistocene of Taiwan with large-scale paleogeographic implications, and this study, with our recent progress in vertebrate paleontology in Taiwan, should provoke more in-depth paleontological research on elucidating a larger picture of the Pleistocene extinction.</p>
Crocodylian princess in Taiwan: Revising the taxonomic status of Tomistoma taiwanicus from the Pleistocene of Taiwan and its paleobiogeographic implications
<p><em>Toyotamaphimeia</em> is an extinct crocodylian lineage whose name is derived from a mythological Japanese princess. Here, we reexamine the type specimens of a long-forgotten species: <em>Tomistoma taiwanicus </em>from the Pleistocene of Tainan (Taiwan) and revise its taxonomic status to <em>Toyotamaphimeia taiwanicus </em>comb. nov., leading to the first recognized species of <em>Toyotamaphimeia </em>outside Japan. Our phylogenetic analyses also support this taxonomic assignment and, more interestingly, further suggest an East Asian lineage. In addition, <em>Toyotamaphimeia taiwanicus</em> represents a tropical species, resolving a long-lasting puzzle of why <em>Toyotamaphimeia </em>only inhabited the much higher latitudinal area (Japan). Given the large body size of <em>Toyotamaphimeia taiwanicus</em> (about 7 m) and the fact that it is geologically older than <em>Toyotamaphimeia machikanensis</em> from Japan, we propose a novel evolutionary scenario: the genus <em>Toyotamaphimeia </em>originated in Taiwan and evolved to a large body size with gigantothermic physiology, allowed an Out-of-Taiwan scenario, and dispersed further north to Japan. Our taxonomic identification shows the presence of an extinct endemic crocodylian species from the Pleistocene of Taiwan with large-scale paleogeographic implications, and this study, with our recent progress in vertebrate paleontology in Taiwan, should provoke more in-depth paleontological research on the Pleistocene extinction.</p>
FIGURE 6. Cicada terminus Walker, 1850 in Resolving taxonomic issues of cicadas (Hemiptera: Cicadidae) including new combinations, new synonymies, and revised status, with updates on the diversity of the Brazilian cicada fauna and new records for four South American countries
FIGURE 6. Cicada terminus Walker, 1850 holotype specimen (NHMUK010392115) dorsal (top) and ventral (middle) habitus. ©The Trustees of the Natural History Museum, London. Photos courtesy of Fernley Symons and Mick Webb.
FIGURE 5. Cicada apicifera Walker, 1850 in Resolving taxonomic issues of cicadas (Hemiptera: Cicadidae) including new combinations, new synonymies, and revised status, with updates on the diversity of the Brazilian cicada fauna and new records for four South American countries
FIGURE 5. Cicada apicifera Walker, 1850 holotype specimen (NHMUK010392114) dorsal (top) and ventral (middle) habitus. ©The Trustees of the Natural History Museum, London. Photos courtesy of Fernley Symons and Mick Webb.
FIGURE 4. Cicada blandula Walker, 1858b in Resolving taxonomic issues of cicadas (Hemiptera: Cicadidae) including new combinations, new synonymies, and revised status, with updates on the diversity of the Brazilian cicada fauna and new records for four South American countries
FIGURE 4. Cicada blandula Walker, 1858b type specimen (NHMUK010392122) dorsal (top) and ventral (middle) habitus. ©The Trustees of the Natural History Museum, London. Photos courtesy of Fernley Symons and Mick Webb.
FIGURE 2. Tibicen egae Distant, 1892 in Resolving taxonomic issues of cicadas (Hemiptera: Cicadidae) including new combinations, new synonymies, and revised status, with updates on the diversity of the Brazilian cicada fauna and new records for four South American countries
FIGURE 2. Tibicen egae Distant, 1892 type specimen (NHMUK010392112) dorsal (top) and ventral (middle) habitus. The inflated aedeagus with membrane and recurved terminal spines are characteristic of Brevialavenosa. ©The Trustees of the Natural History Museum, London. Photos courtesy of Fernley Symons and Mick Webb.
FIGURE 1. Tettigonia grossa Fabricius, 1775 in Resolving taxonomic issues of cicadas (Hemiptera: Cicadidae) including new combinations, new synonymies, and revised status, with updates on the diversity of the Brazilian cicada fauna and new records for four South American countries
FIGURE 1. Tettigonia grossa Fabricius, 1775 type specimen (BMNH(E)#668748) dorsal (left) and ventral (right) habitus. ©The Trustees of the Natural History Museum, London.
FIGURE 3. Cicada temperata Walker, 1858b in Resolving taxonomic issues of cicadas (Hemiptera: Cicadidae) including new combinations, new synonymies, and revised status, with updates on the diversity of the Brazilian cicada fauna and new records for four South American countries
FIGURE 3. Cicada temperata Walker, 1858b type specimen (NHMUK010392118) dorsal (top) and ventral (middle) habitus. ©The Trustees of the Natural History Museum, London. Photos courtesy of Fernley Symons and Mick Webb.
Revised taxonomy of eastern North Pacific killer whales (Orcinus orca): Bigg’s and resident ecotypes deserve species status
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FIGURE 6 in Revised status of Omolicna subgenus Agoo (Hemiptera: Auchenorrhyncha: Fulgoroidea: Derbidae) with a new species from Costa Rica and new country records
FIGURE 6. Adult male Anchimothon parishi; A. lateral habitus, B. dorsal habitus.
FIGURE 9 in Revised status of Omolicna subgenus Agoo (Hemiptera: Auchenorrhyncha: Fulgoroidea: Derbidae) with a new species from Costa Rica and new country records
FIGURE 9. Agoo dahliana sp. n., forewing venation.
Figure 29 in Taxonomic revision of Dichotomius (Cephagonus) Luederwaldt 1929 and the taxonomic status of remaining Dichotomius Hope 1838 subgenera (Coleoptera: Scarabaeidae: Scarabaeinae: Dichotomiini)
Figure 29. Distribution map of D. fissiceps and D. reichei.
Fig. 4 in Revision of the costata-group of Alona s. lato (Cladocera: Anomopoda: Chydoridae) confirms its generic status
Fig. 4. Flavalona rustica (Scott, 1895) comb. nov. from Bol'shoe Torfyanoe lake, Bolshoi Solovetskiy Island (White Sea), Russia. A–B. Juvenile ♀♀ of instars I and II. C–N. Parthenogenetic ♀. C. Specimen with oblique valves. D. Specimen with tuberculated valves. E. Ventral margin of valves. F. Anterior setae of valves. G. Posterior setae of valves. H. Posteroventral corner and posterior margin of valves. I. Head shield. J–K. Head pores. L–M. Postabdomen. N. Antenna.
FIGURES 7–9 in Systematics of Schinia cupes (Grote) complex: Revised status of Schinia crotchii (Hy. Edwards) (Lepidoptera: Noctuidae: Heliothinae)
FIGURES 7–9. Second sternite of male abdomen. 7, Schinia cupes; 8, S. crotchii; 9, S. deserticola.
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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.