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Figs. 24 26 in Taxonomic updates for some confusing Micronesian species of Camponotus (Hymenoptera: Formicidae: Formicinae)
Figs. 24 26: Paratype of Camponotus micronesicus sp.n. collected with the holotype, in frontal (24), dorsal (25), and lateral (26) views.
FIGURE 2 in The acasta conundrum: Polymorphism and taxonomic confusion within the parasitoid genus Melittobia (Hymenoptera: Eulophidae)
FIGURE 2. Variation in M. megachilis from a single culture. a–c: antennae of different first-brood males, showing range of variation. d: antenna of second-brood male. e: forewing of first-brood male. f: forewing of second-brood male. g: middle leg of first-brood male. h: middle leg of second-brood male.
FIGURE 1 in The acasta conundrum: Polymorphism and taxonomic confusion within the parasitoid genus Melittobia (Hymenoptera: Eulophidae)
FIGURE 1. Examples of Melittobia polymorphism. a: long-winged (MF) female of Melittobia digitata; b: short-winged (BF) M. digitata; c: second-brood male of M. femorata (= megachilis); d: first-brood male of M. femorata (= megachilis).
Figure 7 in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 7. Maximum likelihood tree for Belonocnema of the southern and south-eastern USA based on sampling and SNP data collected by Driscoe et al. (2019), using 1 individual sampled randomly from each of N = 58 populations. Numbers at nodes represent ultrafast bootstrap and SH-aLRT. (See Supporting Information,Table S1 for corresponding site abbreviations.)
Figure 5 in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 5. Geographic distribution of Belonocnema species across the geographic ranges of their host plants Quercus fusiformis (light grey), Q. virginiana (diagonal pattern) and Q. geminata (dark grey) within the southern and south-eastern United States along with a summary of host-plant associations for each Belonocnema species. The proportions of each species using each host plant are based on the 58 sites and 1219 individuals from Driscoe et al. (2019). Site symbol and inner colour denote Belonocnema species, while the outline colour indicates host-plant species sampled at each site; Qf = white; Qg = black; and Qv = no outline. Plant ranges redrawn from Cavender-Bares et al. (2015).
Figure 4. Belonocnema kinseyi. A in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 4. Belonocnema kinseyi. A, lateral habitus of asexual-generation female syntype, arrow pointing to areolet. B, dorsal habitus of asexual-generation female syntype. C, frontal view of asexual-generation female syntype. D, label of syntype specimen. E, lateral habitus of sexual-generation female. F, dorsal view of sexual-generation female, arrow pointing to scutellar fovea. (Photos A–D by Rachel Osborn, USNM: http://n2t.net/ark:/65665/m3098f569a-1f76-44b1-8519- c06bf912057d, Accessed 28 September 2020)
Figure 6 in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 6. Maximum likelihood tree for Belonocnema of the southern and south-eastern USA based on sampling of 23 populations and COI data collected by Schuler et al. (2018). Numbers at nodes represent ultrafast bootstrap and SH-aLRT. (See Supporting Information, Table S1 for corresponding site abbreviations.)
Figure 2. Belonocnema treatae. A in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 2. Belonocnema treatae. A, lateral habitus of sexual-generation female lectotype. B, dorsal habitus of sexualgeneration female lectotype. C, frontal view of sexual-generation female lectotype, arrow pointing to tibial spur. D, label of lectotype specimen. E. lateral habitus of asexual generation female. F, dorsal view of sexual generation female, arrow pointing to scutellar fovea. (Photos A–D by Dominique Zimmermann, NHMW.)
Figure 3. Belonocnema fossoria. A in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 3. Belonocnema fossoria. A, lateral habitus of asexual-generation female syntype, arrow pointing to tibial spur. B, dorsal habitus of asexual-generation female syntype. C, frontal view of asexual-generation female syntype. D, label of syntype specimen. E, lateral habitus of sexual-generation female. (Photos A–D by Rachel Osborn, USNM: http://n2t.net/ ark:/65665/36d24dd5f-fe3b-4085-aecd-0568264b43a9, Accessed 28 September 2020)
Figure 1 in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 1. Belonocnema fossoria (A–D), Belonocnema kinseyi (E, F). A, sexual-generation root gall. B, adult female sexual generation. C, fully lignified asexual-generation leaf gall on Q. geminata. D, adult asexual generation. E, fully lignified asexual-generation leaf gall on Q. fusiformis. (Leaf galls produced by B. kinseyi on Q. fusiformis and Q. virginiana are indistinguishable from leaf galls produced by B. treatae on Q. virginiana.) F, adult asexual generation (by Jena Johnson).
Distribution. Warmer waters ofthe Pacific and Indian oceans in an area ranging from E Africa, S India and Sri Lanka to Galapagos Is, and possibly as far as Central and South America. Exact distribution remains unclear due to the small number of known strandings, and the taxonomic confusion between the Deraniyagala's Beaked Whale and the Ginkgo-toothed Beaked Whale (M. ginkgodens). in Ziphiidae
Distribution. Warmer waters ofthe Pacific and Indian oceans in an area ranging from E Africa, S India and Sri Lanka to Galapagos Is, and possibly as far as Central and South America. Exact distribution remains unclear due to the small number of known strandings, and the taxonomic confusion between the Deraniyagala's Beaked Whale and the Ginkgo-toothed Beaked Whale (M. ginkgodens).
Distribution. Warmer waters ofthe Pacific and Indian oceans in an area ranging from S India and Sri Lanka to Taiwan, Japan, SE Australia, Galapagos Is, and California. Exact distribution remains unclear due to the small number of known strandings, and the taxonomic confusion between the Ginkgo-toothed Beaked Whale and the Deraniyagala's Beaked Whale (Mesoplodonhotaula). in Ziphiidae
Distribution. Warmer waters ofthe Pacific and Indian oceans in an area ranging from S India and Sri Lanka to Taiwan, Japan, SE Australia, Galapagos Is, and California. Exact distribution remains unclear due to the small number of known strandings, and the taxonomic confusion between the Ginkgo-toothed Beaked Whale and the Deraniyagala's Beaked Whale (Mesoplodonhotaula).
Figure 15 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 15. SEM micrographs of radula in Coryphella nobilis and Coryphella sanamyanae (former Borealea). A, Coryphella nobilis, ZMMU WS14379, posterior radular portion. B, Coryphella nobilis, MIMB40023, middle radular portion. C, Coryphella nobilis, ZMMU WS14384, middle radular portion. D, Coryphella nobilis, ZMMU WS14933, middle radular portion. E, Coryphella sanamyanae, ZMMU WS14417, middle radular portion. F, Coryphella sanamyanae, ZMMU WS14955, middle radular portion. G, Coryphella sanamyanae, ZMMU WS14416, middle radular portion. Scale bars: A–D, F = 30 µm; E, G = 10 µm.
Figure 16 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 16. SEM micrographs of jaws in Coryphella nobilis and Coryphella sanamyanae (former Borealea). A, Coryphella nobilis, ZMMU WS14379, masticatory process of jaws. B, Coryphella nobilis, ZMMU WS14379, details of denticulation on masticatory process of jaws. C, Coryphella sanamyanae, ZMMU WS14416, masticatory process of jaws. D, Coryphella sanamyanae, ZMMU WS14416, details of denticulation on masticatory process of jaws. Scale bars: A, D = 30 µm; B = 10 µm; C = 100 µm.
Figure 14 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 14. Living specimens of the species Coryphella sanamyanae (former Borealea sanamyanae). A, ZMMU WS14987, 46 mm in length alive. B, ZMMU WS14956, 16 mm in length alive. C, voucher not specified, 27 mm in length alive. D, ZMMU WS14973, 15 mm in length alive. E, ZMMU WS14433, 22 mm in length alive. F, ZMMU WS14416, 19 mm in length preserved. G, voucher not specified, 27 mm in length alive. H, ZMMU WS14417, 24 mm in length alive. I, ZMMU WS14955, 26 mm in length alive.
Figure 11 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 11. SEM micrographs of radula in Coryphella gracilis and Coryphella amabilis (former Microchlamylla). A, Coryphella gracilis, ZMMU WS14915, middle radular portion. B, Coryphella gracilis, ZMMU WS14914, middle radular portion. C, Coryphella gracilis, ZMMU WS14922, middle radular portion. D, Coryphella amabilis, ZMMU WS14966, middle radular portion. E, Coryphella amabilis, ZMMU WS14960, middle radular portion. F, Coryphella amabilis, ZMMU WS14418, middle radular portion. G, Coryphella amabilis, ZMMU WS14395, middle radular portion. Scale bars: A–E, G = 30 µm; F = 10 µm.
Figure 12 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 12. SEM micrographs of jaws in Coryphella gracilis and Coryphella amabilis (former Microchlamylla). A, Coryphella gracilis, right jaw plate, ZMMU WS14915. B, Coryphella gracilis, details of denticulation on masticatory process, ZMMU WS14915. C, Coryphella amabilis, ZMMU WS14960, left jaw plate. D, Coryphella amabilis, ZMMU WS14960, details of denticulation on masticatory process. E, Coryphella amabilis, ZMMU WS14966, right jaw plate. F, Coryphella amabilis, ZMMU WS14966, details of denticulation on masticatory process. Scale bars: A, C, E = 100 µm, B, F = 30 µm, D = 10 µm.
Figure 13 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 13. Living specimens of the species Coryphella nobilis (former Borealea nobilis). A, voucher not specified, 38 mm in length alive. B, ZMMU WS14443, 26 mm in length preserved. C, juvenile, WS14379, 9 mm in length preserved. D, juvenile, ZMMU WS14934, 13 mm in length alive. E, subadult, ZMMU WS14935, 19 mm in length alive. F, MIMB40022, 19 mm in length preserved. Photo credits: A, C, Sergey Gorin; B, Tatiana Antokhina; D, E, Irina Ekimova; F, Anastassya Mayorova.
Figure 10 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 10. Living specimens of Coryphella amabilis (former Microchlamylla amabilis). A, ZMMU WS14990, c. 18 mm in length. B, ZMMU WS14960, c. 15 mm in length. C, ZMMU WS14961, c. 14 mm in length. D, ZMMU WS14957, c. 16 mm in length. E, ZMMU WS14997, c. 7 mm in length. F, ZMMU WS14993, c. 10 mm in length. G, subadult specimen, Sea of Japan, voucher was not specified. H, ZMMU WS14996, c. 15 mm in length. I, juvenile specimen, Sea of Japan, voucher was not specified. Photo credits: A–F, H, Tatiana Antokhina; G, I, Anton Chichvarkhin.
Figure 1 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae
Figure 1. Phylogenetic hypotheses of Flabellinoidea s.l. based on the concatenated dataset. A, Maximum likelihood, numbers above branches indicate bootstrap values (> 60). B, Bayesian inference, numbers above branches indicate posterior probabilities (> 0.9). Species-level clades and outgroups are collapsed.
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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.