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Figures 26-31 from: Potapov MB, Janion-Scheepers C, Deharveng L (2020) Taxonomy of the Cryptopygus complex. III. The revision of South African species of Cryptopygus and Isotominella (Collembola, Isotomidae). ZooKeys 945: 99-127. https://doi.org/10.3897/zookeys.945.51860
Figures 26-31 C. postantennalis sp. nov. 26 macrochaetotaxy and s-ms-pattern 27PAO and eye area 28Ant. I 29 apical part of Ant. IV 30 dens, lateral view 31Abd. IV and V. Abbreviations: org organit, sms subapical ms-chaeta, ss s-chaeta, bms basal ms-chaeta, msms-chaeta.
Figures 42-46 from: Potapov MB, Janion-Scheepers C, Deharveng L (2020) Taxonomy of the Cryptopygus complex. III. The revision of South African species of Cryptopygus and Isotominella (Collembola, Isotomidae). ZooKeys 945: 99-127. https://doi.org/10.3897/zookeys.945.51860
Figures 42-46 C. longisensillus sp. nov. 42 macrochaetotaxy and s-ms-pattern 43, 44 dens, lateral (43) and anterior (44) views 45Abd. IV and fused Abd. V and VI 46 tibiotarsus and claw of Leg III. Abbreviations: ss s-chaeta, msms-chaeta.
Figures 1-3 from: Potapov MB, Janion-Scheepers C, Deharveng L (2020) Taxonomy of the Cryptopygus complex. III. The revision of South African species of Cryptopygus and Isotominella (Collembola, Isotomidae). ZooKeys 945: 99-127. https://doi.org/10.3897/zookeys.945.51860
Figures 1-3 Appearance and macrochaetotaxy of C. bulbus sp. nov., ventral (1) and lateral (2) views, and C. abulbus sp. nov. (3).
Figure 14 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 14. Distribution records of Megalopta species. (A) M. aegis Vachal (grey circles) and M. aeneicollis Friese (black squares); (B) M. nitidicollis Friese; (C) M. sulciventris Friese; (D) M. amoena Spinola.
Figure 11 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 11. Males of Megalopta. (A, C, D). Posterolateral view of mesosoma; (A) M. karitiana sp. n. from Ouro Preto do Oeste, Brazil; (B) ventral view of sternum 3‒4 of M. mapinguari sp. n. from Rio Branco, Brazil; (C) M. mapinguari sp. n. from Rio Branco, Brazil; (D) M. xavante sp. n. from Nova Xavantina, Brazil; (E) dorsal view of mesosoma of M. atlantica Santos & Silveira from Ipanema, Brazil; (F) posterior view of mesosoma of M. purpurata Smith (holotype) from Tefé, Brazil. Scale bar 1 mm.
Figure 10 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 10. Males of Megalopta. (A, C) Frontal view of head; (B, D) frontal view of flagellomeres; (A) M. purpurata Smith (holotype) from Tefé, Brazil; (B) M. atlantica Santos & Silveira from Ipanema, Brazil; (C) M. yanomami sp. n. from Parauapebas, Brazil; (D) M. piraha sp. n. from Manaus, Brazil; (E) lateral view of sternum 4 of M. guarani sp. n. from Chapada dos Guimarães, Brazil; (F) posterolateral view of basal area of mesosoma M. guarani sp. n. from Chapada dos Guimarães, Brazil. Scale bar 1 mm, except in E, scale bar 0.1 mm.
Figure 8 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 8. Males of Megalopta. (A‒C) Ventral view of sternum 3‒4; (A) M. chaperi Vachal Amajari, Brazil; (B) M. amoena Spinola from Alenquer, Brazil; (C) M. mura sp. n. from Parauapebas, Brazil; (D, E) Dorsal view of posterior surface of F6‒F11; (D) M. sulciventris Friese from Manaus, Brazil; (E) M. aegis Vachal from Parauapebas, Brazil; (F) dorsal view of flagellum of M. amoena from Alenquer, Brazil. Scale bar 1 mm.
Figure 6 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 6. Males of Megalopta. (A, B) Lateral view of mesosoma; (A) M. aeneicollis Friese from Manaus, Brazil; (B) M. yanomami sp. n. from Parauapebas, Brazil; (C‒F) posterolateral view of mesosoma; (C) M. sulciventris Friese from Manaus, Brazil; (D) M. aeneicollis Friese from Manaus, Brazil; (E) M. aegis Vachal from Caldas Nova, Brazil; (F) M. nitidicollis Friese from São Paulo de Olivença, Brazil. Scale bar 1 mm.
Figure 5 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 5. Females of Megalopta. (A, C) Lateral view of basitibial plate; (A) Megalopta xavante sp. n. from Nova Xavantina, Brazil; (B) frontal view of head in the female of M. piraha sp. n. from Manaus, Brazil; (C) M. piraha sp. n. from Manaus, Brazil; (D) lateral view of mesosoma of M. amoena from Alenquer, Brazil; (E, F) dorsal view of mesosoma; (E) M. yanomami sp. n. from Parauapebas, Brazil; (F) M. piraha sp. n. from Manaus, Brazil. Scale bar 1 mm.
Figure 7 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 7. Males of Megalopta. (A) Ventral view of sternum 3‒6 of M. aegis Vachal from Caldas Novas, Brazil; (B‒E) posterolateral view of mesosoma; (B) M. chaperi Vachal from Amajari, Brazil; (C) M. amoena Spinola from Alenquer, Brazil; (D) M. guimaraesi Santos & Silveira from Formosa, Brazil; (E) Megalopta mura sp. n. from Presidente Figueiredo, Brazil; (F) lateral view of mesosoma M. mura sp. n. from Ouro Preto do Oeste, Brazil. Scale bar 1 mm.
Figure 3 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 3. Females of Megalopta. (A, F) Posterolateral view of mesosoma; (B, D) dorsal view of mesoscutum; (C, E) lateral view of mesosoma; (A) M. mura sp. n. from Manaus, Brazil; (B, C) M. guimaraesi Santos & Silveira from Alto Paraíso de Goiás, Brazil; (D, E) M. mura sp. n. from Manaus, Brazil; (F) M. xavante sp. n. (holotype) from Nova Xavantina, Brazil. Scale bar 1 mm.
Figure 1 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 1. Females of Megalopta. (A‒C) Lateral view of mesosoma; (A) M. aeneicollis Friese from Novo Airão, Brazil; (B) M. mura sp. n. from Manaus, Brazil; (C) Megalopta yanomami sp. n. from Parauapebas, Brazil; (D, F) posterolateral view of mesosoma; (D) M. sulciventris Friese from Manaus, Brazil; (E) lateral view of head of M. aegis Vachal from Caldas Novas, Brazil; (F) M. guimaraesi Santos & Silveira from Alto Paraíso de Goiás, Brazil. Scale bar 1 mm, except in part E scale bar 0.5 mm.
Data from: The fossil Osmundales (Royal Ferns)—a phylogenetic network analysis, revised taxonomy, and evolutionary classification of anatomically preserved trunks and rhizomes
The Osmundales (Royal Fern order) originated in the late Paleozoic and is the most ancient surviving lineage of leptosporangiate ferns. In contrast to its low diversity today (less than 20 species in six genera), it has the richest fossil record of any extant group of ferns. The structurally preserved trunks and rhizomes alone are referable to more than 100 fossil species that are classified in up to 20 genera, four subfamilies, and two families. This diverse fossil record constitutes an exceptional source of information on the evolutionary history of the group from the Permian to the present. However, inconsistent terminology, varying formats of description, and the general lack of a uniform taxonomic concept renders this wealth of information poorly accessible. To this end, we provide a comprehensive review of the diversity of structural features of osmundalean axes under a standardized, descriptive terminology. A novel morphological character matrix with 45 anatomical characters scored for 15 extant species and for 114 fossil operational units (species or specimens) is analysed using networks in order to establish systematic relationships among fossil and extant Osmundales rooted in axis anatomy. The results lead us to propose an evolutionary classification for fossil Osmundales and a revised, standardized taxonomy for all taxa down to the rank of (sub)genus. We introduce several nomenclatural novelties: (1) a new subfamily Itopsidemoideae (Guaireaceae) is established to contain Itopsidema, Donwelliacaulis, and Tiania; (2) the thamnopteroid genera Zalesskya, Iegosigopteris, and Petcheropteris are all considered synonymous with Thamnopteris; (3) 12 species of Millerocaulis and Ashicaulis are assigned to modern genera (tribe Osmundeae); (4) the hitherto enigmatic Aurealcaulis is identified as an extinct subgenus of Plenasium; and (5) the poorly known Osmundites tuhajkulensis is assigned to Millerocaulis. In addition, we consider Millerocaulis stipabonettiorum a possible member of Palaeosmunda and Millerocaulis estipularis as probably constituting the earliest representative of the (Todea-)Leptopteris lineage (subtribe Todeinae) of modern Osmundoideae.
Data from: Integrative taxonomy improves understanding of native beneficial fauna: revision of the Nearctic Peristenus pallipes complex (Hymenoptera: Braconidae) and implications for release of exotic biocontrol agents
The Nearctic Peristenus pallipes complex (Hymenoptera: Braconidae) consists of two species groups that are further divided into nine species, separated largely using ecological rather than morphological differences. The species are re-examined with an integrative approach using morphometric multivariate ratios, molecular (COI and CytB), and ecological data to test the validity of the nine species. The data support only three valid species [P. dayi Goulet, P. mellipes (Cresson) and P. howardi Shaw] rather than nine. New synonymies include: P. braunae Goulet under P. dayi Goulet 2006 syn.n.; P. carcamoi Goulet, P. otaniae Goulet and P. pseudopallipes (Loan) under P. mellipes (Cresson) syn.n., and finally P. broadbenti Goulet 2006 and P. gillespiei Goulet 2006 under P. howardi Shaw 1999 syn.n. In light of these taxonomic revisions, the biology and distributions of the Nearctic P. pallipes complex are updated, resulting in three morphologically variable, widespread, multivoltine species rather than nine largely univoltine species with patchy distributions. The integrative taxonomic approach used here allowed for a more accurate delineation of native fauna and their potential to be competitively displaced by foreign biocontrol agents.
FIGURE 3 in A new species of Ansonia Stoliczka 1872 (Anura: Bufonidae) from Central Peninsular Malaysia and a revised taxonomy for Ansonia from the Malay Peninsula
FIGURE 3. Living specimen of Ansonia latirostra from Sungai Lembing, Pahang. Specimen uncatalogued.
FIGURE 15 in A revision of the taxonomy and distribution of Archispirostreptus Silvestri 1895 (Diplopoda, Spirostreptida, Spirostreptidae), and description of a new spirostreptid genus with three new species
FIGURE 15. Distribution of Archispirostreptus and Cacuminostreptus species.
FIGURE 10. Dendrelaphis luzonensis Leviton, 1961 in A revision of the taxonomy of Dendrelaphis caudolineatus (Gray, 1834) (Serpentes: Colubridae)
FIGURE 10. Dendrelaphis luzonensis Leviton, 1961, adult from Luzon (CAS 15274; TL 90.5 cm.).
FIGURE 5 in A revision of the taxonomy of Dendrelaphis caudolineatus (Gray, 1834) (Serpentes: Colubridae)
FIGURE 5. Dendrelaphis caudolineatus (Gray, 1834), adult from Nias (ZMB 52010; TL 131.0 cm.).
FIGURE 8. Dendrelaphis fuliginosus Griffin, 1909 in A revision of the taxonomy of Dendrelaphis caudolineatus (Gray, 1834) (Serpentes: Colubridae)
FIGURE 8. Dendrelaphis fuliginosus Griffin, 1909, adult from Mindoro (USNM 508641; TL 113.0 cm.).
FIGURE 83 in Taxonomy of the freshwater crabs of Costa Rica, with a revision of the genus Ptychophallus Smalley, 1964 (Crustacea: Decapoda: Pseudothelphusidae)
FIGURE 83. Distribution map of Ptychophallus tristani (Rathbun, 1896).
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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.