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Figure 3 from: Kavanaugh D, Archambeault S, Roopnarine P, Ledford J (2011) A re-consideration of the taxonomic status of Nebria lacustris Casey (Coleoptera, Carabidae, Nebriini) based on multiple datasets – a single species or a species complex? ZooKeys 147: 199-228. https://doi.org/10.3897/zookeys.147.2082
Figure 3 - Map of known localities for members of the lacustris species subgroup of Nebria; black and red dots = Nebria lacustris LeConte; blue and yellow dots = Nebria bellorum Kavanaugh; red and yellow dots, respectively, denote localities from which DNA samples were obtained (see also Table 1); scale line = 500 km;
Figure 13 from: Kavanaugh D, Archambeault S, Roopnarine P, Ledford J (2011) A re-consideration of the taxonomic status of Nebria lacustris Casey (Coleoptera, Carabidae, Nebriini) based on multiple datasets – a single species or a species complex? ZooKeys 147: 199-228. https://doi.org/10.3897/zookeys.147.2082
Figure 13 - Map showing the location and extent of the French Broad River in North Carolina and Tennessee. Map copyright Karl Musser, distributed under a Creative Commons Attribution-Share Alike 2.5 Generic license [http://creativecommons.org/licenses/by-sa/2.5/deed.en] and available at http://en.wikipedia.org/wiki/File:Frenchbroadrivermap.png
Figures 4-5 from: Kavanaugh D, Archambeault S, Roopnarine P, Ledford J (2011) A re-consideration of the taxonomic status of Nebria lacustris Casey (Coleoptera, Carabidae, Nebriini) based on multiple datasets – a single species or a species complex? ZooKeys 147: 199-228. https://doi.org/10.3897/zookeys.147.2082
Figures 4-5 - Nebria lacustris Casey, male, dorsal habitus; scale line = 1.0 mm 4 Fleury Bay, Lake Champlain, Grand Isle County, Vermont 5 Ridley Brook, Washington County, Vermont.
Figure 12 from: Kavanaugh D, Archambeault S, Roopnarine P, Ledford J (2011) A re-consideration of the taxonomic status of Nebria lacustris Casey (Coleoptera, Carabidae, Nebriini) based on multiple datasets – a single species or a species complex? ZooKeys 147: 199-228. https://doi.org/10.3897/zookeys.147.2082
Figure 12 - Majority-rule consensus tree from fully-partitioned Bayesian analysis (see Table 3 for evolutionary models used) of concatenated data set; only branches supported by posterior probability values of 0.95 or greater (as noted on branches) indicated. Capital letters (A through E) denote branches discussed in the text. Samples within colored boxes designate the following: gray = specimens of the lacustris species subgroup; red = specimens from Iowa; green = specimens from the Green Mountains, Vermont; blue = specimen from the shore of Lake Champlain, Vermont; orange = specimens from the southern Appalachian highlands (Nebria bellorum).
Figures 3-4 from: Ermilov S, Shtanchaeva U, Subias L, Anichkin A (2014) The family Ctenobelbidae (Acari, Oribatida), with description of a new species and discussion on systematic placement and taxonomic status of the genus Berndamerus Mahunka, 1977. ZooKeys 395: 1-10. https://doi.org/10.3897/zookeys.395.7224
Figures 3-4 - Ctenobelba (Berndamerus) bugiamapensis sp. n.: 3 ventral view (legs except trochanter IV not shown) 4 posterior view. Scale bar 100 μm.
Figures 1-2 from: Ermilov S, Shtanchaeva U, Subias L, Anichkin A (2014) The family Ctenobelbidae (Acari, Oribatida), with description of a new species and discussion on systematic placement and taxonomic status of the genus Berndamerus Mahunka, 1977. ZooKeys 395: 1-10. https://doi.org/10.3897/zookeys.395.7224
Figures 1-2 - Ctenobelba (Berndamerus) bugiamapensis sp. n.: 1 dorsal view (legs not shown) 2 lateral view (legs except trochanter III not shown). Scale bar 100 μm.
Figures 5-9 from: Ermilov S, Shtanchaeva U, Subias L, Anichkin A (2014) The family Ctenobelbidae (Acari, Oribatida), with description of a new species and discussion on systematic placement and taxonomic status of the genus Berndamerus Mahunka, 1977. ZooKeys 395: 1-10. https://doi.org/10.3897/zookeys.395.7224
Figures 5-9 - Ctenobelba (Berndamerus) bugiamapensis sp. n., adult: 5 subcapitulum, left half, ventral view 6 tibia and tarsus of palp 7 chelicera 8 leg I (trochanter and basal part of femur not shown), right, antiaxial view 9 leg IV, right, antiaxial view. Scale bar 20 μm (5, 7); 10 μm (6); 50 μm (8–9).
Figures 37-41 from: Ermilov S, Tolstikov A, Weigmann G (2013) Morphology of adult and juvenile instars of Galumna obvia (Acari, Oribatida, Galumnidae), with discussion of its taxonomic status. ZooKeys 357: 11-28. https://doi.org/10.3897/zookeys.357.6404
Figures 37-41 - Adults of Galumnidae: 37 Galumna obvia, lamellar region of prodorsum, lateral view (specimen from Berlin) 38 Galumna obvia, lamellar region of prodorsum, lateral view (specimen from Oder Valley, North-East Germany) 39 Galumna paragibbula, lateral view of prodorsum 40 Pergalumna nervosa, lateral view of prodorsum 41 Pergalumna nervosa, dorso-frontal view of left part of prodorsum (depressed mounted specimen). Abbreviation: NG– notogastral shield. Scale bar 100 μm.
Figures 1-8 from: Ermilov S, Tolstikov A, Weigmann G (2013) Morphology of adult and juvenile instars of Galumna obvia (Acari, Oribatida, Galumnidae), with discussion of its taxonomic status. ZooKeys 357: 11-28. https://doi.org/10.3897/zookeys.357.6404
Figures 1-8 - Galumna obvia, adult: 1 dorsal view 2 ventral view (gnathosoma and legs not shown) 3 anterior part of body, lateral view 4 pteromorph 5 posterior view 6 lamellar seta and parts of lamellar and sublamellar lines 7 sensillus 8 dorso-lateral part of notogaster, lateral view. Scale bars 200 μm (1–3, 5), 100 μm (4), 20 μm (6–8).
Figures 34-36 from: Ermilov S, Tolstikov A, Weigmann G (2013) Morphology of adult and juvenile instars of Galumna obvia (Acari, Oribatida, Galumnidae), with discussion of its taxonomic status. ZooKeys 357: 11-28. https://doi.org/10.3897/zookeys.357.6404
Figures 34-36 - Galumna obvia, juvenile instars: 34 leg I, left, antiaxial view 35 leg II, left, antiaxial view 36 leg III, right, paraxial view. Scale bar 20 μm.
Figures 25-33 from: Ermilov S, Tolstikov A, Weigmann G (2013) Morphology of adult and juvenile instars of Galumna obvia (Acari, Oribatida, Galumnidae), with discussion of its taxonomic status. ZooKeys 357: 11-28. https://doi.org/10.3897/zookeys.357.6404
Figures 25-33 - Galumna obvia, juvenile instars: 25 subcapitulum, right half, ventral view 26 palp 27 chelicera 28 epimeral region of larva 29 epimeral region of protonymph 30 epimeral region of deutonymph 31 anogenital region of larva 32 anogenital region of protonymph 33 anogenital region of deutonymph. Scale bars 20 μm (25–27), 50 μm (28, 29, 31), 100 μm (30, 32, 33).
Figures 21-24 from: Ermilov S, Tolstikov A, Weigmann G (2013) Morphology of adult and juvenile instars of Galumna obvia (Acari, Oribatida, Galumnidae), with discussion of its taxonomic status. ZooKeys 357: 11-28. https://doi.org/10.3897/zookeys.357.6404
Figures 21-24 - Galumna obvia, juvenile instars: 21 larva, dorsal view 22 larva, lateral view (gnathosoma and legs except basal parts not shown) 23 deutonymph, dorsal view 24 deutonymph, lateral view (gnathosoma and and legs except basal parts not shown). Scale bars 100 μm (21, 22), 200 μm (23, 24).
Figures 9-20 from: Ermilov S, Tolstikov A, Weigmann G (2013) Morphology of adult and juvenile instars of Galumna obvia (Acari, Oribatida, Galumnidae), with discussion of its taxonomic status. ZooKeys 357: 11-28. https://doi.org/10.3897/zookeys.357.6404
Figures 9-20 - Galumna obvia, adult: 9 porose area Ad 10 porose area Aa 11 porose area A1 12 porose area A2 13 porose area A3 14 porose area Ap 15 subcapitulum, right half, ventral view 16 palptarsus 17 anterior part of chelicera 18 genital plate, left 19–20 lobes of ovipositor. Scale bars 20 μm (9–14, 16, 19, 20), 50 μm (15, 17, 18).
Figure 3 from: Dehling J, Sinsch U (2013) Diversity of Ptychadena in Rwanda and taxonomic status of P. chrysogaster Laurent, 1954 (Amphibia, Anura, Ptychadenidae). ZooKeys 356: 69-102. https://doi.org/10.3897/zookeys.356.5878
Figure 3 - Morphological shape differentiation among 89 specimens representing five Ptychadena species, as assessed by principal component analysis (Table 3). A Individual scores obtained for 31 females B Individual scores obtained for 58 males.
Figure 6 from: Dehling J, Sinsch U (2013) Diversity of Ptychadena in Rwanda and taxonomic status of P. chrysogaster Laurent, 1954 (Amphibia, Anura, Ptychadenidae). ZooKeys 356: 69-102. https://doi.org/10.3897/zookeys.356.5878
Figure 6 - Maximum likelihood phylogram of species in the genus Ptychadena and Hildebrandtia ornata as outgroup, based on comparison of 548 base pairs of the mitochondrial 16S rRNA gene. Included are specimens from Rwanda and samples taken from GenBank (see Dehling and Sinsch in press for a complete list of sequences and accession numbers). Numbers above nodes are bootstrap support values (only values >0.50 are shown).
Figure 1 from: Dehling J, Sinsch U (2013) Diversity of Ptychadena in Rwanda and taxonomic status of P. chrysogaster Laurent, 1954 (Amphibia, Anura, Ptychadenidae). ZooKeys 356: 69-102. https://doi.org/10.3897/zookeys.356.5878
Figure 1 - Males of Ptychadena from Rwanda in life. A Ptychadena anchietae B Ptychadena chrysogaster [Foto: E. Fischer] C Ptychadena nilotica D Ptychadena porosissima.
Figure 2 from: Dehling J, Sinsch U (2013) Diversity of Ptychadena in Rwanda and taxonomic status of P. chrysogaster Laurent, 1954 (Amphibia, Anura, Ptychadenidae). ZooKeys 356: 69-102. https://doi.org/10.3897/zookeys.356.5878
Figure 2 - A Preserved female holotype of Ptychadena chrysogaster (RMCA 109096) from Lac Karago, Rwanda; dorsal view (left) and ventral view (right) B Preserved male specimen of Ptychadena uzungwensis (RMCA 108993-108997) from Munini, Rwanda; dorsal view (left) and ventral view (right). Not to scale.
Figure 5 from: Dehling J, Sinsch U (2013) Diversity of Ptychadena in Rwanda and taxonomic status of P. chrysogaster Laurent, 1954 (Amphibia, Anura, Ptychadenidae). ZooKeys 356: 69-102. https://doi.org/10.3897/zookeys.356.5878
Figure 5 - Volar view of hands (top) and plantar view of feet (bottom) of males of Ptychadena anchietae (a), Ptychadena chrysogaster (b), Ptychadena nilotica (c), Ptychadena porosissima (d), and Ptychadena uzungwensis from Rwanda. See also Table 1.
Figure 4 from: Dehling J, Sinsch U (2013) Diversity of Ptychadena in Rwanda and taxonomic status of P. chrysogaster Laurent, 1954 (Amphibia, Anura, Ptychadenidae). ZooKeys 356: 69-102. https://doi.org/10.3897/zookeys.356.5878
Figure 4 - Morphological shape differentiation among 89 specimens representing five Ptychadena species, as assessed by discriminant analyses (Statistical details are given in Table 4). A Individual scores obtained for 31 females B Individual scores obtained for 58 males.
Figure 1 from: Perger R (2013) Did the genus Parandrocephalus Heller, 1916 (Coleoptera, Cerambycidae, Callichromatini) cross the Wallace line? The taxonomic status of Parandrocephalus blairi Bentanachs & Vives 2009 and a new subgenus of Hexamitodera Heller, 1896, with notes on convergent evolution and secondary sexual characters. ZooKeys 293: 77-89. https://doi.org/10.3897/zookeys.293.5133
Figure 1 - Dorsal view habitus, scale bars 10 mm A Parandrocephalus eversor, male, Malaysia, Cameron Highlands, Kampong Rajah B idem, female C Hexamitodera (Sulcognatha) blairi comb. n., male, Indonesia, Central Sulawesi, Puncak D idem, female, allotype, Indonesia, Sulawesi, Palolo Palu E Hexamitodera semivelutina, male, Sulawesi F, idem, female, holotype, Indonesia, North Sulawesi.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.