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FIGURE 3 in Morphological and molecular identification of a new species of Fulvoderma (Hymenochaetaceae, Basidiomycota) from the Yunnan-Guizhou Plateau, China
FIGURE 3. Basidiomata of Fulvoderma yunnanense. A. The front of the basidiomata. B. The back of the basidiomata. Bars: A = 2 cm; B = 2 mm (Holotype: CLZhao 10854). Photoplate by: Jia-Jin Li.
Fig. 1. A in On the southernmost high Andean scorpion species, with the identification of a cryptic new species of Brachistosternus (Bothriuridae) through morphology, molecular data and species distribution models
Fig. 1. A. Path to Paso San Francisco international pass, 3500 m asl, Catamarca, Argentina, type locality of Brachistosternus diaguita n. sp. B. Brachistosternus diaguita n. sp. female living specimen.
Fig. 21. A–F. Climacia desordenata Monserrat, 2005 in Taxonomic revision and first phylogeny of Climacia McLachlan, 1869 (Neuroptera: Sisyridae), with new species and identification key
Fig. 21. A–F. Climacia desordenata Monserrat, 2005: A, Distribution map. B, Forewing. C, Hind wing. D, Female genitalia, lateral view. E, 10th gonocoxite complex, dorsal view. F, Same, but lateral view (Red stars = new records). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
TABLE 1 in A checklist of Nylanderia (Hymenoptera: Formicidae: Formicinae) from Hong Kong and Macao SARs, with an illustrated identification key for species in Southeast China and Taiwan
<p><b>TABLE 1</b>. Records of the <i>Nylanderia</i> species occurring in Hong Kong and Macao. NR: new record; CR: confirmed record; DB: dubious record; +: species previously recorded for the Special Administrative Regions; -: no records for the Special Administrative Regions.</p><table><tbody><tr><th><b>Species</b></th><th><b>Hong Kong</b></th><th><b>Macao</b></th></tr></tbody><tbody><tr><th><i>N. amia</i></th><td><b>NR</b></td><td><b>+</b></td></tr><tr><th><i>N. birmana</i></th><td><b>NR</b></td><td><b>-</b></td></tr><tr><th><i>N. bourbonica</i></th><td><b>DB</b></td><td><b>DB</b></td></tr><tr><th><i>N. emmae</i></th><td>+</td><td><b>-</b></td></tr><tr><th><i>N. flaviabdominis</i></th><td><b>+</b></td><td><b>-</b></td></tr><tr><th><i>N. flavipes</i></th><td><b>NR</b></td><td><b>-</b></td></tr><tr><th><i>N. indica</i></th><td><b>CR</b></td><td><b>-</b></td></tr><tr><th><i>N. picta</i></th><td><b>+</b></td><td><b>NR</b></td></tr><tr><th><i>N. sharpii</i></th><td><b>NR</b></td><td><b>+</b></td></tr><tr><th><i>N. taylori</i></th><td><b>NR</b></td><td><b>+</b></td></tr><tr><th><i>N. vividula</i></th><td><b>DB</b></td><td><b>DB</b></td></tr><tr><th><i>N. yaeyamensis</i></th><td><b>NR</b></td><td><b>NR</b></td></tr><tr><th><i>N. yerburyi</i></th><td><b>NR</b></td><td><b>+</b></td></tr><tr><th><i>N.</i> IBBL-01</th><td><b>NR</b></td><td><b>NR</b></td></tr><tr><th><i>N.</i> IBBL-02</th><td>NR</td><td>NR</td></tr><tr><th><b>Total</b></th><td>13</td><td>8</td></tr></tbody></table>
FIGURES 33–35 in Identification key, checklist and new species of Loneura Navás (Psocodea: 'Psocoptera': Ptiloneuridae) from Brazil
FIGURES 33–35. Hypandrium of Loneura species. 33. L. amazonica (New). 34. L. maracaensis García Aldrete. 35. L. baiana Moura Lima et al.
FIGURE. Puccinia magnusiana on Clematis sp. (A), Ranunculus chinensis (B–F) and Phragmites australis (G–K). A. Plants producing spermogonia and aecia on the hypertrophic stem. B. Vertical section of a spermogonium. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Acium observed under SEM. F. Aeciospores with verrucose surface observed under SEM. G. Aeciospores. H, I. Telia on the leaf surface. J. Teliospores. K. Vertical section of telia. Scale bars: B, K = 30 μm, C = 50 μm, E = 100 μm, F = 3 μm, G = 10 μm, J = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia magnusiana on Clematis sp. (A), Ranunculus chinensis (B–F) and Phragmites australis (G–K). A. Plants producing spermogonia and aecia on the hypertrophic stem. B. Vertical section of a spermogonium. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Acium observed under SEM. F. Aeciospores with verrucose surface observed under SEM. G. Aeciospores. H, I. Telia on the leaf surface. J. Teliospores. K. Vertical section of telia. Scale bars: B, K = 30 μm, C = 50 μm, E = 100 μm, F = 3 μm, G = 10 μm, J = 20 μm.
FIGURE. Puccinia oncospora on Trillium kamtschaticum (A–D) and Phalaris arundinacea (E–G). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aeciospores. E. Telia on the leaf surface. F. Teliospores. G. Vertical section of telia. Scale bars: C, D, F, G = 30 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia oncospora on Trillium kamtschaticum (A–D) and Phalaris arundinacea (E–G). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aeciospores. E. Telia on the leaf surface. F. Teliospores. G. Vertical section of telia. Scale bars: C, D, F, G = 30 μm.
FIGURE. Puccinia caulophylli on Caulophyllum robustum (A–G) and Milium effusum (H–N). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Vertical section of a spermogonium. C. Vertical section of an aecia surrounded with peridia. D, E. Aecia on the leaf surface observed by SEM. F. Aeciospores with verrucose surface observed by SEM. G. Aeciospores. H. Telia on the lower leaf surface. I. Uredinia on the leaf surface observed by SEM. J. Uredinia and telia on the leaf surface. K. Vertical section of an uredinium with paraphyses. L. Urediniospore observed by SEM. M. Vertical section of telia covered by host epidermis. N. Vertical section of a telium covered by host epidermis observed by SEM. Scale bars: B, G, N = 30 μm, C, E, I = 100 μm, F, L = 10 μm, K, M = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia caulophylli on Caulophyllum robustum (A–G) and Milium effusum (H–N). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Vertical section of a spermogonium. C. Vertical section of an aecia surrounded with peridia. D, E. Aecia on the leaf surface observed by SEM. F. Aeciospores with verrucose surface observed by SEM. G. Aeciospores. H. Telia on the lower leaf surface. I. Uredinia on the leaf surface observed by SEM. J. Uredinia and telia on the leaf surface. K. Vertical section of an uredinium with paraphyses. L. Urediniospore observed by SEM. M. Vertical section of telia covered by host epidermis. N. Vertical section of a telium covered by host epidermis observed by SEM. Scale bars: B, G, N = 30 μm, C, E, I = 100 μm, F, L = 10 μm, K, M = 20 μm.
FIGURE. Puccinia epigejos on Calamagrostis epigeios A, B. Telia on the leaf surface. C. Vertical section of an uredinium with abundant paraphyses. D. Vertical section of a telium with paraphyses. E. Vertical section of a telium. Scale bars: C = 20 μm, D, E = 30 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia epigejos on Calamagrostis epigeios A, B. Telia on the leaf surface. C. Vertical section of an uredinium with abundant paraphyses. D. Vertical section of a telium with paraphyses. E. Vertical section of a telium. Scale bars: C = 20 μm, D, E = 30 μm.
FIGURE 20 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 20. Puccinia caricis-jilinensis on Urtica laetevirens (A–D, F, G) and Carex sp. (E, H–K). A. Plants producing spermogonia and aecia on the leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Vertical section of an aecium surrounded with peridia. E. Plants producing uredinia and telia on the leaf surface in the field. F. An aecium observed under SEM. G. Aeciospores with granules on the surface observed under SEM. H. Uredinia and telia on the lower leaf surface. I. Urediniospores. J. Vertical section of an uredinium. K. Vertical section of a telium. Scale bars: C, I, J, K = 20 μm, D, F = 100 μm, G = 5 μm.
FIGURE 1 in A new species of Rhopalopsole Klapálek, 1912 with preliminary female identifications in this genus
FIGURE 1. Rhopalopsole singiplatta, sp. nov. A. male head and pronotum, dorsal view; B. female head and pronotum, dorsal view; C. female abdominal terminalia, ventral view.
FIGURE 30 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 30. Ponticola hircaniaensis. ZM-CBSU S099-5, male, paratype, 73.55 mm SL, Kaboudval Stream, Golestan Province, Iran (Zarei et al. 2022a).
DNA barcodes are ineffective for species identification of Acropora corals from the aquarium trade
<p>DNA barcode sequences</p>
FIGURE 2 in A new species of the genus Phytocoris (Hemiptera: Miridae), with an identification key to amygdali - group species of the subgenus Compsocerocoris found in Iran
FIGURE 2. Male genitalia of Phytocoris (Compsocerocoris) darakiensis sp. nov. A–D, left paramere, different views; E–H, right paramere, different views; I, endosoma, lateral view. Scale= 0.1 mm.
FIGURE 1 in Two new species and new findings in the genus Pallenopsis (Pycnogonida: Pallenopsidae) with an updated identification key to Antarctic and Sub-Antarctic species
FIGURE 1. Pallenopsis gracilis sp. nov. Holotype, male. A lateral view; B Dorsal view (showing the relative size and distribution of spinules). Scale bars: 0.5 mm (A, B.)
FIGURE 8 in Marine mites (Acari: Hydrachnidia) of the Mediterranean Sea: Descriptions of two new species, key for identification and future prospects
FIGURE 8. The number of pontarachnid mite species in the Mediterranean Sea. For country abbreviations, and records information see Table 1.
FIGURE 3 in Marine mites (Acari: Hydrachnidia) of the Mediterranean Sea: Descriptions of two new species, key for identification and future prospects
FIGURE 3. Litarachna muratsezgini sp. nov., female holotype: A = idiosoma, ventral view (platelet with three pores and wheel-like acetabula indicated by arrows in double magnification); B = genital field and posterior margin of Cx-IV; C = I-L; D = IV-L-2-6; E = palp. Scale bars = 100 µm.
FIGURES 1–8. General appearance and diagnostic characters used for the species delimitation. 1 in Male identification, generic classification and sexual dimorphism of Micronychus pardus (Kazantsev, 2018) comb. nov. (Coleoptera: Lycidae: Calochrominae)
FIGURES 1–8. General appearance and diagnostic characters used for the species delimitation. 1. General appearance of M. pardus comb. nov., male, 2. General appearance of M. pardus comb. nov., female, 3. Male antennae, 4. Male genitalia of M. pardus comb. nov., 5. Male genitalia of Micronychus sp., 6. head of M. pardus comb. nov., 7. Pronotum of M. pardus comb. nov., 8. Pronotum of Calochromus glaucopterus. Scale bars (1–2) 2 mm, (3–7) 0.5 mm, (8) 1 mm.
FIGURES 17–24 in On the correct identification of 'Cyana dohertyi (Elwes, 1890)' from northern Indochina and China, with descriptions of two new species and a new subspecies (Lepidoptera, Erebidae, Arctiinae)
FIGURES 17–24. Cyana dohertyi sspp.: adults. 17, C. dohertyi dohertyi, syntype ♂, NE India (©NHMUK); 18, C. dohertyi dohertyi, syntype ♀, NE India (©NHMUK); 19, C. dohertyi dohertyi, ♂, China, NW Yunnan (MWM/ZSM); 20, C. dohertyi dohertyi, ♀, NE India (©NHMUK); 21, C. dohertyi mertsana, holotype ♂, Thailand (©NHMUK); 22, C. dohertyi mertsana, paratype ♂, Vietnam (MWM/ZSM); 23, C. dohertyi mertsana, paratype ♂, Thailand (MWM/ZSM); 24, C. dohertyi mertsana, paratype ♀, Thailand (MWM/ZSM).
FIGURES 170–180 in Unexpected diversity of Lacon Laporte, 1838 (Coleoptera: Elateridae: Agrypninae) in the Levant: revised species concepts, new species, and an identification key
FIGURES 170–180. Morphology of Lacon zenobiae sp. nov. Holotype, male: 170, habitus, dorsal view; 171, habitus, lateral view. Paratype, female: 172, habitus, dorsal view; 173, habitus, lateral view. 174, holotype, male, antenna. Pronotum: 175, holotype, male; 176, paratype, female. 177, holotype, male, scutellar shield. 178, holotype, male, detail of elytral surface. 179,
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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.