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446 results for “taxonomic position”
Figures 331–336 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 331–336: Orthochirus sejnai sp. n., metasoma and telson under white light. Figures 331–333. Paratype female, lateral (331), dorsal (332), and ventral (333) views. Figures 334–336. Holotype male, lateral (334), dorsal (335), and ventral (336) views. Scale bar: 10 mm.
Figures 268–273 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 268–273: Orthochirus persa stat. n., metasoma and telson under white light. Figures 268–270. Paralectotype female, lateral (268), ventral (269), and dorsal (270) views. Figures 271–273. Lectotype male, lateral (271), ventral (272), and dorsal (273) views. Scale bar: 10 mm.
Figures 106–107 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 106–107. Orthochirus kryzhanovskyi sp. n., holotype male, dorsal (79) and ventral (80) views. Scale bar: 10 mm.
Figures 79–80 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 79–80. Orthochirus grosseri sp. n., holotype female, dorsal (79) and ventral (80) views. Scale bar: 10 mm.
Figures 70–78 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 70–78: Orthochirus formozovi sp. n. Figures 70–71, 74–77. Holotype male, carapace and tergites (70), sternopectinal region and sternites (71), and distal segments of right legs I–IV, retrolateral aspect (74–77 respectively). Figures 72–73, 78. Paratype female from type locality, carapace and tergites I–III (72), sternopectinal region and sternites (73), and distal segments of right leg III, retrolateral aspect (78).
Figures 141–144 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 141–144: Orthochirus melanurus, Kazakhstan, Kyzylorda Province, Baigakum, 44°20'29" to 37"N 66°27'07" to 09"E, FKCP. Figures 141–142. Male, dorsal (141) and ventral (142) views. Figures 143–144. Female, dorsal (143) and ventral (144) views. Scale bars: 10 mm 141–142, 143–144).
Figures 29–32 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 29–32: Orthochirus formozovi sp. n. Figures 29–30. Holotype male, dorsal (29) and ventral (30) views. Figures 31–32. Paratype female from type locality, dorsal (31) and ventral (32) views. Scale bar: 10 mm.
Figures 230–235 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 230–235: Orthochirus nordmanni sp. n., metasoma and telson under UV light. Figures 230–232. Paratype female from type locality, lateral (230), ventral (231), and dorsal (232) views. Figures 233–235. Holotype male, lateral (233), ventral (234), and dorsal (235) views.
Figures 23–28 in Further review of Orthochirus Karsch, 1892 (Scorpiones: Buthidae) from Asia: taxonomic position of O. melanurus, O. persa, O. scrobiculosus, and description of six new species
Figures 23–28. Orthochirus birulai sp. n., holotype female, metasoma and telson, lateral (23, 26), dorsal (24, 27) and ventral (25, 28), under white light (23–25) and UV light (26–28). Scale bar: 10 mm.
Fig. 4 in Taxonomic Position Of Anastrangalia Reyi And A. Sequensi (Coleoptera, Cerambycidae) Based On Molecular And Morphological Data
Fig. 4. Current distribution of A. reyi (stars), A. sequensi (triangles) and A. dubia (squares) in Eurasia.
Fig. 38–45 in Review Of The Genus Geloemyia (Diptera, Pyrgotidae), With Discussion Of Its Taxonomic Position
Fig. 38–45. Geloemyia cockerelli, holotype ♀ (BMNH): 38 — habitus, lateral view; 39–41 — head (39 — anterior, 40 — lateral, 41 — dorsal view); 42 — wing; 43 — mesonotum, dorsal view; 44 — mid femur and tibia, anterior view; 45 — labels.
Fig. 29–37 in Review Of The Genus Geloemyia (Diptera, Pyrgotidae), With Discussion Of Its Taxonomic Position
Fig. 29–37. Geloemyia cheni, sp. n., paratype ♀ (MHNG): 29 — head, dorsal view; 30 — occiput, posterior view; 31–32 — thorax (31 — dorsal, 32 — lateral view); 33 — fore coxa, anterior view; 34 — mid coxa, anterior view; 35–36 — abdomen (35 — dorsal, 36 — lateral view); 37 — apex of oviscape, ventral view. Drawings by the author, incl. pencil drafts.
Supplementary material 1 from: Jablonski D, Masroor R, Hofmann S (2022) On the edge of the Shivaliks: An insight into the origin and taxonomic position of Pakistani toads from the Duttaphrynus melanostictus complex (Amphibia, Bufonidae). Zoosystematics and Evolution 98(2): 275-284. https://doi.org/10.3897/zse.98.79213
Table S1
Figure 3 from: Takano A (2017) Taxonomic study on Japanese Salvia (Lamiaceae): Phylogenetic position of S. akiensis, and polyphyletic nature of S. lutescens var. intermedia. PhytoKeys 80: 87-104. https://doi.org/10.3897/phytokeys.80.11611
Figure 3 - A graph shows the number of specimens examined indumentums at the base of anther connective.
Figure 2 from: Takano A (2017) Taxonomic study on Japanese Salvia (Lamiaceae): Phylogenetic position of S. akiensis, and polyphyletic nature of S. lutescens var. intermedia. PhytoKeys 80: 87-104. https://doi.org/10.3897/phytokeys.80.11611
Figure 2 - Photographs of S. lutescens var. intermedia flowers. a Flower of A. Takano 140806-4-2 (Hyogo), from Mt. Mikuni, Susono-shi, Shizuoka Pref. (Kanto region). Arrows indicate the base of the anther connective. No hairs are visible b Flower of A. Takano 140813-1 (Hyogo), from Mt. Yamatokatsuragi, Gose-shi, Nara Pref. (Kinki region). The red open circle indicates the base of the anther connective. White hairs are visible.
Figure 5 from: Takano A (2017) Taxonomic study on Japanese Salvia (Lamiaceae): Phylogenetic position of S. akiensis, and polyphyletic nature of S. lutescens var. intermedia. PhytoKeys 80: 87-104. https://doi.org/10.3897/phytokeys.80.11611
Figure 5 - The Bayesian maximum clade credibility tree derived from nuclear ribosomal DNA (concatenate dataset of ETS and ITS). ML-bootstrap/Bayesian-PP numbers are shown above or below the corresponding branch. Thick lines denote a clade that was strongly supported with ML-bootstrap and/or Bayesian-PP values greater than 95 %. ML: maximum likelihood; PP: posterior probability.
Figure 4 from: Takano A (2017) Taxonomic study on Japanese Salvia (Lamiaceae): Phylogenetic position of S. akiensis, and polyphyletic nature of S. lutescens var. intermedia. PhytoKeys 80: 87-104. https://doi.org/10.3897/phytokeys.80.11611
Figure 4 - The Bayesian maximum clade credibility tree derived from plastid DNA (concatenate dataset of rbcL, trnL-F, ycf1-rps15). ML-bootstrap/Bayesian PP numbers are shown near the corresponding branch. Thick lines denote a clade that was strongly supported, with ML- bootstrap and/or Bayesian-PP greater than 95 %. ML: maximum likelihood; PP: posterior probability.
Figure 1 from: Takano A (2017) Taxonomic study on Japanese Salvia (Lamiaceae): Phylogenetic position of S. akiensis, and polyphyletic nature of S. lutescens var. intermedia. PhytoKeys 80: 87-104. https://doi.org/10.3897/phytokeys.80.11611
Figure 1 - Map of Japan shows the sites where Salvia lutescens taxa were sampled. Open circle = var. crenata, filled circle = var. intermedia, open square = var. lutescens, filled square = var. stolonifera. The areas encircled with dotted lines show the Kinki and Kanto regions, as indicated.
Figures 12-19 from: Skuhravá M, Massa B, Cerasa G (2016) Rediscovery and identity of Pumilomyia protrahenda De Stefani (Diptera, Cecidomyiidae) in Sicily with redescription and reassessment of its taxonomic position. ZooKeys 617: 129-137. https://doi.org/10.3897/zookeys.617.9850
Figures 12-19 - Rhopalomyia protrahenda comb. n. 12 Female, wing 13 male, first flagellomeres 14 female, fifth tarsomeres 15 female, antenna 16 female, first flagellomeres 17 female, claws and empodium 18 male terminalia, lateral view 19 frontal view.
Figures 20-29 from: Skuhravá M, Massa B, Cerasa G (2016) Rediscovery and identity of Pumilomyia protrahenda De Stefani (Diptera, Cecidomyiidae) in Sicily with redescription and reassessment of its taxonomic position. ZooKeys 617: 129-137. https://doi.org/10.3897/zookeys.617.9850
Figures 20-29 - 20 Artemisia arborescens covered with galls 21 female of Rhopalomyia protrahenda next to apical leaves of the host plant covered with reddish mass of eggs 22 galls, detail 23 dissected gall showing a pupa 24 exuviae protruding from a gall 25 adult emergence hole 26 detail of a leaf gall showing the chamber and thin wall 27 pupa, lateral view 28 pupa frontal view 29 female emerging from gall.
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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.