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FIGURES 1–3 in The mature larva and pupa of Tychius subsulcatus Tournier, 1847 (Coleoptera, Curculionidae), with comments on its biology and phylogenetic relationships
FIGURES 1–3. Biology of Tychius subsulcatus: 1—emergence hole of larva in a pod of Astragalus onobrychis; 2—intact pupal cell strengthened by sand grains; 3—open pupal cells with pupa.
FIGURES 14–16 in The mature larva and pupa of Tychius subsulcatus Tournier, 1847 (Coleoptera, Curculionidae), with comments on its biology and phylogenetic relationships
FIGURES 14–16. Tychius subsulcatus pupa habitus: 14—ventral view; 15—dorsal view; 16—lateral view (AbI, VII—Xnumbers of abdominal segments, ThI—III—numbers of thoracic segments, ur—urogomphi. Setae: as—apical, d—dorsal, ds— discal, fes—femoral, l—lateral (abdomen), ls—lateral (pronotum), os—orbital, pas—postantennal, pls—posterolateral, rs— rostral, sos—superorbital, vs—vertical). Scale bar: 1 mm.
FIGURE 1. Basiria khouzestanensis n in Description of Basiria khouzestanensis n. sp. (Nematoda: Tylenchidae) from Iran and its phylogenetic relationships with other species in the family
FIGURE 1. Basiria khouzestanensis n. sp. A: Entire female, B: Female pharyngeal region, C: Female reproductive system, D: Lateral field at mid-body, E&F: Female tail, G: Male tail, H: Entire male.
FIGURE 2. Basiria khouzestanensis n in Description of Basiria khouzestanensis n. sp. (Nematoda: Tylenchidae) from Iran and its phylogenetic relationships with other species in the family
FIGURE 2. Basiria khouzestanensis n. sp. A&B: Female pharyngeal region, C: Lateral field at mid-body, D: Female reproductive system, E&F: Female tail, G&H: Male tail. (Scale bars = 20 µm.)
FIGURE 3. Bayesian 50 in Description of Basiria khouzestanensis n. sp. (Nematoda: Tylenchidae) from Iran and its phylogenetic relationships with other species in the family
FIGURE 3. Bayesian 50% majority rule consensus tree inferred from analysis of the D2–D3 domains of the 28S rRNA gene under the GTR+G+I model. Bayesian posterior probability values more than 50% are given for appropriate clades. The new species is in bold.
FIGURE 3. Phylogenetic relationships among 26 in Two new species of lotic breeding salamanders (Amphibia, Caudata, Hynobiidae) from western Japan
FIGURE 3. Phylogenetic relationships among 26 Hynobius species and Salamandrella keyserlingii based on the complete cyt b gene estimated by maximum likelihood method. Numbers on the branches indicate ML bootstrap values.
FIGURE 2. A–C in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau
FIGURE 2. A–C: Psammophylax rhombeatus SAM/ZR 17520, Kamanjab, Damaraland, Namibia; A, dorsum showing the characteristic boldly blotched body lacking a thin vertebral line separating the paravertebral ocelli but with a partial dark nape collar; B, ventrum showing the irregular rows of dark spots on the white belly. Rostral condition. C, dorsal view of head showing extensive intrusion of rostral between the supranasals; Tundavala. D: Psammophylax ocellatus: PEM R17620 (NB 561), dorsal view of head and E: PEM R17986, Estação Zootécnica, Huíla Province, views of head showing showing rostral barely visible from top and supranasals in broad contact. F–G: Psammophylax cf. ocellatus, SAM ZR 46424, Calueque, Cunene Province, Angola: F, general coloration of forebody showing the reduced paravertebral ocelli and absence of a thin vertebral line or nape collar; and G, ventral surface showing almost complete absence of dark blotches. All photos by W. R. Branch, except for photo D, by N. Baptista.
FIGURE 5 in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau
FIGURE 5. Phylogenetic tree (Bayesian Inference tree) showing the relationships between selected species in the subfamily Psammophiinae. The two test-species (Psammophylax r. ocellatus and Psammophis ansorgii) are highlighted with grey boxes. The support values are given at the nodes (Bayesian inference posterior probabilities = above node; Maximum likelihood bootstrap values = below the nodes).
FIGURE 4 in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau
FIGURE 4. Psammophis ansorgii NB 600, Tundavala montane grassland, Huíla province. A: whole body, showing a subdued grey-brown body and distinctive head coloration, with ivory pre- and postoculars and dark-edged upper labial stripe; B: ventral coloration with a central broad light yellow band bordered by white edges, and the ventral surface of the tail brighter yellow without white border; C: unusual dorsal coloration showing dark edges to scattered dorsal scales; and D: these dark scale edges forming an indistinct 'ladder-like' effect on the forebody that was not noted in type description. All photos by N. Baptista.
FIGURE 1. Psammophylax ocellatus PEM R17986 in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau
FIGURE 1. Psammophylax ocellatus PEM R17986, Estação Zootécnica, montane grasslands, Huíla Province. A: dorsum showing the characteristic boldly blotched body, a thin vertebral line separating the paravertebral ocelli, and the absence of a dark nape collar; B: ventrum showing the white belly with irregular rows of dark spots, that are absent below the tail; C: Live specimen showing general colouration and striking red eye; D: Habitat—montane grasslands, Estação Zootécnica, Huíla Province, Angola. All photos by W. R. Branch.
FIGURE 6 in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau
FIGURE 6. Distribution of Psammophylax ocellatus (green) and Psammophis ansorgii (blue). Right (A): Africa with location of Angola in blue. Middle (B): Topographic map of Angola, showing relief and central localities, and red square outlining the location of the Humpata Plateau, adjacent to the Chela Escarpment. Localities: 1–2 Catchiungo—Chinguar (blue star) type locality of Psammophis ansorgii; 3, Cunhangamua; 4, Tundavala; 5, Estação Zootécnica; 6, Chibemba (green star) type locality of Psammophylax ocellatus; 7, Humbe; 8, Calueque, near Ruacaná. Left (C): zoomed in region of Humpata Plateau.
FIGURE 5 in Two Hexapleomera species from Japan, with a new species description and discussion of phylogenetic relationships within Hexapleomera (Crustacea: Tanaidacea)
FIGURE 5. Hexapleomera sasuke sp. nov., male. A–G, I–L, allotype; H, paratype ICHUM-5837. A, body, dorsal view; B, body lateral view; C, right antennule, dorsal view; C1, antennular articles 3 and 4; D, right antenna, ventral view; E, labrum; F, left mandible; G, H, right mandible; I, labium; J, maxillule; K, maxillipeds, dorsal view, most setae on left palp and most setal ornamentation omitted; L, epignath. Scale bars: A, B, 1 mm; H, 0.05 mm; others, 0.1 mm.
FIGURE 7 in Two Hexapleomera species from Japan, with a new species description and discussion of phylogenetic relationships within Hexapleomera (Crustacea: Tanaidacea)
FIGURE 7. Chelipeds of strongly sexually dimorphic males in two groups in Hexapleomera. A, cheliped of robusta group, with a ventroproximal process (arrow) (H. sasuke sp. nov., paratype male, ICHUM-5857); scale bar, 0.5 mm. B, cheliped of wombat group, lacking a ventroproximal process on the chela (H. wombat); scale unknown (this image is copyrighted by Zootaxa [www. mapress.com/j/zt], Magnolia Press; reproduced with permission after Bamber [2012]).
FIGURE 4 in Two Hexapleomera species from Japan, with a new species description and discussion of phylogenetic relationships within Hexapleomera (Crustacea: Tanaidacea)
FIGURE 4. Hexapleomera sasuke sp. nov., holotype female. A, right cheliped, outer view; B, left pereopod 1; C–G, right pereopods 2–6 (artificially twisted at the insertion of carpus in E and F); H, right pleopod 1; I, J, left pleopods 2 and 3; K, right uropod, ventral view. Scale bars: 0.1 mm.
FIGURE 3 in Two Hexapleomera species from Japan, with a new species description and discussion of phylogenetic relationships within Hexapleomera (Crustacea: Tanaidacea)
FIGURE 3. Hexapleomera sasuke sp. nov., female. A–D, F–L, holotype; E, paratype ICHUM-5853. A, body, dorsal view; B, body, lateral view; C, right antennule, ventral view; D, right antenna, inner view; E, labrum; F, left mandible; F1, distal portion of left mandible; G, distal portion of right mandible; H, labium; I, maxillule; J, maxilla; K, maxilliped, dorsal view, some setal ornamentation omitted; L, epignath (distal portion broken). Scale bars: A, B, 1 mm; F1, G, 0.05 mm; others, 0.1 mm.
FIGURE 1 in Two Hexapleomera species from Japan, with a new species description and discussion of phylogenetic relationships within Hexapleomera (Crustacea: Tanaidacea)
FIGURE 1. The condition of pigmentation on the pleopodal rami in H. urashima (A, ICHUM-5389) and H. sasuke sp. nov. (B, ICHUM-5850), ventral views, fixed specimens. Arrows indicate the endopod of left pleopod 1. Scale bars: 0.1 mm.
FIGURE 2 in Two Hexapleomera species from Japan, with a new species description and discussion of phylogenetic relationships within Hexapleomera (Crustacea: Tanaidacea)
FIGURE 2. Hexapleomera sasuke sp. nov., dorsal views. A, holotype female (ICHUM-5849), fixed specimen; B, allotype male (ICHUM-5850), fixed specimen; C, living male collected in Yokohama Hakkeijima Sea Paradise. Scale bars: A, B, 0.5 mm.
FIGURES 27–38 in Phylogenetic relationships within the Frankliniella genus-group based on morphology, with a revision of Iridothrips (Thysanoptera, Thripidae)
FIGURES 27–38. Character states of Frankliniella genus-group. 27–28 antennae: (27) I. lobulatus; (28) I. mariae. 29–30 fore wing: (29) Fr. schultzei; (30) I. lobulatus. 31–33 tergite VIII: (31) Fr. cephalica; (32) Fr. williamsi; (33) K. pisivorus. 34–35 male: (34) Fi. firmus tergites IX–X; (35) I. lobulatus sternites VII–VIII. 36–38 sternite VII: (36) Fr. intonsa; (37) T. physapus; (38) I. lobulatus. [see Appendix 1 for character state codes].
FIGURES 19–26 in Phylogenetic relationships within the Frankliniella genus-group based on morphology, with a revision of Iridothrips (Thysanoptera, Thripidae)
FIGURES 19–26. Character states on tergites: (19) Fr. tenuicornis IV–V; (20) Y. yangtzei V–VI; (21) I. lobulatus VII–VIII; (22) Pa. setifer VI–VIII; (23) T. physapus VII–VIII; (24) Ps. achaetus VII–VIII; (25) I. mariae VIII; (26) Fr. schultzei VII–VIII. [see Appendix 1 for character state codes].
FIGURES 13–18 in Phylogenetic relationships within the Frankliniella genus-group based on morphology, with a revision of Iridothrips (Thysanoptera, Thripidae)
FIGURES 13–18. Character states on thorax. 13–15 pronotum: (13) I. lobulatus; (14) Pa. setifer; (15) Fr. tenuicornis. 16–18: meso and metanotum (16) Pa. setifer; (17) I. iridis; (18) I. lobulatus.
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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.