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FIGURE 8 in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 8. Bongiella nodistylis sp. nov. male. A—habitus; B—head, frontal view; C—head dorsad; D—head, laterad; Eantenna; F—apical part of hind femur with two long trichia; G—recessed hind femoral trichobothria, arrowed; H—parameres and aedeagus. Scales: A = 1 mm; B–E = 0.3 mm; H = 0.05 mm.
FIGURE 11. Myiomma cobbeni male. A in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 11. Myiomma cobbeni male. A—habitus, dorsad; B—head, thorax dorsad; C—head, frontal view; D—head laterad; E—habitus, ventrad; F—antenna II; G—parameres and aedeagus. Scales: A+E = 1 mm; B–D, F = 0.4 mm; G = 0.05 mm.
FIGURE 2 in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 2. Vehicle-mounted "car-net", also called "elephant trap" in allusion to the long grey "trunk"-tube (Photo: R. Garms, 1986).
FIGURE 15 in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 15. Myiomma variabilis sp. nov. male. A—habitus; B—head dorsad; C—head, frontal view; D—head, thorax laterad; E—antenna; F—parameres; G—aedeagus, inverted and everted. Scales: A = 1 mm; B–E = 0.3 mm; F–G = 0.05 mm.
FIGURE 14. A–C—Myiomma rubra male. A in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 14. A–C—Myiomma rubra male. A—head, antenna laterad; B—head, frontal view; C—fore wing. D–F—Myiomma rubrovenata male. D—head, antenna laterad; E—head, frontal view; F—head, thorax dorsad. Scales: A–B, D–F = 0.5 mm; C = 0.5 mm.
FIGURE 6 in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 6. Paloniella garmsi sp. nov. male. A—habitus; B—head, frontal view; C—head laterad; D—head, dorsad; Eantenna; F—parameres and aedeagus. Scales: A = 1 mm; B–E = 0.5 mm; F = 0.1 mm.
FIGURE 5 in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 5. Paloniella erinacea sp. nov. male. A—habitus; B—head, thorax dorsad from a flat angle highlighting the pubescence and head length; C—head, frontal view; D—head, antero-dorsad; E–F—heads, laterad; G–H—antenna II; Iparameres and aedeagus. Scales: A = 1 mm; B–D, G–H = 0.5 mm; E–F = 0.3 mm; I = 0.1 mm.
FIGURE 5 in A new Nucras Gray, 1838 (Squamata: Lacertidae) from the Strandveld of the Western Cape, South Africa
FIGURE 5. Map of A) the distribution by quarter degree squares of Nucras tessellata in South Africa—yellow squares circles (from Bates et al. 2014, including virtual records but excluding questionable records) and Nucras aurantiaca sp. nov.—red squares; and B) close-up of the region of Lambert's Bay Strandveld vegetation type (teal coloration) occupied by N. aurantiaca (based on Mucina & Rutherford 2006). Red star is the type locality of N. aurantiaca sp. nov., red dot is the camera trap locality for the species.
FIGURE 1 in A new Nucras Gray, 1838 (Squamata: Lacertidae) from the Strandveld of the Western Cape, South Africa
FIGURE 1. Concatenated mitochondrial RaxML generated phylogram of the genus Nucras and outgroups used in this study. Bootstrap support (above) and posterior probabilities (below) are shown for species level and more inclusive nodes.
FIGURE 4 in A new Nucras Gray, 1838 (Squamata: Lacertidae) from the Strandveld of the Western Cape, South Africa
FIGURE 4. Micro-CT-scans of the skeletons of selected Nucras spp. A) N. tessellata, USEC/H 1559 (26 presacral vertebrae). B) N. lalandii, USEC/H 3892 (31 presacral vertebrae). C) N. livida, USEC/H 5787 (26 presacral vertebrae). D) N. aurantiaca sp. nov., NMB R11626 (28 presacral vertebrae). Scale bars = 10 mm. Note the variation in trunk length and presacral vertebral number across taxa.
FIGURE 3 in A new Nucras Gray, 1838 (Squamata: Lacertidae) from the Strandveld of the Western Cape, South Africa
FIGURE 3. Life photos of Nucras aurantiaca sp. nov. A) Holotype specimen NMB R11626 from Lambert's Bay in captivity. B) Camera trap photo of a wild individual from Farm Fonteintjie. Note the brighter orange coloration of the wild specimen and the extremely elongate original tail.
FIGURE 2 in A new Nucras Gray, 1838 (Squamata: Lacertidae) from the Strandveld of the Western Cape, South Africa
FIGURE 2. Preserved type specimens of Nucras aurantiaca sp. nov. A) Holotype specimen NMB R11626 in oblique dorsal (left) and ventral (right) views. B) Paratype specimen in oblique dorsal view.
FIGURE 6 in A new Nucras Gray, 1838 (Squamata: Lacertidae) from the Strandveld of the Western Cape, South Africa
FIGURE 6. Habitat of Nucras aurantiaca sp. nov. near camera trap recording site on Farm Fonteintjie, Western Cape Province. Photo by Chris Broeckhoven.
text-fig. 4. Skull reconstructions of representatives of riassic OTUs in left lateral view, a, Euparkeria capensis, Early Triassic (Scythian-Anisian), Beaufort Group, South Africa; redrawn from Ewer (1965). B, basal ornithischian Lesothosaurus diagnostics, Early Jurassic (Hettangian-Sinemurian), Elliot Formation, Lesotho; redrawn from Sereno (1991b). c, prosauropod sauropodomorph Plateosaurus sp., Late riassic (Norian), Knollenmergel, Germany; based on MB R. 1937. D, Eoraptor lunensis, Late Triassic (Camian), Ischigualasto Formation, Argentina; based on PVSJ 512. E, Herrerasaurus ischigualastensis, Late Triassic (Camian), Ischigualasto Formation, Argentina; redrawn from Sereno and Novas (1993). F, Coelophysis bauri, Late riassic (Norian), Chinle Formation, south-western USA; modified from Paul (1993). G, Lilienstemus lilienstemi, Late riassic (Norian), Knollenmergel, Germany; based on MB R. 2175, unpreserved elements shaded. H, Shuvosaurus inexpectatus, Late riassic (Norian), Dockum Group, Texas, USA; based on TU P 9280. Abbreviations: a, angular; aof, antorbital fenestra; d, dentary; emf, external mandibular fenestra; en, external nares; eo, exoccipital; f, frontal; itf, infratemporal fenestra; j, jugal; 1, lacrimal; m, maxilla; n, nasal; o, orbit; oc, occipital condyle; op, opisthotic; pa, parietal; pd, predentary; pm, premaxilla; pm-mf, premaxillary-maxillary fenestra; po, postorbital; pof, postfrontal; q, quadrate; qf, quadrate foramen; qj, quadratojugal; sa, surangular; saf, surangular foramen; snf, subnarial foramen; sob, supraorbital; soc, supraoccipital; sp, splenial; sq, squamosal; stf, supratemporal fenestra. Scale bars represent 10 mm (a-b) and 50 mm (c-H). in The interrelationships and evolution of basal theropod dinosaurs
text-fig. 4. Skull reconstructions of representatives of riassic OTUs in left lateral view, a, Euparkeria capensis, Early Triassic (Scythian-Anisian), Beaufort Group, South Africa; redrawn from Ewer (1965). B, basal ornithischian Lesothosaurus diagnostics, Early Jurassic (Hettangian-Sinemurian), Elliot Formation, Lesotho; redrawn from Sereno (1991b). c, prosauropod sauropodomorph Plateosaurus sp., Late riassic (Norian), Knollenmergel, Germany; based on MB R. 1937. D, Eoraptor lunensis, Late Triassic (Camian), Ischigualasto Formation, Argentina; based on PVSJ 512. E, Herrerasaurus ischigualastensis, Late Triassic (Camian), Ischigualasto Formation, Argentina; redrawn from Sereno and Novas (1993). F, Coelophysis bauri, Late riassic (Norian), Chinle Formation, south-western USA; modified from Paul (1993). G, Lilienstemus lilienstemi, Late riassic (Norian), Knollenmergel, Germany; based on MB R. 2175, unpreserved elements shaded. H, Shuvosaurus inexpectatus, Late riassic (Norian), Dockum Group, Texas, USA; based on TU P 9280. Abbreviations: a, angular; aof, antorbital fenestra; d, dentary; emf, external mandibular fenestra; en, external nares; eo, exoccipital; f, frontal; itf, infratemporal fenestra; j, jugal; 1, lacrimal; m, maxilla; n, nasal; o, orbit; oc, occipital condyle; op, opisthotic; pa, parietal; pd, predentary; pm, premaxilla; pm-mf, premaxillary-maxillary fenestra; po, postorbital; pof, postfrontal; q, quadrate; qf, quadrate foramen; qj, quadratojugal; sa, surangular; saf, surangular foramen; snf, subnarial foramen; sob, supraorbital; soc, supraoccipital; sp, splenial; sq, squamosal; stf, supratemporal fenestra. Scale bars represent 10 mm (a-b) and 50 mm (c-H).
FIGURES 39‑43 in A Further Contribution To The Knowledge Of Pectiniunguis Minutus (Demange, 1968), A Little Known Dwarf Schendylid Centipede From Western Equatorial Africa (Chilopoda: Geophilomorpha)
FIGURES 39‑43: (39) Pectiniunguis minutus (Demange, 1968), (male holotype; Gabon: Bélinga): Detail of pleurite, coxopodite and basis of telopodite of second maxillae, left side, ventral (a: pleurite). (40-43) Pectiniunguis minutus (Demange, 1968), (female non type; Gabon: Bélinga: Station 154 T, route du camp VI. Forêt tropicale): (40) Right coxal organs, ventral (a: individualized areas of mucous layer); (41) Left coxal organs, ventral (a: individualized areas of mucous layer, b: outer lobe); (42) Coxal organs, dorsal (a: individualized areas of mucous layer); (43) Detail of distal end of apical article of right ultimate leg, ventral (a: pretarsus). Scale bars: 0.02 mm (43); 0.1 mm (39-42).
FIGURES 44‑48 in A Further Contribution To The Knowledge Of Pectiniunguis Minutus (Demange, 1968), A Little Known Dwarf Schendylid Centipede From Western Equatorial Africa (Chilopoda: Geophilomorpha)
FIGURES 44‑48: (44) Ctenophilus amieti (Demange, 1963), (reference Pleuroschendyla magna, female holotype; Ivory Coast: Mont Nimba): Detail of pleurite, coxopodite and basis of telopodite of second maxillae, right side, ventral (a: pleurite). (After Pereira & Demange 1997). (45-47) Pectiniunguis ascendens Pereira, Minelli & Barbieri, 1994, (female holotype; Brazil: Amazonas: Rio Trumã Mirím): (45) Detail of pleurite and proximal external portion of coxopodite of second maxillae, left side, ventral (a: pleurite); (46) Claw of left walking leg (pair 12), antero-ventral view; (47) Detail of left coxal organs, ventral (a: individualized area of mucous layer, b: outer lobe). (After Pereira et al., 1994). (48) Pectiniunguis bollmani Pereira, Minelli & Foddai, 1999 (male holotype; Venezuela: State of Falcón: Parque Nacional Morrocoy: Cayo Sombrero): Claw of right walking leg (pair 60), ventral. (After Pereira et al., 1999). Scale bars: 0.03 mm (46); 0.05 mm (48); 0.1 mm (45, 47); no scale available (44).
FIGURES 33‑38 in A Further Contribution To The Knowledge Of Pectiniunguis Minutus (Demange, 1968), A Little Known Dwarf Schendylid Centipede From Western Equatorial Africa (Chilopoda: Geophilomorpha)
FIGURES 33‑38: (33-35) Pectiniunguis minutus (Demange, 1968), (female allotype; Gabon: Bélinga): (33) Ultimate leg-bearing segment and postpedal segments, ventral; (34) Left coxal organs, ventral (a: individualized areas of mucous layer, b: outer lobe); (35) Detail of distal end of apical article of left ultimate leg, ventral (a: pretarsus). (36-38) Pectiniunguis minutus (Demange, 1968), (male holotype; Gabon: Bélinga): (36) Distal half of right a.a. XIV, ventral view (a: claviform sensilla, b: apical specialized sensilla); (37) Detail of pleurite, coxopodite and base of telopodite of second maxillae, right side, ventral (a: pleurite); (38) Pleurite, coxopodite and base of telopodite of second maxillae, left side, dorsal (a: pleurite). Scale bars: 0.03 mm (35); 0.05 mm (36); 0.1 mm (34, 37-38); 0.2 mm (33).
FIGURES 26‑28 in A Further Contribution To The Knowledge Of Pectiniunguis Minutus (Demange, 1968), A Little Known Dwarf Schendylid Centipede From Western Equatorial Africa (Chilopoda: Geophilomorpha)
FIGURES 26‑28: Pectiniunguis minutus (Demange, 1968), (male paratype; Gabon: Bélinga): (26) Ultimate leg-bearing segment and postpedal segments, dorsal; (27) Ultimate leg-bearing segment and postpedal segments, ventral; (28) Detail of distal end of apical article of right ultimate leg, ventral (a: pretarsus). Scale bars: 0.02 mm (28); 0.4 mm (26-27).
FIGURES 20‑25 in A Further Contribution To The Knowledge Of Pectiniunguis Minutus (Demange, 1968), A Little Known Dwarf Schendylid Centipede From Western Equatorial Africa (Chilopoda: Geophilomorpha)
FIGURES 20‑25: Pectiniunguis minutus (Demange, 1968), (male paratype; Gabon: Bélinga): (20) Sternite of leg-bearing segment 2; (21) Sternite of leg-bearing segment 4; (22) Sternite of leg-bearing segment 9; (23) Sternite of leg-bearing segment 14; (24) Sternite of leg-bearing segment 19; (25) Sternite of leg-bearing segment 20. Scale bar: 0.1 mm.
FIGURES 1‑5 in A Further Contribution To The Knowledge Of Pectiniunguis Minutus (Demange, 1968), A Little Known Dwarf Schendylid Centipede From Western Equatorial Africa (Chilopoda: Geophilomorpha)
FIGURES 1‑5: Pectiniunguis minutus (Demange, 1968), (male paratype; Gabon: Bélinga): (1) Left antenna, ventral; (2) Left a.a. II, dorsal (a, b: a, b type sensilla); (3) Left a.a. V, ventral (a, b: a, b type sensilla); (4) Left a.a. V, dorsal (a, b: a, b type sensilla); (5) Left a.a. IX, ventral (a, b: a, b type sensilla). Scale bars: 0.05 mm (2-5); 0.2 mm (1).
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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.