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Figs. 15-19 in A Review Of The Genus Stilpon Loew, 1859 (Empidoidea: Hybotidae) From The Oriental Region
Figs. 15-19. Stilpon isaanensis, new species, male. 15, mid leg, anterior view, 16, hypopygium, ventral view, 17, left surstylus, lateral view, 18, upper lobe of left surstylus, dorsal view, 19, right surstylus, dorsal view; u lb – upper lobe of left surstylus. Scale bar: 0.1 mm.
FIGURE 15 in Systematics of the Octopleura Clade of Miconia (Melastomataceae: Miconieae) in Tropical America
FIGURE 15. Distributions of Miconia laxivenula, M. magnifolia, M. neocoronata, M. neomicrantha and M. aff. neomicrantha.
Fig. 15. Camponotus quadrinotatus Forel, 1886 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 15. Camponotus quadrinotatus Forel, 1886, minor worker (PUAC T107). A. Head in full face view. B. Body in profile view. C. Body in dorsal view.
Fig. 15 in Characterizing Late Pleistocene and Holocene Stone Artefact Assemblages from Puritjarra Rock Shelter: A Long Sequence from the Australian Desert
Fig. 15. Large flake implements from late Pleistocene levels of Puritjarra rock shelter. All are from unit 2a. Steep-edged scrapers: QR9/8-2, N5/15-11. Amorphous retouched implement: M10/22-2. QR9/8-1 is a large formal implement with extensive shallow invasive flaking and a thin convex working edge.
Fig. 15 in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 15. Drepanoistodus costatus (Abaimova, 1971): A–C, Sa element, AMF120361, TAB1/78.2, A, anterolateral view, B, lateral view, C, basal view; D, Sa element, AMF120362, C1612, basal view; E–G, M element, AMF120369, C1611, E, basal view, F, posterior view, G, anterior view; H, M element, AMF120368, TAB1/86.7, anterior view; I, Sb element, AMF120363, C1612, outer lateral view; J,K, Sb element, AMF120364, M/A11-5, J, basal view, K, inner lateral view; L, Sc element, AMF120365, M/A7, inner lateral view; M–O, Sc element, AMF120366, Y4–8, M, inner lateral view, N, basal view, O, outer lateral view; P–R, Sd element, AMF120367, Y4–7, P,Q, lateral views, R, basal view. Scale bars 100 µm.
Figure 15 in A revision of Eogammarus Birstein, 1933 (Crustacea, Amphipoda, Anisogammaridae), with a description of a new species
Figure 15. Eogammarus confervicolus (Stimpson, 1856), Malibu Lagoon, California, male, 13.0 mm, CMNC 2004- 1028. (A, B) Pereopods 3 and 4; (C–E) coxa–ischium of pereopods 5–7; (F) pleopod 2 (plumose setae on rami are omitted); (G) retinacula of pleopod 2. Scale bars: 0.1 mm.
Fig. 15 in Cephalopods From The Cretaceous/Tertiary Boundary Interval On The Atlantic Coastal Plain, With A Description Of The Highest Ammonite Zones In North America. Part 2. Northeastern Monmouth County, New Jersey
Fig. 15. Paleogeographic map showing the position of the shoreline of the eastern half of North America at the end of the Cretaceous based on stratigraphic sections spanning the K/T boundary. Circles are marine sections; boxes are terrestrial sections; circles within boxes are mixed marine/terrestrial sections. Explanations for 1–27 are in the appendix. 28, 29 = Raton Basin, New Mexico and Colorado (Izett, 1990); 30 = Denver Basin, Colorado (Brown, 1943; Nichols and Fleming, 2002); 31 = Lance Creek area, Wyoming (Bohor et al., 1987); 32 = Powder River Basin, near Sussex, Johnson County, Wyoming (Nichols et al., 1992); 33 = Slope and Bowman Counties, North Dakota (Nichols and Johnson, 2002); 34 = Makoshika State Park, Dawson County, Montana (Lund et al., 2002); 35 = Hell Creek area, Montana (Bohor et al., 1987).
Figure 15 in A preliminary report on the World species of Bemisia Quaintance and Baker and its congeners (Hemiptera: Aleyrodidae) with a comparative analysis of morphological variation and its role in the recognition of species Raymond Gill
Figure 15. Bemisia capitata Regu and David, Padappi, Tamil Nadu, India, 2/3/93, ex: Rivea hypocrateriformis, Susan Coats, coll.
Figure 15. Apical lunule grading system. 0 in A morphological and mtDNA analysis of the badlands tiger beetle, Cicindela (s. str.) decemnotata Say, 1817 (Coleoptera: Carabidae: Cicindelinae) with the description of three new subspecies C. Barry Knisley
Figure 15. Apical lunule grading system. 0 to 3 refers to increasing size of apical lunule: A. 0 (absent). B. 1. C. 2. D. 3 (largest).
Figure 1. Cicindela d. decemnotata adult habitus. A. Adult, 15 in A morphological and mtDNA analysis of the badlands tiger beetle, Cicindela (s. str.) decemnotata Say, 1817 (Coleoptera: Carabidae: Cicindelinae) with the description of three new subspecies C. Barry Knisley
Figure 1. Cicindela d. decemnotata adult habitus. A. Adult, 15 mi. NE of Billings, Yellowstone Co., MT, 24-IV- 2011. B. Male, "CO: Garfield Co., RT 139, 2-VI-1991" (CSUC). C. Male, "WY: Big Horn Co., Lovell LTA, 02-IX-2000" (CSUC). D. Male, "ID: Caribou Co., N. of Canyon Rd., 30-VI-2007" (MGKC). Scale bar = 5mm for B–D.
Fig. (10-17): (10) Dichrogaster aestivalis, fore wing; (11) C. armator, areolet of fore wing; (12) Mesostenus sp., areolet of fore wing; (13) Venturia canescens, ovipositor; (14) Barichneumon sp.; ventral aspect of metasoma; (15) Ctenichneumon sp., ventral aspect of metasoma; (16) Exochus castaniventris, frontal view of head; (17) Diplazon laetatorius, frontal view of head. in Ichneumonidae from the Suez Canal region Egypt (Hymenoptera, Ichneumonoidea)
Fig. (10-17): (10) Dichrogaster aestivalis, fore wing; (11) C. armator, areolet of fore wing; (12) Mesostenus sp., areolet of fore wing; (13) Venturia canescens, ovipositor; (14) Barichneumon sp.; ventral aspect of metasoma; (15) Ctenichneumon sp., ventral aspect of metasoma; (16) Exochus castaniventris, frontal view of head; (17) Diplazon laetatorius, frontal view of head.
Figs 15-26 in Three new species of Leptusa from Yunnan, with a catalogue of the Leptusa species recorded from China and Taiwan (Coleoptera: Staphylinidae: Aleocharinae)
Figs 15-26: Leptusa pollicita nov.sp. (15-20, 23-24: holotype): (15) habitus; (16) forebody; (17) posterior portion of head and median portion of pronotum; (18) antenna; (19) sutural portion of elytra; (20) male abdominal tergites VII-VIII; (21) male tergite VIII; (22) male sternite VIII; (23) median lobe of aedeagus in lateral view; (24) apical lobe of paramere; (25) female tergite VIII; (26) female sternite VIII. Scale bars: 15: 1.0 mm; 16, 18: 0.5 mm; 17, 19-26: 0.1 mm.
Figs 15-21 in A revision of Geostiba of the Western Palaearctic region. XX. Four new species from Turkey and Albania, and additional
Figs 15-21: Geostiba extensicollis nov.sp. (15-19: holotype): (15) male habitus; (16) male forebody; (17) head in lateral view; (18) male abdominal segments VI-VIII in lateral view; (19-20) median lobe of aedeagus in lateral view; (21) spermatheca. Scale bars: 15: 1.0 mm; 16-18: 0.5 mm; 19-21: 0.1 mm.
Figs 15–22 in EULOPHIDAE OF COSTA RICA (HYMENOPTERA: CHALCIDOIDEA), 5: The genus Galeopsomyia Girault
Figs 15–22. Galeopsomyia spp., ♀. 15–17. Head lateral view – (15) G. seminarum; (16) G. noyesi (arrow pointing at short genal carina); (17) G. graciliclava (arrow pointing at long genal carina). 18–19. Fore coxa lateral view – (18) G. myrsineae (arrow pointing at carina along anterior margin); (19) G. alas (arrow pointing at carina along posterior margin). 20–21. Hind coxa lateral view – (20) G. noyesi; (21) G. aliosa (arrow pointing at carina along posterior margin). 22. G. carinifer, dorsellum (arrow pointing at median carina).
FIG. 15 in The Serrialis Bone, Interparietals, "X" Elements, Entotympanics, And The Composition Of The Notoungulate Caudal Cranium
FIG. 15. Cochilius volens AMNH-VP 29651, four virtual coronal sections, left side (rev.), arranged in rostral to caudal order (for approximate locations of sectioning planes, see fig. 14A). All to scale in D. A, section through rostralmost end of bulla. Note fracturing (br) on medial surface of squamosal, which mimics a true suture. Arrow, discontinuity on rostral lip of bulla thought to represent nearly obliterated ectotympano-entotympanic suture. B passes through external acoustic meatus (note incus in epitympanic sinus, out of position post mortem). Arrow identifies caudal end of same groove seen in A. Except for petroso-bullar suture, other discontinuities are fractures. Asterisk identifies the large longitudinal fracture, seen on dorsal aspect of skull and positioned
Fig. 15 in Quaternary Murid Rodents Of Timor Part I: New Material Of Coryphomys Buehleri Schaub, 1937, And Description Of A Second Species Of The Genus
Fig. 15. Dorsal surface of AMF 68770, a left palatal fragment of Coryphomys musseri with an interpretive diagram for significant anatomical features of the maxillary sinus complex and the floor of the orbitotemporal fossa. Abbreviations: app, anterior palatine process; as, anterior septum of maxillary sinus; cs, central septum of maxillary sinus; dpc, descending palatine artery and nerve canal; ios, infraorbital sulcus; mps, median palatal suture; m1r, bulge covering anterior root of M1; mr, raised medial rim of maxilla; nps, nasopharyngeal sulcus; nvs, neurovascular sulcus; olm, orbital lamina of maxilla; pms, premaxilla-maxilla suture; pnp, posterior nasopharynx; ppp, posterior palatine process; ps, posterior septum of maxillary sinus; sps, sphenopalatine sulcus; zp, zygomatic plate. Scale bar represents 5 mm.
Fig. 15 in The Basal Penguin (Aves: Sphenisciformes) Perudyptes Devriesi And A Phylogenetic Evaluation Of The Penguin Fossil Record
Fig. 15. Results of iterative analyses testing the effect of assigning character codings from isolated elements to species terminals. Strict consensus of 1503 MPTs of 4494 steps from the analysis applying codings from IB/P/B-0382 (type B humerus) to the Marambiornis exilis terminal. An identical strict consensus topology resulted from the permutations adding the type B humerus codings to the Mesetaornis polaris terminal.
Fig. 15 in Systematics Of The Genus Hypoptopoma Günther, 1868 (Siluriformes, Loricariidae)
Fig. 15. Pectoral-fin spine, right side dorsal view, anterior toward top. A, B, serrae of oblique type, lateral view of whole spine and detail, respectively; C, D, serrae of orthogonal type, lateral view of whole spine and detail, respectively.
Fig. 15 in An Anatomical And Phylogenetic Study Of The Osteology Of The Petrosal Of Extant And Extinct Artiodactylans (Mammalia) And Relatives
Fig. 15. Dorsolateral views of left petrosals of Antilocapra americana (UC-MVZ 96100) (Ruminantia, Antilocapridae), Bos taurus (SB MAR 14) (Ruminantia, Bovidae), and Ovis aries (SB MAR 30) (Ruminantia, Bovidae). Dorsomedial and ventrolateral surfaces are gray. Damaged areas are hatched.
Fig. 15 in Postnatal Ontogeny Of The Skull In Th E Ex Tant North Am Eric An Turtle Sternotherus Odoratus (Crypto Dir A: Kinosterni Dae) G A B E S. B E V Er
Fig. 15. Photograph and line drawing of the rostroventral surface of the left quadrate and basicranium of M-2981. Note the relatively close approximation of the laterally positioned quadratojugal to the articular surface of the quadrate, and contact between the quadrate ramus of pterygoid and the articular surface of quadrate.
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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.