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14,253 results for “15”
Figs 15–21 in New data on the fungus gnats (Diptera: Keroplatidae, Mycetophilidae) of Yakutia with description of three new species
Figs 15–21. Male terminalia of Docosia spp.: D. fasciculata sp. n. (15–20) and D. mulleri Plassmann (21). 15 – ventral view; 16 – dorsal view; 17 – lateral view; 18 – caudal view; 19 – posteroventral margin of gonocoxites, dorsocaudal view; 20, 21 – gonostylus, lateral view. Abbreviations: dbg – dorsal branch of gonostylus; mp – median process of gonocoxites; plp – posterolateral process of gonocoxites; smt – submedian tuft of modified setae; vbg – ventral branch of gonostylus. Scale bars = 0.2 mm.
Figures 9–15 in Scorpions of the Horn of Africa (Arachnida: Scorpiones). Part XXX. Parabuthus (Buthidae) (Part III), with description of three new species from Somaliland and occurrence of Parabuthus eritreaensis Kovařík, 2003
Figures 9–15: Parabuthus eritreaensis, female. Figure 9. Carapace and tergites I–IV. Figures 10–11. Sternopectinal area and sternites.. Figures 12–15. Right legs I–IV, retrolateral aspect.
Figure 15 Periglischrus paravargasi, male. A in DNA barcoding, visual-guide resource, new localities and host associations of genus Periglischrus Oudemans, 1902 (Acari: Mesostigmata, Spinturnicidae) from Minas Gerais, Brazil
Figure 15 Periglischrus paravargasi, male. A – General view; B – Dorsal view with proteronotal setae (Pn1–Pn5) and poststigmal seta (Pst) indicated; C – Ventral view with sternogenital setaeSt(1–St4) and genital seta (Sg) indicated; D – Ventral setae on legs I and II with details; E Details ventral setae on leg I; F – Details ventral setae on leg II; G – Coxa I with pv anddvsetae, indicated in red arrow; H – Femur–tibia I with proximal adsetae, indicated; I – Coxa II with posterolateral setapl () indicated; J – Femur II, proximaladandpdsetae, indicated; K – Proximal adandpd on tarsus III, indicated; L – Femur IV, proximaladandpd setae, indicated; M – Genu IV, proximaladandpd setae, indicated; N – proximal adandpd on tarsus IV, indicated. Scale bars: A = 200 µm, B–D and H = 100 µm, E–G, I–N = 50 µm.
Figure 15–19 in Two new species of Eurytoma (Hymenoptera: Eurytomidae), parasitoids of Bradybatus sp. (Coleoptera: Curculionidae) damaging seeds of Acer truncatum in China
Figure 15–19. Eurytoma truncatumi Yang, Liu & Cao, sp. nov., male. 15. Metasoma and hind leg in lateral view. 16. Fore and hind wings. 17. Metasoma with parts of legs in dorsal view. 18–19. Larvae parasitizing on weevil host in seed of Acer truncatum. 18. The parasitoid larva parasitizing on host Bradybatus sp. larva (a. E. truncatumi Yang, Liu & Cao, sp. nov.; b. Bradybatus sp.). 19. The parasitoid larva parasitizing on host Bradybatus sp. pupa (c. E. truncatumi Yang, Liu & Cao, sp. nov., larva; d. Bradybatus sp. pupa).
Figures 15–21 in A taxonomic assessment and redefinition of the Lucanus fortunei species group in China (Coleoptera: Lucanidae: Lucaninae)
Figures 15–21. Habitus of Lucanus derani derani. 15. Male, dorsal view. 16. Male, ventral view. 17. Male, lateral view. 18. Median male. 19. Minor male. 20. Female, dorsal view. 21. Female, ventral view. Scale bar = 10 mm.
Buoy-based detection of low-energy cosmic-ray neutrons (Seelhausener See, July 15 to Dec 02, 2014)
<p>Contains two resources used in Schrön & Rasche et al. (2024):</p> <ol> <li><strong>Raw</strong> measurement data files from the buoy detector. Column names are provided in the header of the files. For detailed information about column names and descriptions, see the readme.</li> <li><strong>Processed</strong> measurement data of the buoy detector. Data has been stored as CSV files, the column names are described in `Buoy.csv.readme`. Additional PDF files show the corresponding plots. Two versions of data are provided: <ol> <li><strong>Buoy-1h</strong> contains data aggregated to 1 hour, and</li> <li><strong>Buoy-1h-mavg25</strong> contains the same data but the neutrons underwent a moving average filter with a window size of 25 (1 day).</li> </ol> </li> </ol> <p>Processing has been performed using Corny v0.8.2 (<a title="Corny" href="https://git.ufz.de/CRNS/cornish_pasdy">git.ufz.de/CRNS/cornish_pasdy</a>) with the configuration file <code>Buoy-1h.cfg</code>.</p>
Figure 15 in Population ecology of Ctenolepisma (C.) udumalpetense (Insecta: Zygentoma: Lepismatidae) in a deciduous forest floor of the Trimurti Dam, Tamil Nadu, India
Figure 15. Showing the monthly fluctuations of total population and temperature in Rows I, II and III.
Figures 13-18. Chrysodeixis chalcites Esper 13. Forewing, 14. Hindwing, 15 in Status of Chrysodeixis chalcites Esper and Chrysodeixis eriosoma (Doubleday) of family Noctuidae (Lepidoptera) in India as determined by DNA barcoding and morphological characterization
Figures 13-18. Chrysodeixis chalcites Esper 13. Forewing, 14. Hindwing, 15. Eight photos of forewing spots; Chrysodeixis acuta (Walker) – 16. Forewing, 17. Hindwing, 18. Eight photos of forewing spots.
Figure 15 in The diversity of Triassic South American sphenodontians: a new basal form, clevosaurs, and a revision of rhynchocephalian phylogeny
Figure 15. Life reconstruction of Microsphenodon bonapartei gen. et sp. nov. (top left) and Clevosaurus brasiliensis (bottom right). Work by Lavinia Gandolfi.
FIGURE 15 in Miocene and Pliocene amphibians from Hambach (Germany): New evidence for a late Neogene refuge in northwestern Europe
FIGURE 15. Appendicular elements of Latonia sp. from Hambach: left scapula (IPB-HaH 2324) in dorsal (A) and ventral (B) views; left scapula (IPB-HaH 2325) in dorsal (C) and ventral (D) views; left scapula (IPB-HaH 2329) in dorsal (E) and ventral (F) views; right humerus (IPB-HaH 2061) in ventral (G) and dorsal (H) views; left ilium (IPB-HaR 2015) in lateral (I) and medial (J) views; right ilium (IPB-HaR 2083) in lateral (K) and medial (L) views; right ilium (IPB-HaR 2417) in lateral (M) and medial (N) views. Scale bars equal 1 mm. Abbreviations: ca, crista anterior; dt, dorsal tubercle; ig, interiliac groove; pa, pars acromialis.
FIGURE 15 in Comparison of Miocene to early Pleistocene-aged Castor californicus (Rodentia: Castoridae) to extant beavers and implications for the evolution of Castor in North America
FIGURE 15. Comparison of the skull and dentary of extant Castor canadensis (MVZ 80744) and C. fiber (USNM 248154) to fossil C. californicus (USNM 26154). Note that the North American species C. canadensis and C. californicus share shorter nasals, wider occiput, and more posteriorly positioned orbits than Eurasian C. fiber; both also display more anterior placement of the anterior margin of the pterygoid insertion and greater spread of the posterior processes (coronoid, condylar, angular) than C. fiber.
FIGURE 15 in Fossil snakes of the Penny Creek Local Fauna from Webster County, Nebraska, USA, and the first record of snakes from the Early Clarendonian (12.5-12 Ma) of North America
FIGURE 15. Climate envelope models of MAT (A) and AP (B) based on the congenerics of the snake assemblage of the Penny Creek local fauna. The gray-filled spaces signify the areas of overlap for all taxa included in the models.
FIGURE 15 in A vanished ecosystem: Sophora microphylla (Kōwhai) dominated forest recorded in mid-late Holocene rock shelters in Central Otago, New Zealand
FIGURE 15. Malvaceae (Plagianthus sp. or Hoheria sp.) abaxial surface cuticle morphology (Transmitted light microscopy). A. Stellate trichome at upper right (LX2520, Shelter-103, scale bar equals 40 μm. B. Stellate trichome at upper right, group of stomatal complexes at lower left (LX2951, Shelter-33, scale bar equals 40 μm). C. 'balloon' trichome (LX2520, Shelter-103, scale bar equals 40 μm). D. two-armed trichome (LX2520, Shelter-103, scale bar equals 40 μm).
FIGURE 15. 1 in Taxonomic notes on Recent Foraminifera from the Continental Shelf-Slope Region of Southwestern Bay of Bengal, East Coast of India
FIGURE 15. 1, Globorotalia neoflexuosa in dorsal view (scale equals 500 μm). 2-3, Neogloboquadrina dutertrei (d'Orbigny, 1839) in dorsal view (scale equals 200 μm) (2) and in ventral view (scale equals 300 μm) (3). 4-5, Neogloboquadrina incompta (Cifelli, 1961) in dorsal view (scale equals 100 μm) (4) and in ventral view (scale equals 100 μm) (5). 6-8, Pulleniatina obliquiloculata (Parker and Jones in Carpenter, Parker and Jones, 1862) in dorsal view (scale equals 200 μm) (6); in ventral view (scale equals 200 μm) (7); and in apertural view (scale equals 200 μm) (8). 9, Textularia agglutinans d'Orbigny, 1839a in dorsal view (scale equals 400 μm). 10, Textularia candeiana d'Orbigny, 1839a in dorsal view (scale equals 300 μm). 11, Textularia earlandi Parker 1952 in dorsal view (scale equals 1 mm). 12, Textularia fistula Cushman, 1911 in dorsal view (scale equals 300 μm). 13-14, Textularia granulata Costa 1855 in dorsal view (scale equals 400 μm) (13) and in apertural view (scale equals 200 μm) (14). 15, Textularia pala (Cžjžek, 1848) in dorsal view (scale equals 200 μm). 16, Textularia pseudogramen Chapman and Parr, 1937 in dorsal view (scale equals 200 μm). 17, Bigenerina nodosaria d'Orbigny, 1826 in dorsal view (scale equals 400 μm). 18, Sahulia conica (d'Orbigny, 1839) in dorsal view (scale equals 100 μm). 19, Sahulia kerimbaensis (Said, 1949) in dorsal view (scale equals 100 μm). 20, Karrerotextularia flintii (Cushman, 1911) in dorsal view (scale equals 100 μm). 21, Spirorutilus carinatus (d'Orbigny, 1846) in dorsal view (scale equals 100 μm).
FIGURE 15. 1, 2 in Synoptic revision of the Silurian fauna from the Pentland Hills, Scotland described by Lamont (1978)
FIGURE 15. 1, 2: Polygrammoceras (Flettoceras) filibeg Lamont, 1978, from the Wether Law Linn, Wether Law Linn Formation; specimen NMS G.1979.77.12 from the Lamont Collection, figured by Lamont on plate XXIX, figure 10, showing view of the sample (including handwritten label) (1), and close-up of the specimen (2). 3, 5: McCallienellus catherinae Lamont, 1978, from the Wether Law Linn, Wether Law Linn Formation; 3: specimen NMS G.1979.77.36.2 from the Lamont Collection, figured by Lamont on plate XXIX, figure 11; 5: handwritten label with taxonomic name misspelled. 4, 5: Learmontella epicyclica Lamont, 1978, from the Wether Law Linn, Wether Law Linn Formation; 4: specimen NMS G.1979.77.36.3 from the Lamont Collection, figured by Lamont on plate XXIX, figure 12; 5: handwritten label. 6–11: Proetus (Forbesia?) pitcairni Lamont, 1978, from the Deerhope Burn (possibly R260), Wether Law Linn Formation; all specimens from the Lamont Collection; 6, 8: specimen NMS G.1979.77.24, figured by Lamont on plate XXX, figure 2, and label with specimen glued; 7: handwritten label with information related to the specimens; 9: specimen NMS G.1979.77.25, figured by Lamont on plate XXX, figure 3; 10: specimen NMS G.1979.77.23, figured by Lamont on plate XXX, figure 1; 11: specimen NMS G.1979.77.26, figured by Lamont on plate XXX, figure 4. Scale bars: 5 mm (figures 1, 2); 2 mm (figures 8–11); 1 mm (figure 6); 0.5 mm (figures 3, 4).
Figure 15 in Aras Valley (northwest Iran): high-resolution stratigraphy of a continuous central Tethyan Permian-Triassic boundary section
Figure 15. Selected representatives of ammonoids from the Aras Valley section. (a) Prototoceras discoidale Ruzhencev, 1963, specimen MB.C.29343 from the lower Julfa Formation. (b) Vedioceras fusiforme Korn & Ghaderi, 2019, holotype MB.C.29132 from the upper Julfa Formation. (c) Iranites transcaucasius (Shevyrev, 1965), specimen MB.C.29148 from the Zal Member. (d) Pseudotoceras sp., specimen MB.C.29344 from the lower Julfa Formation. (e) Dzhulfoceras sp., specimen MB.C.29345 from the upper Julfa Formation. (f) Dzhulfites nodosus Shevyrev, 1965, specimen MB.C.29182 from the Zal Member at −9.50 m. (g) Araxoceltites cristatus Korn, Ghaderi and Ghanizadeh Tabrizi, 2019, holotype MB.C.22706 from the Zal Member. (h) Phisonites triangulus Shevyrev, 1965, specimen MB.C.22703 from the Zal Member at −12.90 m.
Figure 15. Cymaclymenia formosa n in A morphometric approach to conch ontogeny of Cymaclymenia and related genera (Ammonoidea, Late Devonian)
Figure 15. Cymaclymenia formosa n. sp. from the Anti-Atlas of Morocco; all × 1.0. (A) Holotype MB.C.22609.1 (Korn 1995 Coll.) from Erfoud. (B) Paratype MB.C.22669.1 (Wendt Coll.) from Hamar Laghdad. (C) Paratype MB.C.22669.2 (Wendt Coll.) from Hamar Laghdad. (D) Paratype MB.C.22669.3 (Wendt Coll.) from Hamar Laghdad. (E) Paratype MB.C.22649.1 (Korn 2009 Coll.) from Lambidia (Aguelmous). (F) Paratype MB.C.22649.2 (Korn 2009 Coll.) from Lambidia (Aguelmous). (G) Paratype MB.C.22669.4 (Wendt Coll.) from Hamar Laghdad.
Fig. 15. Polybius henslowii Leach, 1820 in A new cryptic species of Polybiidae (Crustacea: Decapoda: Portunoidea) from the East Atlantic, with considerations on the genus Polybius
Fig. 15. Polybius henslowii Leach, 1820, ♂ from France, Bay of Biscay, cruise PELGAS 10, stn O.0627, chalut 68 (RBINS, INV. 187237). A. Dorsal habitus. B. Facial habitus. C. Ventral habitus. D. Carpus of right pereiopod.
Fig. 15 in A late Paleocene fauna from shallow-water chemosynthesis-based ecosystems, Spitsbergen, Svalbard
Fig. 15. Tellinid bivalve?Tellina sp. from the upper Paleocene, Basilika Formation, Fossildalen, Spitsbergen, Svalbard. NRM-PZ Mo 149165, partial shell, left valve view (A1), dorsal view showing partially preserved opisthodethic external ligament (A2).
Fig. 12–15 in Scarabaeoidea (Insecta: Coleoptera) Of The Kaliningrad Region (Russia): The Commented Actual Checklist, Assessment Of Rarity And Notes To Regional Protection
Fig. 12–15. Sampling and observation locations in the Kaliningrad Region: 12 – Melolontha hippocastani (green point), and Polyphylla fullo (red points); 13 – Oxythyrea funesta (green points), and Hoplia parvula (red points); 14 – Protaetia marmorata (green points); 15 – Gnorimus nobilis (blue points), and Osmoderma barnabita (green points).
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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.