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FIGURE 7 in The most common sponges on the Great Barrier Reef seabed, Australia, include species new to science (Phylum Porifera)
FIGURE 7. Coscinoderma nardorus (Lendenfeld, 1886) (QMG329979 (SBD500371)). A, Top view of the ectosomal skeleton (scale bar 2 mm). B, Cross section of the skeleton, showing cored primary tracts protruding through the ectosome (scale bar 1 mm). C, Fibre network within the choanosome (scale bar 500 μm). D, QMG330307 (SBD524660). Specimen (scale bar 9 cm).
FIGURE 6 in The most common sponges on the Great Barrier Reef seabed, Australia, include species new to science (Phylum Porifera)
FIGURE 6. Model distribution map displaying predicted and actual distribution and biomass of Coscinoderma nardorus (Lendenfeld 1886) from the Great Barrier Reef seabed, displaying: OTU code for this species (SCQMSB.BRS192537), P-AUC: Area Under the Curve performance diagnostic for the Presence/Absence model; Dev. Ratio: Deviance Ratio (P- AUC) performance diagnostic for the Biomass model; Measuresled: a device factor accounting for the difference in sampling rates between devices; Measuretrawllog(AreaHa) and Measuresledlog(AreaHa): offsets accounting for the swept area sampled by the trawl and sled; and influential predictor variables including: CRS_S_SD: influential predictor variables of standard deviation of salinity (psu), Along: along shelf gradient, GA_MUD/ GA_MUD^2: mud grainsize fraction (%) and its quadratic term.
FIGURE 9. Xenospongia patelliformis Gray, 1858 in The most common sponges on the Great Barrier Reef seabed, Australia, include species new to science (Phylum Porifera)
FIGURE 9. Xenospongia patelliformis Gray, 1858 (QMG331025 (SBD513104)) A, Specimen (scale bar 5 mm) B, Margin of discoid sponge, showing long echinating styles protruding from the tangential ectosomal layer as well as from brushes perpendicular to the surface (scale bar 3 mm). C, Ectosome, displaying the high concentration of asters and arrangement surface brushes (scale bar 500 μm) D, Ectosome in cross section, with long style protruding from ectosomal bundles. Dense, tangential arrangement of styles and highly arenaceous choanosome are also visible (scale bar 1 mm). E, Large oxyaster (scale bar 15 μm). F, Strongylasters (scale bar 10 μm). G, Style (Type II) (scale bar 50 μm). H, Style (Type I) (scale bar 200 μm). I, Style head (Type II) (scale bar10 μm). J, Style tip (Type II) (scale bar 20 μm). K, Style (Type III)(scale bar 250 μm).
FIGURE 10 in The most common sponges on the Great Barrier Reef seabed, Australia, include species new to science (Phylum Porifera)
FIGURE 10. Model distribution map displaying predicted and actual distribution and biomass of Spheciospongia vagabunda (Ridley, 1884) from the Great Barrier Reef seabed, displaying: OTU code for this species (SCQMSB.BRS192794), P-AUC: Area Under the Curve performance diagnostic for the Presence/Absence model; Dev. Ratio: Deviance Ratio (P-AUC) performance diagnostic for the Biomass model; Measuresled: a device factor accounting for the difference in sampling rates between devices; Measuretrawllog(AreaHa) and Measuresledlog(AreaHa): offsets accounting for the swept area sampled by the trawl and sled; and influential predictor variables including: CRS_T_SD: temperature (°C) standard deviation, GA_CRBNT/ GA_ CRBNT ^ 2: carbonate (%) and its quadratic term, TRWL_EFF_I: weighted average annual trawl effort, GBR_SLOPE: slope.
FIGURE 2 in The most common sponges on the Great Barrier Reef seabed, Australia, include species new to science (Phylum Porifera)
FIGURE 2. Colour coding used for defining biomass and standard error for species distribution maps as depicted in figures 4, 6, 8 and 10.
FIGURE 3 in The most common sponges on the Great Barrier Reef seabed, Australia, include species new to science (Phylum Porifera)
FIGURE 3. Substrate composition plot, showing the relative composition of sand, carbonate, gravel and mud for four species (Dercitus xanthus sp. nov., Xenospongia patelliformis Gray, 1858, Coscinoderma nardorus (Lendenfeld, 1886) and Spheciospongia vagabunda (Ridley, 1884)).
FIGURE 99. Syntype 30613 in Catalogue of the type specimens in the fish collection of the National Zoological Museum, Institute of Zoology, Chinese Academy of Sciences, Beijing, China
FIGURE 99. Syntype 30613 and type localities of holotype and paratypes of Amblyrhynchotes hypselogenion rufopunctatus.
FIGURE 30 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURE 30. Colletes wollmanni Noskiewicz, ♂. a—lateral habitus; b—dorsal habitus; c—head; d—S7; e—labels.
FIGURE 25 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURE 25. Colletes alpinus Morawitz, lectotype, ♂. a—lateral habitus; b—dorsal habitus; c—head; d—S7; e—labels.
FIGURES 1–24 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURES 1–24. Labels of the type specimens of Colletes deposited in the ZISP. 1—Colletes alicularis Noskiewicz; 2—C. arenarius Morawitz; 3—C. askhabadoides Kuhlmann et Proshchalykin; 4—C. cinerascens Morawitz; 5—C. comatus Noskiewicz; 6—C. flavicornis Morawitz; 7—C. kaline Kuhlmann et Proshchalykin; 8—C. kipyatkovi Kuhlmann et Proshchalykin; 9—C. pseudomirabilis Kuhlmann et Proshchalykin; 10—C. mirabilis Kuhlmann et Proshchalykin; 11—C. muellermotzfeldi Kuhlmann et Proshchalykin; 12—C. pesenkoi Kuhlmann et Proshchalykin; 13—C. plumulosus Noskiewicz; 14—C. pseudocinerascens Noskiewicz; 15—C. laevifrons Morawitz; 16—C. radoszkowskii Noskiewicz; 17—C. rubripes Noskiewicz; 18—C. skorikowi Noskiewicz; 19—C. squamulosus Noskiewicz; 20—C. subnitens Noskiewicz; 21—C. transitorius Noskiewicz; 22—C. transitus Kuhlmann et Proshchalykin; 23—C. uralensis Noskiewicz; 24—C. mongolicus Friese.
FIGURE 29 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURE 29. Colletes tuberculatus Morawitz, lectotype, ♂. a—lateral habitus; b—dorsal habitus; c—head; d –S7; e—labels.
FIGURE 27 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURE 27. Colletes montanus Morawitz, lectotype, ♂. a—lateral habitus; b—dorsal habitus; c—head; d—S7; e—labels.
FIGURE 26 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURE 26. Colletes caspicus Morawitz, lectotype, ♀. a—lateral habitus; b—dorsal habitus; c—head; d—labels.
FIGURE 28 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURE 28. Colletes squamosus Morawitz, lectotype, ♂. a—lateral habitus; b—dorsal habitus; c—head; d—S7; e—labels.
FIGURE 31 in Type specimens of Colletes Latreille (Hymenoptera, Colletidae) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg, with description of a new species
FIGURE 31. Colletes morawitzensis Kuhlmann & Proshchalykin, sp. nov., ♂. a –lateral habitus; b—metasomal terga 1 and 2; c—head (frontal view); d—head (lateral view); e—gonostylus (lateral view); f—S7 (dorsal view). Scale bar: 1 mm.
FIGURES 74–79. Ectoedemia species 219 in Nepticulidae (Lepidoptera) of East Asia (2). Study of a collection sample deposited at the Russian Academy of Sciences, with descriptions of new species and a checklist
FIGURES 74–79. Ectoedemia species 219, slide no. AG 219 (ZIN). 74, adult, male. Scale bar 1 mm; 75, valva; 76, capsule (aedeagus removed); 77, same, reconstruction; 78, aedeagus; 79, same, reconstruction. Scale bar 100 µm.
FIGURES 69–73 in Nepticulidae (Lepidoptera) of East Asia (2). Study of a collection sample deposited at the Russian Academy of Sciences, with descriptions of new species and a checklist
FIGURES 69–73. Ectoedemia ortiva Rocienė & Stonis, sp. nov., holotype, slide no. AG 207 (ZIN). 69, gnathos and pseuduncus; 70, 71, aedeagus, focused from ventral to respectively more dorsal; 72, apical part of aedeagus; 73, same, reconstruction. Scale bar 100 µm.
FIGURES 64–68 in Nepticulidae (Lepidoptera) of East Asia (2). Study of a collection sample deposited at the Russian Academy of Sciences, with descriptions of new species and a checklist
FIGURES 64–68. Ectoedemia ortiva Rocienė & Stonis, sp. nov., holotype. 64, adult, male; 65, same, underside of forewing. Scale bar 1 mm; 66, capsule (aedeagus removed), slide no. AG 207 (ZIN); 67, same, valva; 68, same, gnathos and pseuduncus. Scale bar 100 µm.
FIGURES 60–63 in Nepticulidae (Lepidoptera) of East Asia (2). Study of a collection sample deposited at the Russian Academy of Sciences, with descriptions of new species and a checklist
FIGURES 60–63. Male genitalia of Nepticulidae species. 60, Ectoedemia picturata Puplesis, general view, slide no. AG 235 (ZIN); 61, E. scoblei Puplesis, capsule (aedeagus removed), slide no. AG 355 (ZIN); 62, Etainia capesella (Puplesis), capsule (aedeagus removed), slide no. AG 145 (ZIN); 63, same, gnathos and pseuduncus. Scale bar 100 µm.
FIGURES 37–40 in Nepticulidae (Lepidoptera) of East Asia (2). Study of a collection sample deposited at the Russian Academy of Sciences, with descriptions of new species and a checklist
FIGURES 37–40. Male genitalia of Stigmella species. 37, S. dentatae Puplesis, capsule (aedeagus removed), slide no. AG 279 (ZIN); 38, same, aedeagus; 39, S. aladina Puplesis, capsule (aedeagus removed), slide no. AG 172 (ZIN); 40, same, aedeagus. Scale bar 100 µm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.