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Figure 3. Photomicrograph showing enlarged detail from Fig. 2 in The Dunbogan L6 Chondrite: A New Meteorite Fall from New South Wales, Australia
Figure 3. Photomicrograph showing enlarged detail from Fig. 2. Matrix interstitial to possible chondrule fragments
Text-fig. 9. Phylogenetic tree indicating the number of required character state changes (steps) under parsimony for various positions of Miranthus gen. nov. in a molecular based backbone tree (see material and methods for additional details). in Early Flowers Of Primuloid Ericales From The Late Cretaceous Of Portugal And Their Ecological And Phytogeographic Implications
Text-fig. 9. Phylogenetic tree indicating the number of required character state changes (steps) under parsimony for various positions of Miranthus gen. nov. in a molecular based backbone tree (see material and methods for additional details).
Рис. 5–10. Otiorhynchus paradigitalis sp. n., общий виΑ и ΑетаΛи строения. 5 –самец, гоΛотип; 6 – самка, паратип; 7 – эΑеагус; 8 – сперматека; 9 – spiculum ventrale; 10 – кокситы. Figs 5–10. Otiorhynchus paradigitalis sp. n., general view and details of structure. 5 – male, holotype; 6 – female, paratype; 7 – aedeagus; 8 – spermatheca; 9 – spiculum ventrale; 10 – coxites. in A new weevil of the subgenus Otismotilus Reitter, 1912, genus Otiorhynchus Germar, 1824 (Coleoptera: Curculionidae: Entiminae) from the Caucasus
Рис. 5–10. Otiorhynchus paradigitalis sp. n., общий виΑ и ΑетаΛи строения. 5 –самец, гоΛотип; 6 – самка, паратип; 7 – эΑеагус; 8 – сперматека; 9 – spiculum ventrale; 10 – кокситы. Figs 5–10. Otiorhynchus paradigitalis sp. n., general view and details of structure. 5 – male, holotype; 6 – female, paratype; 7 – aedeagus; 8 – spermatheca; 9 – spiculum ventrale; 10 – coxites.
DESI 2022 indicator detailed data
<p>EUROSTAT detailed data for the DESI 2022 indicator (from 2013, if available):</p><ul><li>At least basic digital skills</li><li>ICT specialists</li><li>Female ICT specialists</li><li>Fixed very high capacity network coverage</li><li>5G coverage</li><li>SMEs with a basic level of digital intensity</li><li>AI</li><li>Cloud</li><li>Big data</li><li>Digital public services for citizens</li><li>Digital public services for businesses</li></ul><p>Source: https://ec.europa.eu/eurostat</p>
Fig. 7 in New details of the enigmatic 100 million years old antlion-like larvae of Ankyloleon (Myrmeleontiformia, Neuroptera)
Fig. 7. All known specimens of Ankyloleon Badano, Haug & Cerretti, 2021 as simplified restorations, all to the same scale. A–C. Specimens of Ankyloleon caudatus Badano, Haug & Cerretti, 2021. D–I. Specimens of unclear species. J. Holotype (PED 2038) of A. caroluspetrus sp. nov. C–F and I based on Badano et al. (2021).
Fig. 6 in New details of the enigmatic 100 million years old antlion-like larvae of Ankyloleon (Myrmeleontiformia, Neuroptera)
Fig. 6. Late stage larva of Ankyloleon caroluspetrus sp. nov., holotype, PED 2038, and modern larva for comparison. A–C. Legs of PED 2038. A. Close-up on first pair of walking legs. B. Colour-marked version of right leg of larva. C. Colour-marked version of left leg of larva. D–E. Modern larva of an owllion ("Ascalaphidae"; for terminology issues, see Haug et al. 2022c), ZMH 62877. D. Overview in ventral view. E. Close-up on legs. Abbreviations: cx = coxa; fe = femur; ta = tarsus; ti = tibia; tr = trochanter.
Fig. 3 in New details of the enigmatic 100 million years old antlion-like larvae of Ankyloleon (Myrmeleontiformia, Neuroptera)
Fig. 3. Early stage larva (stage 1?) of Ankyloleon Badano, Haug & Cerretti, 2021, species unclear, PED 1727. A. Ventro-lateral view. B. Colour-marked version of A. C. Dorso-lateral view. Abbreviations: hc = head capsule; pa = posterior abdomen; sy = stylet; te = trunk end.
Fig. 4 in New details of the enigmatic 100 million years old antlion-like larvae of Ankyloleon (Myrmeleontiformia, Neuroptera)
Fig. 4. Late stage larva of Ankyloleon caroluspetrus sp. nov., holotype, PED 2038. A. Dorsal view B. Colour-marked version of A. C. Ventral view. Abbreviations: aa = anterior abdomen; hc = head capsule; pa = posterior abdomen; pt = prothorax; sy = stylet; te = trunk end.
Fig. 5 in New details of the enigmatic 100 million years old antlion-like larvae of Ankyloleon (Myrmeleontiformia, Neuroptera)
Fig. 5. Late stage larva of Ankyloleon caroluspetrus sp. nov., holotype, PED 2038, continued. A. Closeup of head. B. Close-up of distal part of stylets. C. Close-up on inner edges of stylets with serrations. D. Close-up on possible antenna and dolichaster-like setae with prominent sockets. Abbreviations: at? = possible antenna; se = seta; so = socket. A, D are images under reflected light; B–C are inverted images under transmitted light.
Fig. 1 in New details of the enigmatic 100 million years old antlion-like larvae of Ankyloleon (Myrmeleontiformia, Neuroptera)
Fig. 1. Late stage larva of Ankyloleon caudatus Badano, Haug & Cerretti, 2021, PED 2475. A. Ventral view. B. Lateral right view. C. Dorsal view. E. Colour-marked version of a combined image of A and C. E. Close-up on tip of stylets, showing serrations. F. Close-op of pronotum with prominent setae. G. Close-up on paddle-shaped trunk end. E is an inverted image under transmitted light; all other images under reflected light. Abbreviations: hc = head capsule; pa = posterior abdomen; pt = prothorax; sy = stylet.
Fig. 2 in New details of the enigmatic 100 million years old antlion-like larvae of Ankyloleon (Myrmeleontiformia, Neuroptera)
Fig. 2. Larvae of Ankyloleon Badano, Haug & Cerretti, 2021, isolated heads with stylets. A. PED 1877a, species unclear. B–C. PED 2619, Ankyloleon caudatus Badano, Haug & Cerretti, 2021. B. Overview. C. Close-up on inner edges of stylets with serrations.
Data for: Implementing detailed nucleation predictions in the Earth system model EC-Earth3.3.4: sulfuric acid-ammonia nucleation
<p>Model dataset variables produced from the IFS and TM5 modules in EC-Earth3 version 3.3.4. which contains the control case and three experiments with the NPF lookup table. This paper is published at EGUshpere by journal: Geoscientific Model Development.</p> <p>The files contain:</p> <p>Compressed tar file of NetCDF data from IFS output for all four simulations. All IFS data have been averaged to monthly means from 6-hourly grib datasets. The post-process bash script which contains the function for the CDN and cloud effective radius weighted average towards cloud_time is found in the supplemented zendo link.</p> <p>NetCDF files from TM5 general output for each simulation. </p>
Fig. 4. Detailed lithological column around the D–C in Rugose corals across the Devonian-Carboniferous boundary in NW Turkey
Fig. 4. Detailed lithological column around the D–C boundary (DCB) in the Topluca section (unit ET-DC in Fig. 2). The stratigraphic distribution of some guide taxa is also indicated.
Figure 1. Victoriombrus spp. details. A, V in A new genus of millipedes (Diplopoda: Polydesmida: Dalodesmidae) from wet forests in southern Victoria, with brief remarks on the Victorian Polydesmida
Figure 1. Victoriombrus spp. details. A, V. acanthus sp. nov., male paratype from NMV K-8849; B, V. seminudus sp. nov., male paratype from NMV K-8856. 1, Antenna; 2, posterior leg on somite 6; 3, posterior leg on somite 12; 4, dorsal outline view of somite 12; 5, posterior outline view of somite 12. Scale bar = 1.0 mm; setation and antennal cones not shown.
Detailed information on cost and sale prices on Polish pig market in the period 2017-mid2022
<p>The database contains detailed information on costs and sale prices of piglets and finishers on Polish martket in the period January 2017 - July 2022. The prices of cereals used for feeding are taken from the average monthly data of the Ministry of Agriculture and the daily stock exchange quotations of Agrolok. The remaining operational costs (veterinary costs, utilities, labor, and transport) were assumed at a constant average level established on the basis of the reference methodological publication of the Danish research and development organization called “Seges Innovation” (2022) and a manual on pig farming (Pawłowski, 2020). The same sources were used to determine the optimal feeding model, which is important for calculating feed costs. Assumptions for calculating feed cost, the cost of falls, labor costs in piglet and finisher production, as well as piglet transportation costs are presented in the excel sheet.</p>
Text-fig. 8. Ulmaceae a–e, Rosaceae f–l. a: Cedrelospermum, leaflet missing base but showing simple teeth, UAPC-ALTA S 25748. b: Ulmus with prominent teeth, asymmetric base, BBM-PAL-P000015. c: Ulmus leaf with prominent teeth, UAPC-ALTA S 59506. d: Ulmus fruit, UAPC-ALTA S 6590. e: Basal half of Ulmus leaf showing the obtuse teeth with subbasal entry of veins to the teeth, UAPC-ALTA S 59517. f: cf. Rubus, UAPC-ALTA S 67691. g. Prunus leaf, UAPC-ALTA S 25746. h: cf. Hesperomeles UAPC-ALTA S 67692. i: Photinia pagae, UAPC-ALTA S 67693. j: cf. Prunus, detail from g. k: Rosaceous leaf, UAPC-ALTA S 59501. l: Rosaceae, possibly Kerriae. BBM-PAL-P000047. Scale bars: a, f, i, k, l = 2 cm; b–e, g, h, j = 1 cm. in The Early Eocene Flora Of Horsefly, British Columbia, Canada And Its Phytogeographic Significance
Text-fig. 8. Ulmaceae a–e, Rosaceae f–l. a: Cedrelospermum, leaflet missing base but showing simple teeth, UAPC-ALTA S 25748. b: Ulmus with prominent teeth, asymmetric base, BBM-PAL-P000015. c: Ulmus leaf with prominent teeth, UAPC-ALTA S 59506. d: Ulmus fruit, UAPC-ALTA S 6590. e: Basal half of Ulmus leaf showing the obtuse teeth with subbasal entry of veins to the teeth, UAPC-ALTA S 59517. f: cf. Rubus, UAPC-ALTA S 67691. g. Prunus leaf, UAPC-ALTA S 25746. h: cf. Hesperomeles UAPC-ALTA S 67692. i: Photinia pagae, UAPC-ALTA S 67693. j: cf. Prunus, detail from g. k: Rosaceous leaf, UAPC-ALTA S 59501. l: Rosaceae, possibly Kerriae. BBM-PAL-P000047. Scale bars: a, f, i, k, l = 2 cm; b–e, g, h, j = 1 cm.
Text-fig. 3. Pinaceae, Taxaceae. a: Pinus needle fascicle with 3 needles, UAPC-ALTA S 25088A. b: Pinus needle fascicle with at least 4 needles, UAPC-ALTA S 59496. c: Articulate Pinus seed (section Diploxylon) showing seed body partly detached from wing, BBM-PAL-P000007. d: Winged pinaceous seed with elongate, flattened wing and narrow seed body, BBM-PAL-P000048. e: Another winged pinaceous seed with very narrow seed body, BBM-PAL-P000008. f: Amentotaxus leaf, UAPC-ALTA S S25086A. g: Higher magnification counterpart of (f) showing abaxial (lower) leaf surface with two parallel stomatal bands and tapered leaf tip S 25086B. h: Higher magnification of specimen in (f) showing adaxial (upper) leaf surface with detail of single midvein. Scale bars: a–e, g, h = 1 cm, f = 2 cm. in The Early Eocene Flora Of Horsefly, British Columbia, Canada And Its Phytogeographic Significance
Text-fig. 3. Pinaceae, Taxaceae. a: Pinus needle fascicle with 3 needles, UAPC-ALTA S 25088A. b: Pinus needle fascicle with at least 4 needles, UAPC-ALTA S 59496. c: Articulate Pinus seed (section Diploxylon) showing seed body partly detached from wing, BBM-PAL-P000007. d: Winged pinaceous seed with elongate, flattened wing and narrow seed body, BBM-PAL-P000048. e: Another winged pinaceous seed with very narrow seed body, BBM-PAL-P000008. f: Amentotaxus leaf, UAPC-ALTA S S25086A. g: Higher magnification counterpart of (f) showing abaxial (lower) leaf surface with two parallel stomatal bands and tapered leaf tip S 25086B. h: Higher magnification of specimen in (f) showing adaxial (upper) leaf surface with detail of single midvein. Scale bars: a–e, g, h = 1 cm, f = 2 cm.
Text-fig. 2. Ferns, Ginkgo, and taxodioid conifers. a: Filicalean fern type 1. UAPC-ALTA S sn. b, c: Filicalean fern type 2. b: Overview of specimen, UAPC-ALTA S 59515. c: Detail of (b) to show pinnule shape. d: Azolla primaeva, small plant fragments and rhizoids, BBM-PAL-P000002. e: Metasequoia occidentalis twig with leafy branchlets, BBM- PAL-P000003. f: Ginkgo biloba leaf showing dichotomous venation, GSC 7567. g: Taxodioid branches with flared shoot apices that may represent small cones, UAPC-ALTA S 25090. h: Metasequoia occidentalis branchlet showing opposite leaves, UAPC-ALTA S 59495. i: Taxodioid branchlet showing variation, BBM-PAL-P000004. j: Taxodioid pollen cone, BBM-PAL-P000045. k: Metasequoia seed cone, BBM-PAL-P000005 A. l: cf. Chamaecyparis, BBM-PAL-P000006. Scale bars: a–c, f–l = 1 cm, d = 0.5 cm, e = 2 cm. in The Early Eocene Flora Of Horsefly, British Columbia, Canada And Its Phytogeographic Significance
Text-fig. 2. Ferns, Ginkgo, and taxodioid conifers. a: Filicalean fern type 1. UAPC-ALTA S sn. b, c: Filicalean fern type 2. b: Overview of specimen, UAPC-ALTA S 59515. c: Detail of (b) to show pinnule shape. d: Azolla primaeva, small plant fragments and rhizoids, BBM-PAL-P000002. e: Metasequoia occidentalis twig with leafy branchlets, BBM- PAL-P000003. f: Ginkgo biloba leaf showing dichotomous venation, GSC 7567. g: Taxodioid branches with flared shoot apices that may represent small cones, UAPC-ALTA S 25090. h: Metasequoia occidentalis branchlet showing opposite leaves, UAPC-ALTA S 59495. i: Taxodioid branchlet showing variation, BBM-PAL-P000004. j: Taxodioid pollen cone, BBM-PAL-P000045. k: Metasequoia seed cone, BBM-PAL-P000005 A. l: cf. Chamaecyparis, BBM-PAL-P000006. Scale bars: a–c, f–l = 1 cm, d = 0.5 cm, e = 2 cm.
Text-fig. 9. Miscellaneous leaves. a: Leaf of Anacardiaceae, UAPC-ALTA S 59513. b: Sapindaceous leaf, BBM-PAL-P000046. c: Twig with compound leaves of Averrhoites affinis, UAPC-ALTA S 67694. d, e: cf. Morus. Finely serrate leaf with actinodromous venation, prominent agrophic veins and strongly percurrent tertiary veins, UAPC-ALTA S 67695. f: Leaf with strongly apically arched upper pairs of secondary veins and entire margins, UAPC-ALTA S 59504. g: Compound leaf, UAPC-ALTA S 59504A. h: Detail of (g) showing one leaflet. i: Incomplete basal part of a lamina with rounded base and entire margin, UAPC-ALTA S 6565. j: Compound leaf with leaflets sessile on a stout rachis, UAPC-ALTA sn. Scale bars: a, c, d, i = 2 cm, b, e–h, j = 1 cm. in The Early Eocene Flora Of Horsefly, British Columbia, Canada And Its Phytogeographic Significance
Text-fig. 9. Miscellaneous leaves. a: Leaf of Anacardiaceae, UAPC-ALTA S 59513. b: Sapindaceous leaf, BBM-PAL-P000046. c: Twig with compound leaves of Averrhoites affinis, UAPC-ALTA S 67694. d, e: cf. Morus. Finely serrate leaf with actinodromous venation, prominent agrophic veins and strongly percurrent tertiary veins, UAPC-ALTA S 67695. f: Leaf with strongly apically arched upper pairs of secondary veins and entire margins, UAPC-ALTA S 59504. g: Compound leaf, UAPC-ALTA S 59504A. h: Detail of (g) showing one leaflet. i: Incomplete basal part of a lamina with rounded base and entire margin, UAPC-ALTA S 6565. j: Compound leaf with leaflets sessile on a stout rachis, UAPC-ALTA sn. Scale bars: a, c, d, i = 2 cm, b, e–h, j = 1 cm.
Text-fig. 7. Sapindaceae, Polygalaceae, Malvaceae. a: cf. Dipteronia or Koelreuteria pinnately compound leaf with serrate leaflets, UAPC-ALTA S 59500. b, c: Dipteronia brownii, UAPC-ALTA S 59494AB, UAPC-ALTA S 59488. d: Koelreuteria dilcheri fruit valve, BBM-PAL-P000011. e: Acer, BBM-PAL-P000012. f: Detail of Deviacer fruit body from (h). g: Florissantia quilchenensis calyx, UAPC-ALTA S 26364. h: Deviacer wolfei. UAPC-ALTA S 67690. i, j: Florissantia quilchenensis calyces. i: BBM-PAL-P000013. j: BBM-PAL-P000014. Scale bars: a–e, g–j = 1 cm; f = 5 mm. in The Early Eocene Flora Of Horsefly, British Columbia, Canada And Its Phytogeographic Significance
Text-fig. 7. Sapindaceae, Polygalaceae, Malvaceae. a: cf. Dipteronia or Koelreuteria pinnately compound leaf with serrate leaflets, UAPC-ALTA S 59500. b, c: Dipteronia brownii, UAPC-ALTA S 59494AB, UAPC-ALTA S 59488. d: Koelreuteria dilcheri fruit valve, BBM-PAL-P000011. e: Acer, BBM-PAL-P000012. f: Detail of Deviacer fruit body from (h). g: Florissantia quilchenensis calyx, UAPC-ALTA S 26364. h: Deviacer wolfei. UAPC-ALTA S 67690. i, j: Florissantia quilchenensis calyces. i: BBM-PAL-P000013. j: BBM-PAL-P000014. Scale bars: a–e, g–j = 1 cm; f = 5 mm.
ScienceDex guides
Understand access before you commit
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.