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806 results for “amber fossil”
Fig. 14 in Fossil soldier beetles of the Anders Damgaard amber collection. Fourth update
Fig. 14. Sanaungulus rosenzweigi sp. nov. ALDC0577/ALD.Bu.220 in Burmese amber. A: Holotype, dorsal view, bar = 1.0 mm; B: Holotype, ventral view, bar = 1.0 mm.
Fig. 4 in Fossil soldier beetles of the Anders Damgaard amber collection. Fourth update
Fig. 4. Elektrokleinia steffenseni sp. nov. ALDC0571/ALD.Bu.214 in Burmese amber. A: Holotype, detail of head and pronotum, bar = 0.2 mm; B: Holotype, detail of elytra, bar = 0.3 mm; C: Holotype, detail of last tergite, bar = 0.2 mm; D: Holotype, detail of last ventrites, bar = 0.2 mm.
Fig. 12 in Fossil soldier beetles of the Anders Damgaard amber collection. Fourth update
Fig. 12. Sanaungulus morellii sp. nov. ALDC0568/ALD.Bu.211 in Burmese amber. A: Holotype, detail of head and pronotum, bar = 0.3 mm; B: Holotype, detail of elytra and legs, bar = 0.5 mm; CD: Holotype, detail of last tergites, bars = 0.2 mm.
Fig. 11 in Fossil soldier beetles of the Anders Damgaard amber collection. Fourth update
Fig. 11. Sanaungulus morellii sp. nov. ALDC0568/ALD.Bu.211 in Burmese amber. A: Holotype, dorsal view, bar = 0.5 mm; B: Holotype, ventral view, bar = 0.5 mm.
Fig. 10 in Fossil soldier beetles of the Anders Damgaard amber collection. Fourth update
Fig. 10. Sanaungulus lethi sp. nov. ALDC0570/ALD.Bu.213 in Burmese amber. A: Holotype, detail of head and pronotum, bar = 0.2 mm; B: Holotype, detail of antenna and metasternum, bar = 0.5 mm; C: Holotype, detail of elytral apex, bar = 0.2 mm; D: Holotype, detail of last ventrites, bar = 0.2 mm.
Original figure plates for "First fossil species of ship-timber beetles (Coleoptera, Lymexylidae) from Eocene Rovno amber (Ukraine)"
<p>Original figure plates for "<strong>First fossil species of ship-timber beetles (Coleoptera, Lymexylidae) from Eocene Rovno amber (Ukraine)</strong>".</p> <p>Abstract. A new lymexylid fossil species, †<em>Raractocetus sverlilo</em> Nazarenko, Perkovsky & Yamamoto, sp. nov., is described from late Eocene Rovno amber in Ukraine. This new species is similar to species of the recent genera <em>Atractocerus</em> Palisot de Beauvois and <em>Raractocetus</em> Kurosawa in the ship-timber beetle subfamily Atractocerinae, but differs in pronotal and elytral features. Notably, the new species is one of the smallest atractocerines known to date. This is the first member of the family Lymexylidae found in Rovno amber. Our finding sheds further light on the paleodiversity of atractocerine beetles, highlighting a peculiar distribution during the Eocene. Only one extant atractocerine specimen has been reported from Europe (Greece), while three species from Eocene European amber forests with equable climate are known now, including two species from the otherwise tropical genus <em>Raractocetus</em>. Our finding of the<em> Raractocetus</em> beetle from Rovno amber is of significant biogeographically because it indicates the wide distribution of the genus in the Eocene European amber forests.</p>
Figure 6 in Genomic-Phenomic Reciprocal Illumination: Desyopone hereon gen. et sp. nov., an Exceptional Aneuretine-like Fossil Ant from Ethiopian Amber (Hymenoptera: Formicidae: Ponerinae)
Figure 6. Diagrammatic summary of male mandibular development across the Formicidae at subfamily level. Subfamilies with asterisks (*) have genera or genus groups which are diagnosable by male mandibular vestigiality. In the legend, "w" = worker/female, "m" = male. Images from the top left to the bottom right are from AntWeb [30] with the exception of the Aneuretinae (after [51]) and the †Desyopone (this study): †Sphecomyrminae (ANTWEB1032637, J. Chaul), Martialis (ANTWEB1041466, B. Boudinot), Protanilla th01 (CASENT0119776, M. Esposito), Paraponera clavata (CASENT0902407, R. Perry), Tatuidris pa01 (CASENT0102681, A. Nobile), Proceratium sc02 (CASENT0160796, E. Prado), Apomyrma zm01 (CASENT0068418, M. Esposito), Fulakora (CASENT0727874, M. Esposito), Platythyrea lamellose (CASENT0257315, B. Reynolds), Pseudoponera stigma (CASENT0178182, A. Nobile), Chrysapace sauteri (CASENT0179567, E. Prado), Myrmecia auriventris (CASENT0902789, Z. Lieberman), Nothomyrmecia macrops (CASENT0902784, Z. Lieberman), Pseudomyrmex denticollis (CASENT0173749, A. Nobile), Dolichoderus pustulatus (CASENT0103853, A. Nobile), Lasius flavus (CASENT0173150, A. Nobile), Typhlomyrmex rogenhoferi (CASENT0006787, A. Nobile), Myrmica glacialis (CASENT0862350, A. Nobile).
Figure 5 in Genomic-Phenomic Reciprocal Illumination: Desyopone hereon gen. et sp. nov., an Exceptional Aneuretine-like Fossil Ant from Ethiopian Amber (Hymenoptera: Formicidae: Ponerinae)
Figure 5. Diagrammatic representations of wing venation (top) and cell identities (bottom) based on the MAIG 6016 paratype 1 of †Desyopone hereon gen. et sp. nov. Cell names: CC = costal cell; RC1-2/SMC1 = first and second radial cells or submarginal cell 1; RC3/MC1 = third radial or first marginal cell; MC1/DC1 = first medial or first discal cell; RsC2/SMC2 = second sectorial or second submarginal cell; CuC1/SBC = first cubital or first subbasal cell; CuC2/SDC = second cubital or first subdiscal cell.
Figure 3 in Genomic-Phenomic Reciprocal Illumination: Desyopone hereon gen. et sp. nov., an Exceptional Aneuretine-like Fossil Ant from Ethiopian Amber (Hymenoptera: Formicidae: Ponerinae)
Figure 3. Amira volume renders of the raw data from the †Desyopone hereon gen. et sp. nov. holotype MAIG 6016. (A) body in lateral view; (B) mesosoma in dorsal view; (C) head, prothorax, and mesothorax in ventral view; (D) petiole in dorsal view; (E) petiole in ventral view, highlighting the petiolar tergum, laterotergites, and sternum, and the helcial tergite and sternite.
Figure 4 in Genomic-Phenomic Reciprocal Illumination: Desyopone hereon gen. et sp. nov., an Exceptional Aneuretine-like Fossil Ant from Ethiopian Amber (Hymenoptera: Formicidae: Ponerinae)
Figure 4. Volume renders of the segmented data from the head of †Desyopone hereon gen. et sp. nov., holotype MAIG 6016, showing the highly unusual mandibles. (A) full-face view; (B) ventral view; (C) dorsolateral anterior oblique view; (D) oral view. Scale bar approximate due to slightly unequal scaling of images for depiction.
Figure 1 in Genomic-Phenomic Reciprocal Illumination: Desyopone hereon gen. et sp. nov., an Exceptional Aneuretine-like Fossil Ant from Ethiopian Amber (Hymenoptera: Formicidae: Ponerinae)
Figure 1. Photograph of entire amber piece MAIG 6016, with indication of type specimens (labeled H for holotype, P1–P12 for paratypes) of †Desyopone hereon gen. et sp. nov., and with detailed views of seven of them (A–D). (A) paratype 4; (B) holotype; (C) paratypes 1–3; (D) paratypes 5–6. Scale bars: 0.5 mm.
Figure 2 in Genomic-Phenomic Reciprocal Illumination: Desyopone hereon gen. et sp. nov., an Exceptional Aneuretine-like Fossil Ant from Ethiopian Amber (Hymenoptera: Formicidae: Ponerinae)
Figure 2. Photographs of †Desyopone hereon gen. et sp. nov., MAIG 6016. (A,B) holotype, anterodorsolateral views of head and metasoma; (C) paratype 1, wing view; (D) paratype 4, wing view. AtIII/MtII: abdominal tergite III/metasomal tergite II; AsIX/MsVIII: abdominal sternite IX/metasomal sternite VIII. Note that the specimen figured in D has a duplicated crossvein 2rs-m on right fore wing. Scale bars: 0.25 mm.
Figure 6 in The first Stylogaster Macquart, 1835 (Diptera: Conopidae) fossil, from Oligo-Miocene Dominican amber, and some phylogenetic and biogeographic considerations
Figure 6. (a) Amalgamated illustration of female abdomen and terminalia of Stylogaster grimaldii sp. n., right lateral view. Scale bar = 1 mm. (b) Illustration of female terminalia of Stylogaster grimaldii sp. n., Partial specimen 2, right lateral, slightly oblique view. Scale bar = 0.5 mm.
Figure 3 in The first Stylogaster Macquart, 1835 (Diptera: Conopidae) fossil, from Oligo-Miocene Dominican amber, and some phylogenetic and biogeographic considerations
Figure 3. Photo of 1.5 female Stylogaster grimaldii sp. n. right lateral view. Partial specimen 1 is intact except for the tip of terminalia, while all that remains of Partial specimen 2 is the abdomen with the terminalia intact. Part. 1, 2. Partial specimen 1, 2. Scale bar = 1 mm.
Figure 4 in The first Stylogaster Macquart, 1835 (Diptera: Conopidae) fossil, from Oligo-Miocene Dominican amber, and some phylogenetic and biogeographic considerations
Figure 4. Photo of 1.5 female Stylogaster grimaldii sp. n. left lateral view. Partial specimen 1 is intact except for the tip of terminalia, while all the remains of Partial specimen 2 is the abdomen with the terminalia intact. Part. 1, 2. Partial specimen 1, 2. Scale bar = 1 mm.
Figure 2 in The first Stylogaster Macquart, 1835 (Diptera: Conopidae) fossil, from Oligo-Miocene Dominican amber, and some phylogenetic and biogeographic considerations
Figure 2. (a) Photo of male Stylogaster grimaldii sp. n., left lateral view. (b) Photo of male Stylogaster grimaldii sp. n., right lateral view. MbT, mesobasitarsus. Scale bar = 1 mm.
Figure 1 in The first Stylogaster Macquart, 1835 (Diptera: Conopidae) fossil, from Oligo-Miocene Dominican amber, and some phylogenetic and biogeographic considerations
Figure 1. (a) Photo of male Stylogaster grimaldii sp. n., dorsal view. OT, ocellar triangle. (b) Photo of male Stylogaster grimaldii sp. n., frontal view. Scale bar = 1 mm.
FIGURE 8 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 8. Details of non-biting midge larva (Diptera: Chironomidae: Chironominae) in the amber piece PED 1383; volume renders of µCT-scan. A, Habitus, dorsal view. B, Habitus, dorso-posterior view. C–G, Anterior body. C, In ventral view. D, Colour-marked version of C. E, Lateral view. F. Colour-marked version of D. G, Head capsule in ventral view. H, Colour-marked version of G. Abbreviations: at = antennae; lr = labrum; me = mentum; mep = mental plates, hc = head capsule.
FIGURE 9 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 9. Caddisfly larvae preserved in Baltic amber from the literature, all simplified. A, Leptoceridae representative larva (Wichard et al., 2009 their fig 09.04a, b). B, Collection Hoffeins 144.1, probably Ecnomidae (Wichard et al., 2009, their fig 09.05a, b). C, Collection Gröhn 3230, Phryganidae (likely Hagenella) (Wichard et al., 2009, their fig 09.06). D, First caddisfly larva preserved with its case (Gröhn, 2015, his fig 7665).
FIGURE 5 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 5. Additional caddisfly larvae in the Baltic amber. A, B. Collection Gröhn L7698, Leptoceridae. A, Overview. B, Close-up on head in oblique lateral view. C, D, Representatives of Integripalpia (probably related to Leptoceridae). E, Representative of Annulipalpia. F. PED 1635, Leptoceridae. C–F, image courtesy of Jonas Damzen, used with permission
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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)
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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.