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919 results for “Fossil species”
FIGURE 3 in Unexpected diversity of whitefly predators in Eocene Baltic amber-new fossil Serangium species (Coleoptera: Coccinellidae)
FIGURE 3. Distribution of Serangium. Green color = extant species; red = Baltic amber deposits. Numbers indicate number of extant species, value in square indicates number of fossil species.
FIGURE 2 in Unexpected diversity of whitefly predators in Eocene Baltic amber-new fossil Serangium species (Coleoptera: Coccinellidae)
FIGURE 2. FT-IR spectra of analysed amber piece MAIG 1535; upper = reflectance spectrum; lower = absorbance spectrum.
FIGURE 1 in Unexpected diversity of whitefly predators in Eocene Baltic amber-new fossil Serangium species (Coleoptera: Coccinellidae)
FIGURE 1. Serangium kalandyki sp. nov,. holotype MAIG 1535; A) habitus, ventral view; B) habitus, dorsal view; C) magnification of small scale-like setae on dorsal surface of elytra; D) pronotum and fore legs; E) habitus, lateral view; F) abdomen, hind elytral fovea and hind leg; G) meso and metaventrite.
FIGURE 3 in A new fossil species of Pycnomerus Erichson (Coleoptera: Zopheridae) from Baltic amber, and a replacement name for a Recent North American congener
FIGURE 3. Pycnomerus agtsteinicus sp. nov., holotype 273-2 [CCHH]: A, B—frontal habitus photomicrograph, and corresponding SR X-ray micro-CT rendering; C—caudal habitus SR X-ray micro-CT rendering; D—left antenna, ventral view; E—left antenna, dorsal view; F—left protarsus, ventral view; G—left middle leg, ventral view. Scale bars represent 0.5 mm (A–C), 0.25 mm (D–G).
FIGURE 2 in A new fossil species of Pycnomerus Erichson (Coleoptera: Zopheridae) from Baltic amber, and a replacement name for a Recent North American congener
FIGURE 2. Pycnomerus agtsteinicus sp. nov., holotype 273-2 [CCHH]: A, B—lateral left habitus photomicrograph, and corresponding SR X-ray micro-CT rendering; C, D—lateral right habitus photomicrograph, and corresponding SR X-ray micro-CT rendering. Scale bars represent 1 mm.
FIGURES 3–4 in Remarkable new fossil species of Schistostoma Becker (Diptera: Dolichopodidae Microphorinae) from mid-Cretaceous Burmese amber
FIGURES 3–4. Schistostoma burmanicum sp. nov. male holotype (AMNH Bu-0029). 3. Habitus photograph, right lateral view. 4. Right foreleg and midleg, right lateral view.
FIGURES 11–12 in Remarkable new fossil species of Schistostoma Becker (Diptera: Dolichopodidae Microphorinae) from mid-Cretaceous Burmese amber
FIGURES 11–12. Schistostoma foliatum sp. nov. male holotype (AMNH Bu-175). 11. Wing. 12. Legs, right lateral view. Abbreviations: C—costal vein; CuA—anterior branch of cubital vein; cua—anterior cubital cell; dm—discal medial cell; dmm—discal medial crossvein; h–humeral crossvein; M1, M2, M4—medial veins; R1, R2+3, R4+5—radial veins; r-m—radial-medial crossvein; Sc—subcostal vein.
FIGURES 5–8 in Remarkable new fossil species of Schistostoma Becker (Diptera: Dolichopodidae Microphorinae) from mid-Cretaceous Burmese amber
FIGURES 5–8. Schistostoma burmanicum sp. nov. and Schistostoma foliatum sp. nov. 5. Right antenna of S. burmanicum, left medial view. 6. Left foreleg of S. burmanicum, left lateral view. 7. Hypopygium of S. burmanicum, ventral view. 8. Left foreleg of S. foliatum, left lateral view. Abbreviations: epand—epandrium; hypd—hypandrium; hypd proc—hypandrial process.
FIGURES 1–2 in Remarkable new fossil species of Schistostoma Becker (Diptera: Dolichopodidae Microphorinae) from mid-Cretaceous Burmese amber
FIGURES 1–2. Schistostoma burmanicum sp. nov. male holotype (AMNH Bu-0029). 1. Habitus photograph, left lateral view. 2. Habitus illustration, left lateral view.
FIGURE 3 in A new fossil species of Callipteris (Callipteridae) in the Early Permian from the Xishan Area in Beijing, North China
FIGURE 3. Map showing the Permian distribution of the fossil callipterids recorded in northern China. (Revised from GS (2016) No. 1569, supervised by the Ministry of Natural Resources of China. Scale 1:32000000.)
Fig. 5 in New Onthophiline Fossil Species (Coleoptera: Histeridae: Onthophilinae) from Mid-Cretaceous Burmese Amber
Fig. 5. Comparison of pronota of Carinumerus spp. A) C. maddisoni, new species, B) C. yingae, C) C. intricatus, new species.
Fig. 2 in New Onthophiline Fossil Species (Coleoptera: Histeridae: Onthophilinae) from Mid-Cretaceous Burmese Amber
Fig. 2. Habitus images of Phasmister parallelus, new species. A) Dorsal, B) Ventral, C) Lateral, D) Dorsolateral, E) Anterior, F) Posterior. All scale bars 0.5 mm.
Fig. 1 in New Onthophiline Fossil Species (Coleoptera: Histeridae: Onthophilinae) from Mid-Cretaceous Burmese Amber
Fig. 1. Habitus images of Phasmister hkamticus, new species. A) Dorsal, B) Dorsolateral, C) Lateral, D) Ventral, E) Anterodorsal, F) Posterodorsal. All scale bars 0.5 mm.
FIGURE 3. A in First Fossil Record Of Aspredinidae: A New Species From The Late Miocene Of Northeastern Argentina
FIGURE 3. A, holotype skull of Bunocephalus serranoi nov. sp. (MAS-PV-795), B, extant Bunocephalus doriae (CFA-IC8560) in dorsal view. Abbreviations. ACF anterior cranial fontanel; BU, bump; ELD, lateral ethmoid depression; EP, epiphyseal bar; F, frontal; LAT, lateral ethmoid; MGR, median groove; PCF, posterior cranial fontanel; PTE, pterotic; STF supratemporal fossa; SPH, sphenotic; SOC, supraoccipital or parieto-supraoccipital. Scale bar: 5 mm.
FIGURE 2 in First Fossil Record Of Aspredinidae: A New Species From The Late Miocene Of Northeastern Argentina
FIGURE 2. Holotype of Bunocephalus serranoi nov. sp. (MAS-PV-795) compared with extant Bunocephalus doriae (CFAIC-6516) in A, C, dorsal; and B, D, ventral views. Abbreviations. Cl, cleithrum; Cl S, cleithrum suture; Cor, coracoid; Cor S, coracoid suture; Dor lam Web, dorsal lamina of the Weberian apparatus; Dor P, dorsal process of cleithrum; Hum P, humeral process of cleithrum; Hyo, hyomandibular; Op, opercle Po, preopercle; Scl, supracleithrum; Sp, pectoral spine. Scale bar: 5 mm.
FIGURE 1 in First Fossil Record Of Aspredinidae: A New Species From The Late Miocene Of Northeastern Argentina
FIGURE 1. Map showing the fossiliferous locality that yielded Bunocephalus serranoi nov. sp. and the current distribution of the family Aspredinidae shaded in red (based on Friel, 2003; Carvalho et al., 2015, 2018).
FIGURE 2 in Neotypification of the name Juglandites bergomensis, basionym of the fossil-species Juglans bergomensis (Juglans sect. Cardiocaryon, Juglandaceae)
FIGURE 2. The drawing in Omboni (1851) representing "Juglandites bergomensis", based on a fossil nut shown by Balsamo-Crivelli to his high-school students. It is not sure that the drawing figures the holotype, since Omboni mentions "nuts" rather that "a nut" in his notes.
FIGURE 3 in Neotypification of the name Juglandites bergomensis, basionym of the fossil-species Juglans bergomensis (Juglans sect. Cardiocaryon, Juglandaceae)
FIGURE 3. Fossil fruit from the locality Leffe (Early Pleistocene), selected as neotype of Juglandites bergomensis Balsamo-Crivelli 1840. Collection Omboni 5196, Museum of Geology and Palaeontology of Padua (MGP-PD). A. Lateral view of the side where the nut has a hole showing the internal cavity. B. Apical view. C. Basal view. D. Lateral view showing the junction of the two carpels in the middle.
FIGURE 1 in Neotypification of the name Juglandites bergomensis, basionym of the fossil-species Juglans bergomensis (Juglans sect. Cardiocaryon, Juglandaceae)
FIGURE 1. Reproduction of the original description in Balasmo-Crivelli (1840) testifying that the name "Iuglandites bergomensis" was validly published.
FIGURE 3. Acer ningmingensis. A in A new fossil-species of Acer (Sapindaceae) from the Ningming Basin in Guangxi, South China
FIGURE 3. Acer ningmingensis. A. Holotype (NHMG032584), B. Line drawing of Holotype lobe showing the venation details. C. Paratype (NHMG032585). D. Paratype (NHMG032586). E. Paratype (NHMG033717). F. Paratpe (NHMG033718). Scale bar = 1 cm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.