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FIGURE 3 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 3. Basic units of snake trunk vertebrae. A-E are from a fossil colubrine, and F is from a fossil natricid. A: trunk vertebra in dorsal view. B: trunk vertebra in ventral view. C: trunk vertebra in left lateral view. D: trunk vertebra in anterior view. E: trunk vertebra in posterior view. F: trunk vertebrae in left lateral view. Abbreviations: C, centrum; CD, condyle; CT, cotyle; D, diapophysis; HE, hemapophysis; HK, hemal keel; HY, hypapophysis; IR interzygapophyseal ridge; LY, lymphapophyses; NA, neural arch; NC, neural canal; NS, neural spine; P, parapophysis; PCF, paracotylar foramen; PLE, pleurapophysis; PO, postzygapophysis; POA, postzygapophyseal articular facet; PR, prezygapophysis; PRA, prezygapophyseal articular facet; PRP, prezygapophyseal accessory process; SF, subcentral foramen; SG, subcentral groove; SN, synapophyses; SR, subcentral ridge; ZG, zygantrum; ZGF, zygantral articular facet; ZY, zygosphene; ZYF, zygosphenal articular facet.
FIGURE 8 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 8. Posterior trunk vertebra of Salvadora paleolineata from the Penny Creek local fauna. From top left: dorsal, ventral, anterior, posterior, and left lateral views. Scale bar equals 1 mm.
FIGURE 12 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 12. Posterior middle trunk vertebra of Nerodia sp., from the Penny Creek local fauna. From top left: dorsal, ventral, anterior, posterior, and lateral views (anterior to the left). Scale bar equals 1 mm.
FIGURE 7 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 7. Trunk vertebra of Pantherophis kansensis from the Penny Creek local fauna. From top left: dorsal, ventral, anterior, posterior, and lateral views (anterior to the left). Scale bar equals 1 mm.
FIGURE 11 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 11. Trunk vertebra of Neonatrix magna from the Penny Creek local fauna. From top left: dorsal, ventral, anterior, posterior, and lateral views (anterior to the left). Scale bar equals 1 mm.
FIGURE 10 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 10. Posterior trunk vertebra of Neonatrix elongata from the Penny Creek local fauna. From top left: dorsal, ventral, anterior, posterior, and lateral views (anterior to the left). Scale bar equals 1 mm.
FIGURE 6 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 6. Trunk vertebra of Lampropeltis similis from the Penny Creek local fauna. From top left: dorsal, ventral, anterior, posterior, and lateral views (anterior to the left). Scale bar equals 1 mm.
FIGURE 8 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 8. Comparison of the two beak larvae to a larva of Coniopterygidae. A. Larva (specimen 6802) from Haug et al. (2020b). B. New beak larva (specimen 6803, based on Figure 5B). C. Larva of Aleuropteryx loewi (based on several figures from Rousset, 1966).
FIGURE 6 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 6. Additional specimens of larvae of Sisyridae preserved in Baltic amber. Images kindly provided by Jonas Damzen (JD) and Marius Veta (RMV). A. JD 6345, specimen 6503, in ventral view, 3.5 mm long. B, C. RMV 2380, specimen 6504, 3 mm long. B. Dorsal view. C. Ventral view. D, E. JD 4198, specimen 6505, 4 mm long. D. Dorsal view. E. Ventral view. F, G. RMV 2793, specimen 6506, 2 mm long. F. Left lateral view. G. Right lateral view. H, I. RMV 2794, specimen 6507, 3.2 mm long. H. Lateral view. I. Dorsal view.
FIGURE 7 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 7. Scatterplot of PC2 vs. PC1. Note how the two beak larvae (specimens 6802 + 6803) plot together with larvae of Coniopterygidae.
FIGURE 4 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 4. Fossil larva, "beak larva" type 2, from Myanmar amber, PED 0596, specimen 6803. A. Dorsal view; posterior part not well accessible. B. Colour-marked version of A. Abbreviations: 1t = trunk appendage 1; at = antenna; hc = head capsule; ms = mesothorax; pl = palp; pt = prothorax.
FIGURE 5 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 5. Fossil larva, "beak larva" type 2, from Myanmar amber, PED 0596, specimen 6803, continued. A. Ventral view; details not well accessible; posterior end not inside the amber. B. Close-up on head in dorsal view. C. Close up on trunk appendage 1 in dorsal view. D. Same as C; estimated outline of appendage, visible through tergite outlined in red. Abbreviations: at = antenna; "b" = beak; pl = palp.
FIGURE 3 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 3. Fossil larva of Sisyridae from Baltic amber, CCGG 7122, specimen 6502. A. Dorsal view. B. Ventral view. C. Colour-marked version of B. D. Close-up of head in dorsal view. E. Colour-marked version of D. F. Close-up on gills. G. Close-up on trunk end. Abbreviations: at = antenna; hc = head capsule; ms = mesothorax; mt = metathorax; pt = prothorax; sy = stylet.
FIGURE 1 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 1. Fossil larva of Coniopterygidae from Baltic amber, CCHH 540-1, specimen 6301. A. Ventral view. B. Dorsal view. C. Colour-marked version of B. D. Close-up of head in dorsal view. E. Close-up of head in ventral view. F. Close-up on right hind leg; arrows mark claws. G. Close-up of hind leg; arrows mark claws. Abbreviations: a1–a8 = abdomen segment 1–8; at = antenna; cx = coxa; e1–3 = element 1–3; fe = femur; hc = head capsule; lp = labial palp; ms = mesothorax; mt = metathorax; pt = prothorax; st = stemmata; ta = tarsus; te = trunk end; ti = tibia; tr = trochanter.
FIGURE 2 in Diversity and fossil record of larvae of three groups of lacewings with unusual ecology and functional morphology: Ithonidae, Coniopterygidae and Sisyridae
FIGURE 2. Fossil larva of Sisyridae from Baltic amber, CCGG 1383, specimen 6501. A. Dorsal view. B. Ventral view. C. Colour-marked version of B. D. Close-up of head in dorsal view. E. Colour-marked version of D; arrows mark stemmata. F. Close-up on gills. G. Close-up on processes on trunk segments. Abbreviations: a3–a7 = abdomen segment 3–7; at = antenna; gi = gills; hc = head capsule; ms = mesothorax; mt = metathorax; pt = prothorax; sy = stylet; te = trunk end.
Fig. 3–5 in First Record Of Fossil Species Of The Genus Tetramorium (Hymenoptera, Formicidae)
Fig. 3–5. Details of structure of Tetramorium kulickae sp. n., holotype, worker: 3 — mesosoma and head in profile; 4 — waist and gaster, dorsal view; 5 — antenna funiculus. Scale bar 1 mm.
Fig. 1–2 in First Record Of Fossil Species Of The Genus Tetramorium (Hymenoptera, Formicidae)
Fig. 1–2. Tetramorium paraarmatum sp. n., holotype queen, body in dorsal view: 1 — photo of holotype; 2 — line drawing, made based on photo. Scale bar 1 mm.
Fig. 2 in The First Appearance Of Hucho (Salmonidae) In The Fossil Record Of Eastern Europe
Fig. 2. Left opercular bone of Hucho sp., NMNHU-P 41/3079, Tretya Krucha: a — medial view; b — lateral view. Scale bar 5 mm.
Fig. 3 in The First Appearance Of Hucho (Salmonidae) In The Fossil Record Of Eastern Europe
Fig. 3. Remains of Hucho sp. from the late Miocene localities of southern Ukraine: a, a 1 — fragment of left opercular bone, NMNHU-P 41/3746, Kubanka 2 (a— medial view; a1— lateral view). Scale bar 5 mm; b, c — isolated jaw teeth, NMNHU-P 45/5699–5700, Cherevychnoe 3. Scale bar 2 mm.
Fig. 1 in The First Appearance Of Hucho (Salmonidae) In The Fossil Record Of Eastern Europe
Fig. 1. Localities of the late Miocene huchen remains in Ukraine: 1 — Kubanka 2; 2 — Cherevychnoe 3; 3 — Tretya Krucha.
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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.