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974 results for “new localities”
Fig. 10. The lecanocrinid species Ammonicrinus sulcatus from locality 1 in Revision of the flexible crinoid genus Ammonicrinus and a new hypothesis on its life mode
Fig. 10. The lecanocrinid species Ammonicrinus sulcatus from locality 1 (A–G, I–Q) and 2 (H) (see Appendix 1). A–D. Facet views of GIK−2104–2107, showing nodular tubercles and spine−tubercles on exterior flanks of the columnals of the mesistele. E. Facet view (E1) and view of the exterior flank of a specimen (E2) (GIK−2108), showing tubercles and spine−tubercles on exterior flank of the columnal of the mesistele. F. Facet view of a specimen (GIK−2109), showing tubercles and spine−tubercles on exterior flank of the columnal of the mesistele. G. Facet view of a strongly sculptured columnal (GIK−2110) of the distal−most mesistele, showing connection to the dististele. H. Facet view of a columnal of the distal−most mesistele (GIK−2111), showing long LCEE and connection to the dististele. I. Facet view of a columnal of the distal−most mesistele (GIK−2112), showing relatively long LCEE and connection to the dististele. J. Interior view of a distal−most, barrel−like columnal of the mesistele (GIK−2113) with LCEE. K. Interior view of a distal−most, barrel−like columnal of the mesistele (GIK−2114), with partly preserved LCEE. L. Facet view of a juvenile distal columnal of the mesistele (GIK−2115) with nodular tubercles on exterior flank and on LCEE. M–N. Juvenile columnals of the proximal mesistele in facet views, showing well developed nodes on exterior flanks. M. GIK−2116. N. GIK−2117. O. Facet view of a juvenile distal columnal of the mesistele (GIK−2118) with nodular tubercles on exterior flank and on LCEE. P. Lateral view (P1) and view of the exterior flank (P2) of the partly preserved mesistele (GIK−2119); the specimen shows nodular tubercles, spine−tubercles and a few partly preserved spines (arrow). Q. Facet view (Q1) and lateral view (Q2) of a cracked, coiled mesistele (GIK−2120), showing several tuberculated and concave ossicles of the cup (arrows). Scale bars 10 mm.
Fig. 1. Maps indicating studied localities. A in New finds of skeletal fossils in the terminal Neoproterozoic of the Siberian Platform and Spain
Fig. 1. Maps indicating studied localities. A. Map of Uchur−Maya region showing reference sections of the Yudoma River: 1, Nuuchchalakh; 2, Kyyry−Ytyga; 3, Ust'−Yudoma (Suvorovella and Majaella locality). Inset map indicates location within Siberian Platform. B. Pre−Hercynian outcrops and tectonostratigraphic zones of Iberian Peninsula. Valdelacasa, Ibor, Navalpino, and Abenójar anticlines are outlined. Zones: CZ, Cantabrian; ELAZ, East Lusitanian–Alcudian; GCZ, Galician–Castilian; OMZ, Ossa−Morena; SPZ South Portuguese; WALZ, West Asturian−Leonese.
Fig. 2 in Genetic characterisation of Tanqua (von Linstow, 1879) (Nematoda: Gnathostomatidae) larval forms including new host and locality records
Fig. 2. Larval nematodes identified as Tanqua sp. 2A specimen 674-1 anterior tip (20x); 2B specimen 678-1 showing tooth like projections of pseudolabia (tl) and lateral pseudolabium (lp) (40x); 2C specimen 674-1 posterior trunk (4x) showing annulations (an). and 2D specimen 678-9 tail (20x) respectively showing annulations (an) and anus (as). The circled area in Fig. 2A is indicative of the damage to internal structures which precluded detailed morphological examination.
Fig. 1 in Genetic characterisation of Tanqua (von Linstow, 1879) (Nematoda: Gnathostomatidae) larval forms including new host and locality records
Fig. 1. Phylogenetic tree (of 18S sequences of nematodes) inferred using the Maximum Likelihood Method. The bootstrap values higher than 80 are indicated next to the branches. The new sequences generated from this study are indicated with asterisks.
FIGURE 7. Map showing Condylura fossil bearing localities and a in Condylura (Mammalia, Talpidae) reloaded: New insights about the fossil representatives of the genus
FIGURE 7. Map showing Condylura fossil bearing localities and a possible palaeobiogeographical scenario. The orange striped area represents the present distribution of the extant C. cristata. The orange star represents Condylura sp. (middle Miocene locality of Kalkaman Lake, Kazakhstan). The red square represents cf. Condylura sp. (late Miocene locality of Malheur River, Oregon, USA). The green triangles represent C. kowalskii and C. izabellae (Pliocene Polish localities). The blue circles represent the late Pleistocene-Holocene localities of C. cristata.
FIGURE 6 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 6. Hyainailourinae indet. from Bir el Ater (Algeria). 1-2, UON 84-359, left P3 in occlusal (1) and labial (2) views. Scale bar equals 5 mm.
FIGURE 3 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 3. Parvavorodon gheerbranti Solé et al., 2014b from Chambi CBI-1 (Tunisia). 1-2, CBI-1-555, left P3 in labial (1) and occlusal (2) views. 3-4, CBI-1-556, left M1or2 in labial (3) and occlusal (4) views. 5-7, CBI-1-557, left p2 in lingual (5), labial (6) and occlusal (7) views. 8-10, CBI-1-558, right m1 in lingual (8), labial (9) and occlusal (10) views. 11-13, CBI-1-559, left m3 in lingual (11), labial (12) and occlusal (13) views. Scale bar equals 5 mm.
FIGURE 4 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 4. Parvavorodon gheerbranti Solé et al., 2014b from Chambi CBI-1 (Tunisia). 1-6, CBI-1-613, left dentary bearing dp4, m1, alveoli of dp3 and m2, and distal alveolus of dp2? in labial (1) occlusal (2), occlusal based on a CTscan reconstruction (3), occlusal close-up (4), labial close-up (5) and lingual close-up (6) views. The black arrows on 2 indicate the two foramina related to the eruption of the permanent teeth (see text). Scale bar equals 2 mm.
FIGURE 2 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 2. Furodon crocheti Solé et al., 2014b from Chambi CBI-1 (Tunisia). 1-2, CBI-1-550, right P2 in lingual (1) and occlusal (2) views. 3-4, CBI-1-551, right maxillary fragment bearing a P2 in labial (3) and occlusal (4) views. 5-6, CBI-1-552, right M1 in labial (5) and occlusal (6) views. 7-9, CBI-1-612, right dp3 in lingual (7), labial (8) and occlusal (9) views. 10-12, CBI-1-554, left m3 in lingual (10), labial (11) and occlusal (12) views. 13-15, CBI-1-553, right m1 in lingual (13), labial (14) and occlusal (15) views. Abbreviations: Hd, Hypoconulid; Par., Paraconid; Pro., Protoconid; Psd, Protostylid. Scale bar equals 5 mm.
FIGURE 5 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 5. CT-scan reconstruction of Parvavorodon gheerbranti Solé et al., 2014b from Chambi CBI-1 (Tunisia); CBI-1-613, left dentary bearing dp4, m1, alveoli of dp3 and m2, and distal alveolus of dp2?. 1, occlusal view; 2, parasagittal slice showing the roots of the dp4 and m1. Note the absence of germ below dp3 and dp4. Scale bar equal 2 mm.
FIGURE 7 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 7. Masrasector cf. ligabuei from Bir el Ater (Algeria). 1-2, UON 84-360, right M1or2 in occlusal (1) and labial (2) views. 3-4, UON 84-361, right M3 in lingual (3) and occlusal (4) views. 5-7, UON 84-397, right p3 in occlusal (5), lingual (6) and labial (7) views. Scale bar equals 5 mm.
FIGURE 9. 1 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 9. 1, geographic distribution of the Faunal Assemblages (see text). 2, stratigraphic distribution of Tinerhodon and hyaenodont subfamilies in Africa during Paleocene and Eocene, and of the faunal assemblages regarding the main climatic events and mammal appearances. Note the gap in the fossil record of the Koholiinae. Abbreviations: Barton.= Bartonian; EECO: Early Eocene Climatic Optimum; MECO: Middle Eocene Climatic Optimum; PETM: Paleocene-Eocene Thermal Maximum; Priabon.= Priabonian; Seland.= Selandian; Thanet.= Thanetian.
FIGURE 1. 1 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 1. 1, localisation of the African fossiliferous localities that yielded Paleocene and Eocene hyaenodonts (see Table 1); 1: Ouled Abdoun Basin (Morocco); 2: Ouarzazate Basin (Morocco); 3: El Kohol (Algeria); 4: Gour Lazib (Algeria); 5: Chambi (Tunisia); 6: Black Crow locality from Sperrgebiet (Namibia); 7: Bir el Ater (Algeria); 8: Dur atTalah (Libya); 9: Fayum Province = Birket Qarun Locality 2, Jebel Qatrani, and Qasr el-Sagha Formation (Egypt); 10: Taqah (Oman). 2, correlation of Eocene localities including hyaenodonts (see Table 1) [adapted from Coster et al. (2012, figure 1) and Seiffert (2010, figure 2.1)]. The black circles (1) and the names in Bold Italic (2) identify the localities under study. Abbreviations: Barton.= Bartonian; Priabon.= Priabonian; Seland.= Selandian; Thanet.= Thanetian.
FIGURE 8. Teratodontinae indet. 1 from Chambi CBI-1 in New fossils of Hyaenodonta (Mammalia) from the Eocene localities of Chambi (Tunisia) and Bir el Ater (Algeria), and the evolution of the earliest African hyaenodonts
FIGURE 8. Teratodontinae indet. 1 from Chambi CBI-1 (Tunisia). 1-2, CBI-1-614, right P4 in occlusal (1) and labial (2) views. Scale bar equals 5 mm.
Dataset for "On the potential of the Cluster Ion Counter (CIC) to observe local new particle formation, condensation sink and growth rate of newly formed particles"
<p>Data for Kulmala et al. (2024 )"On the potential of the Cluster Ion Counter (CIC) to observe local new particle formation, condensation sink and growth rate of newly formed particles" (https://doi.org/10.5194/ar-2024-14).</p> <p>Included in the file are number concentrations of sub-2 nm ions and 2-2.3 nm ions measured with Cluster Ion Counter (CIC) and Neutral cluster and Air Ion Spectrometer (NAIS) at SMEAR II station in Hyytiälä, Finland. Concentrations of 1-2 nm ions measured with the NAIS are also included. Sub-2 nm (2-2.3 nm) ion concentrations measured with CIC are refered as Channel 1 (Channel 2-Channel 3) in the .csv file.</p> <p>Contact Santeri Tuovinen (santeri.tuovinen@helsinki.fi) for more details.</p>
Linked collectors and determiners for: The Plecoptera of Panama. II. Two new species, one new country record, and additional locality records of Anacroneuria (Perlidae) from western Panama.
Natural history specimen data linked to collectors and determiners held within, "The Plecoptera of Panama. II. Two new species, one new country record, and additional locality records of Anacroneuria (Perlidae) from western Panama". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b67114df-ddee-49d9-a264-a3c20bded320">https://bionomia.net/dataset/b67114df-ddee-49d9-a264-a3c20bded320</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b67114df-ddee-49d9-a264-a3c20bded320">https://gbif.org/dataset/b67114df-ddee-49d9-a264-a3c20bded320</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: A new species and locality record for Pseudopsyra katydid (Orthoptera: Phaneropterinae).
Natural history specimen data linked to collectors and determiners held within, "A new species and locality record for Pseudopsyra katydid (Orthoptera: Phaneropterinae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/9990e3ba-4e6f-4a9c-91e1-729934ca283a">https://bionomia.net/dataset/9990e3ba-4e6f-4a9c-91e1-729934ca283a</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/9990e3ba-4e6f-4a9c-91e1-729934ca283a">https://gbif.org/dataset/9990e3ba-4e6f-4a9c-91e1-729934ca283a</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: The genus Manota Williston (Diptera: Mycetophilidae) in Peruvian Amazonia, with description of sixteen new species and notes on local species richness.
Natural history specimen data linked to collectors and determiners held within, "The genus Manota Williston (Diptera: Mycetophilidae) in Peruvian Amazonia, with description of sixteen new species and notes on local species richness". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/276af928-cd8d-48ae-b5e9-0b673cc0f76f">https://bionomia.net/dataset/276af928-cd8d-48ae-b5e9-0b673cc0f76f</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/276af928-cd8d-48ae-b5e9-0b673cc0f76f">https://gbif.org/dataset/276af928-cd8d-48ae-b5e9-0b673cc0f76f</a>. Formatted as a Frictionless Data package.
Figures 42–45. Eunota togata described taxa type localities. 42 in Taxonomic revision of Eunota togata (LaFerté-Sénectère, 1841) (Coleoptera: Cicindelidae) in North America with a new subspecies from western Texas and New Mexico, United States
Figures 42–45. Eunota togata described taxa type localities. 42) E. t. togata, TL: Port Isabel, Cameron Co., Texas; coastal saltwater estuaries. 43) E. t. latilabris, TL: Kackley, Republic Co., Kansas; salt marsh and brine pond on Saint John's Creek. 44) E. t. globicollis, TL: Englewood, Clark Co., Kansas; saline banks of Cimarron River. 45) E. t. fascinans, TL: Santa Rosa, Guadalupe Co., New Mexico; saline soils from freshwater ponds above Pecos River.
FIGURE 14 in Psittacosaurus amitabha, a New Species of Ceratopsian Dinosaur from the Ondai Sayr Locality, Central Mongolia
FIGURE 14: Osteohistological section of left metatarsal III. Abbreviations: FLB, fibro-lamellar bone; IPO, incomplete primary osteons; SO, secondary osteons; PFB, parallel-fibered bone.
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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)
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.