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Fig. 4 in First Record of the Rare Parasitic Isopod Elthusa splendida (Cymothoidae) from the Pacific Ocean, Based on a Specimen Found in a Museum Shark Collection
Fig. 4. Morphological differences between Elthusa splendida (A) and E. raynaudii (B). Posterolateral angles of pereonite 7 (arrows) and relative width of pereonite 7 and pleotelson (dashed lines). Only body outlines are shown. Scale bars: 10 mm. A, HUMZ-C 2400, ovigerous female, 57.9 mm TL; B, MNHN-IU-2016-9885, syntype, ovigerous female, 26.7 mm TL.
Fig. 1 in First Record of the Rare Parasitic Isopod Elthusa splendida (Cymothoidae) from the Pacific Ocean, Based on a Specimen Found in a Museum Shark Collection
Fig. 1. Elthusa splendida (HUMZ-C 2400, ovigerous female, 57.9 mm TL) from the buccal cavity of Japanese spurdog Squalus japonicus collected from the East China Sea. A, Dorsal view; B, ventral view.
FIG. 3 in The d'Orbigny Palaeontological Collection of the National Museum of Natural History and Science, Lisbon, Portugal: Historical perspective and revision of Cretaceous Cephalopoda
FIG. 3. — Cretaceous ammonites of the d'Orbigny Collection of the National Museum of Natural History and Science (Museu Nacional de História Natural e da Ciência): A-D, Neolissoceras grasianum (d'Orbigny, 1840) in ventral (A), lateral (B) and oral (C) views, and original label (D): Nº 357/Ammonites grasanus (d'Orb), Andar 17º Neocomiense, Terreno Cretaceo, Localidade S.t Julien (Hautes Alpes); E-G, Pleurohoplites (Pleurohoplites) renauxianus (d'Orbigny, 1840) in lateral (E) and ventral (F) views, and original label (G): Nº 464/Ammonites Renauxianus (d'Orb), Andar 20º Cenomaniense, Terreno Cretaceo, Localidade Mont-Blainville (Meuse); H-K, Acanthoceras rhotomagense (Brongniart, 1822) in oral (H), lateral (I) and ventral (J) views, and original label (K): Nº 463/Ammonites rhotomagensis (Lamarck), Andar 20º Cenomaniense, Terreno Cretaceo, Localidade Rouen (Seine inf.re). Scale bar: 2 cm.
FIG. 2 in The d'Orbigny Palaeontological Collection of the National Museum of Natural History and Science, Lisbon, Portugal: Historical perspective and revision of Cretaceous Cephalopoda
FIG. 2. — Cretaceous nautiloid and ammonites of the d'Orbigny Collection of the National Museum of Natural History and Science (Museu Nacional de História Natural e da Ciência): A-C, Angulithes triangularis de Montfort, 1808 in oral (A) and lateral (B) views, and original label (C): Nº 459/Nautilus triangularis (Montf), Andar 20º Cenomaniense, Terreno Cretaceo, Localidade Fouras (Charente inf.re); D-G, Phylloceras (Hypophylloceras) tethys (d'Orbigny, 1840) in ventral (D), lateral (E) and oral (F) views, and original label (G): Nº 360/Ammonites Tethys (d'Orb), Andar 17º Neocomiense, Terreno Cretaceo, Localidade Arredores de [environs of] Sisteron (Basses Alpes); H-K, Ptychophylloceras (Semisulcatoceras) semisulcatum (d'Orbigny, 1840) in ventral (H), lateral (I) and oral (J) views, and original label (K): Nº 359/Ammonites semisulcatus (d'Orb), Andar 17º Neocomiense, Terreno Cretaceo, Localidade Sisteron (Basses Alpes). Scale bar: 2 cm.
Montana State University Vertebrate Museum Fish Collection
<p>The Montana State University Vertebrate Museum Collection (MTVC) houses an expansive fish collection, containing historic and contemporary specimens that have contributed to decades of teaching and research. From 2018 to 2022, Montana State University, funded by the Council on Library and Information Resources “Hidden Collections” grant, digitized fish specimens housed in the MTVC. This produced over 2900 metadata records detailing sampling localities, collecting dates, and identifications of fish collected mainly from Montana, USA. The metadata records reveal the efforts of over 150 collectors, spanning seven decades of sampling. This dataset makes available the information associated with 48,000 individual fish specimens from 102 species stored in the MTVC. Digitization of this collection accompanies the previously digitized Montana Prairie Fish Collection at Montana State University. Together, they provide a comprehensive insight into the distribution of fishes in Montana over time and across habitats.</p>
Fig. 5 in Patterns of tooth crown wear in Dryomys nitedula (Mammalia, Rodentia): age-related variation in the light of annual cycle specifics based on museum collections
Fig. 5. Changes in the external appearance of the forest dormouse during the first year of life. The animal was caught in early June 2009 near Luhansk: a — 19 of June, 1–2 weeks old, feeding exclusively with insects, mainly locusts; b — 16 of July, 1+ month of age, active motions, feeding with insects, including locusts, butterflies, and mealworms; c — 18 of August, 2+ months of age, low mobility, willingly feeding with mealworms, also began to consume nuts, honey, and cookies; d — 16 of September, 3+ months of age, low mobility, feeding almost exclusively with nuts, honey and other energy-rich products instead of insects, which became less preferred.
Fig. 16 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 16. Typhlotanais priscilae sp. nov., ♀, dissected (MZUSP 38009). A–F. Pereopods 1–6. G. Pleopod. H. Uropod. Scale bar = 0.1 mm.
Fig. 19 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 19. Typhlotanais spinibasis sp. nov., paratype (MZUSP 32893), ♀, dissected. A–F. Pereopods 1–6. G. Pleopod. H. Uropod. Scale bar = 0.1 mm.
Fig. 5 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 5. Typhlotanais longiseta sp. nov., paratype (MZUSP 38015), ♀, dissected. A. Dorsal view. B. Lateral view. C. Antennule. D. Antenna. Scale bars: A–B = 1 mm; C–D = 0.1 mm.
Fig. 13. Typhlotanais ischnochelasp. nov. A–H in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 13. Typhlotanais ischnochelasp. nov. A–H. Paratype (MZUSP 34428), ♀, dissected. A–F. Pereopods 1–6. G. Pleopod. H. Uropod. I–J. Additional material, ♀ (MZUSP 38014). I. Detail of pereopod prickly tubercles surrounded by spines. J. Detail of uropod microtrichia. Scale bars: A–H = 0.1 mm; I = 0.01 mm; J = 0.02 mm.
Fig. 2 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 2. Typhlotanais andradeorum sp. nov. A. ♀ (MNRJ 18207), dorsal view. B–D. Paratype (MZUSP 32839), ♀, dissected. B. Lateral view.C. Antennule.D. Antenna. Scale bars: A–B = 1 mm; C–D = 0.1 mm.
Fig. 3 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 3. Typhlotanais andradeorum sp. nov., paratype (MZUSP 32839), ♀, dissected. A. Labrum. B. Left mandible. C. Right mandible. D. Maxillule. E. Labium. F. Maxilliped. G. Cheliped. Scale bar = 0.1 mm.
Fig. 1. Map showing sampling localities during scientific expeditions carried out along the Brazilian continental shelf and slope area from 1999 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 1. Map showing sampling localities during scientific expeditions carried out along the Brazilian continental shelf and slope area from 1999 to 2016. Abbreviations: ES = Espírito Santo; RJ = Rio de Janeiro.
Fig. 18 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 18. Typhlotanais spinibasis sp. nov., paratype (MZUSP 32893), ♀, dissected. A. Maxillule. B. Maxilla. C. Labium. D. Maxilliped. E. Cheliped. Scale bar = 0.1 mm.
Fig. 17 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 17. Typhlotanais spinibasis sp. nov. A–B. Additional material, ♀ (MZUSP 34473). A. Dorsal view. B. Lateral view. C–G. Paratype (MZUSP 32893), ♀, dissected. C. Antennule. D. Antenna. E. Labrum. F. Left mandible. G. Right mandible. Scale bars: A–B = 1 mm; C–D = 0.1 mm.
Fig. 14 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 14. Typhlotanais priscilae sp. nov., ♀, dissected (MZUSP 38009). A. Dorsal view. B. Lateral view. C. Antennule. D. Antenna. Scale bars: A–B = 1 mm; C–D = 0.1 mm.
Fig. 12 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 12. Typhlotanais ischnochela sp. nov., paratype (MZUSP 34428), ♀, dissected. A. Labrum. B. Left mandible. C. Right mandible. D. Maxillule. E. Epignath. F. Labium. G. Maxilliped. H. Cheliped. Scale bar = 0.1 mm.
Fig. 21 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 21. Bathymetric range of species of Typhlotanais along the Brazilian coast (19° S–24° S) based on samples listed in Table 1.
Fig. 4 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 4. Typhlotanais andradeorum sp. nov., paratype (MZUSP 32839), ♀, dissected. A–F. Pereopods 1–6. G. Pleopod. H. Uropod. Scale bar = 0.1 mm.
Fig. 11 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 11. Typhlotanais ischnochela sp. nov. A–B. ♀ (MZUSP 34444). A. Dorsal view. B. Lateral view. C–D. Paratype (MZUSP 34428), ♀, dissected. C. Antennule. D. Antenna. Scale bars: A–B = 1 mm; C–D = 0.1 mm.
ScienceDex guides
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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.