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Figure 12 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 12. Lucicutia hulsemannae. Male, paratype. (A, B) P5 of different specimens. Scale bars: 0.1 mm.
Figure 10 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 10. Lucicutia hulsemannae sp. nov. Female, paratype. (A) Habitus, dorsal; (B) anterior part of cephalosome, right lateral; (C) urosome, right lateral; (D) rostrum, anterior; (E) P1; (F) P5. Scale bars: 0.1 mm.
Figure 9 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 9. Lucicutia wolfendeni. Male. (A) Anterior part of cephalosome, dorsal; (B) posterior corners of prosome and urosome, dorsal; (C) same, left lateral; (D) 15–17 articulated segments of antennule; (E) 18–21 articulated segments of antennule; (F) left P5; (G) right P5. (A–E) South-eastern Pacific Ocean, Eltanin cruise 10, station 868; (F, G) north-western Pacific Ocean, off Kamchatka, Severnyi Polyus station 1. Scale bars: 0.1 mm.
Figure 6 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 6. Lucicutia bradyana. Male. (A, B) P5, specimen identified by Hulsemann (1966) as Lucicutia rara, Indian Ocean, Anton Bruun cruise 6, station 355C: (A) right, (B) left legs; (C, D) P5, holotype of Lucicutia rara, NMNH 113545. Scale bars: 0.1 mm.
Figure 8 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 8. Lucicutia wolfendeni. Female. (A) Anterior part of cephalosome, dorsal; (B, C) urosome, dorsal; (D–F) urosome, right lateral; (G–I) rostrum, anterior; (J) P5. (A, C, F, I, J) south-eastern Pacific Ocean, Eltanin cruise 10, station 868; (B, D) north-western Pacific Ocean, off Kamchatka, Severnyi Polyus station 1; (E, H) south-eastern Pacific Ocean, Eltanin cruise 11, station 911; (G) south-eastern Pacific Ocean, Eltanin cruise 10, station 874. Scale bars: 0.1 mm.
Figure 5 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 5. Lucicutia bradyana. Male. (A, B) Habitus, dorsal view (different specimens); (C) rostrum, anterior; (D) 14–16 articulated segments of antennule; (E) 17–18 articulated segments of antennule; (F) 19–21 articulated segments of antennule. (A, C) Indian Ocean, Ob cruise 1, station 129; (B, D–F) south-eastern Pacific Ocean, Eltanin cruise 10, station 868. Scale bars: 0.1 mm.
Figure 3 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 3. Lucicutia bradyana. Female. (A, B) Habitus, dorsal; (C) anterior part of cephalosome, right lateral; (D) posterior corners of prosome and urosome, dorsal. (A) South-western Pacific Ocean, Ob cruise 1, station 83; (B) Indian Ocean, Ob cruise 1, station 129; (C, D) south-eastern Pacific Ocean, Eltanin cruise 10, station 868. Scale bars: 0.1 mm.
Figure 4 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 4. Lucicutia bradyana. Female. (A–C) Rostrum, anterior; (D–F) posterior corners of prosome and urosome, right lateral; (G) P5; (H, I) second and third exopod segments of P5. (A, F, H) South-eastern Pacific Ocean, Eltanin cruise 10, station 868; (B, E, G) Indian Ocean, Ob cruise 1, station 129; (C, D, I) south-western Pacific Ocean, Ob cruise 1, station 83. Scale bars: 0.1 mm.
Figure 2 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 2. Lucicutia grandis. Male. (A) Habitus, dorsal; (B) urosome, left lateral; (C) rostrum, anterior; (D) 14–17 articulated segments of antennule; (E) 18–21 articulated segments of antennule; (F, G) P5 left; (H) P5 right exopod; (J, K) P5 right; (I) P5 right coxopod, basipod and endopod. (A–F, H–J) Arabian Sea, Thomas Thompson cruise TN050; (G, K) Arabian Sea, Anton Bruun cruise 2, station 108-549. Scale bars: 0.1 mm (A–F, H–J); 0.5 mm (G, K).
Figure 1 in New species of Lucicutia and taxonomic status of L. grandis (Copepoda, Calanoida, Lucicutiidae)
Figure 1. Lucicutia grandis. Female. (A) Habitus, dorsal; (B) anterior part of cephalon, dorsal; (C) same, left lateral; (D) rostrum, anterior; (E, F) urosome, dorsal; (G) same, right lateral; (H, I, J) same, left lateral; (K) P5. (A, B, D, E, G, I, J) Arabian Sea, Thomas Thompson cruise TN050; (C, F, H, K) tropical Indian Ocean, Ob cruise 1, station 142. Scale bars: 0.1 mm.
Fig. 2 in Size-associated morphological changes in Epigrapsus notatus (Heller, 1865) and the taxonomic status of E. villosus Ng, 2003 (Crustacea: Decapoda: Brachyura: Gecarcinidae)
Fig. 2. Various-sized males of Epigrapsus notatus (Heller, 1865) (not to scale). a, ZRC2002.0011 (8.9 × 9.4 mm) (holotype of E. villosus); b, RUMF-ZC-1129 (11.2 × 12.7 mm); c, RUMF-ZC-2140 (13.4 × 15.6 mm); d, RUMF-ZC-1130 (17.0 × 20.0 mm); e, RUMF-ZC-2141 (20.9 × 24.3 mm); f, ZRC 1998.0826 (29.3 × 36.1 mm).
Fig. 1 in Size-associated morphological changes in Epigrapsus notatus (Heller, 1865) and the taxonomic status of E. villosus Ng, 2003 (Crustacea: Decapoda: Brachyura: Gecarcinidae)
Fig. 1. Size-associated characters of Epigrapsus notatus (Heller, 1865). a, ZRC 2002.0011 (holotype of E. villosus) (8.9 × 9.4 mm); b, RUMF-ZC-1129 (11.2 × 12.7 mm); c, d, ZRC 1998.0826 (29.3 × 36.1 mm). a, c, cephalothorax, anterior view; b, d, ambulatory legs, upper view. Arrows indicate epigastric cristae.
Fig. 4 in Size-associated morphological changes in Epigrapsus notatus (Heller, 1865) and the taxonomic status of E. villosus Ng, 2003 (Crustacea: Decapoda: Brachyura: Gecarcinidae)
Fig. 4. Morphological character states (young, adult, and fully grown individual) in relation to carapace width of male and female Epigrapsus notatus (Heller, 1865). See "Morphological comparisons" for each character state.
Fig. 12 in Systematics of the family Ocypodidae Rafinesque, 1815 (Crustacea: Brachyura), based on phylogenetic relationships, with a reorganization of subfamily rankings and a review of the taxonomic status of Uca Leach, 1814, sensu lato and its subgenera
Fig. 12. Photographs of some species of the genera Tubuca, Xeruca and Ucides. A, T. urvillei (Ranong, Thailand); B, X. formosensis (Taiwan); C, D, U. cordatus (Brazil).
Fig. 10 in Systematics of the family Ocypodidae Rafinesque, 1815 (Crustacea: Brachyura), based on phylogenetic relationships, with a reorganization of subfamily rankings and a review of the taxonomic status of Uca Leach, 1814, sensu lato and its subgenera
Fig. 10. Photographs of some species of the genera Minuca, Paraleptuca, Petruca and Tubuca. A, M. herradurensis (Panama); B, M. rapax (Brazil); C, Pa. chlorophthalmus (East Africa); D, Pa. crassipes (Donghsa, Taiwan); E, Pa. splendida (Penghu, Taiwan); F, Pe. panamensis (Costa Rica); G, T. arcuata (Hainan, China); H, T. bellator (Labuan, Malaysia). C, courtesy of S. Cannicci.
Fig. 8 in Systematics of the family Ocypodidae Rafinesque, 1815 (Crustacea: Brachyura), based on phylogenetic relationships, with a reorganization of subfamily rankings and a review of the taxonomic status of Uca Leach, 1814, sensu lato and its subgenera
Fig. 8. Photographs of some species of the genus Austruca. A, A. annulipes (Tioman, Malaysia); B, A. bengali (Selangor, Malaysia); C, A. iranica (Iran); D, A. lactea (Taiwan); E, A. mjoebergi (New Territory, Australia); F, A. perplexa (Dongsha, Taiwan); G, A. sindensis (Iran); H, A. triangularis (Cebu, Philippines). E, courtesy of P. Backwell.
Fig. 7 in Systematics of the family Ocypodidae Rafinesque, 1815 (Crustacea: Brachyura), based on phylogenetic relationships, with a reorganization of subfamily rankings and a review of the taxonomic status of Uca Leach, 1814, sensu lato and its subgenera
Fig. 7. Photographs of some species of the genus Gelasimus. A, G. borealis (Taiwan); B, G. dampieri (Northern Territory, Australia); C, G. hesperiae (Zanzibar, holotype); D, G. jocelynae (Penghu, Taiwan); E, G. neocultrimana (Fiji); F, G. tetragonon (Penghu, Taiwan); G, G. vocans (Labuan, Malaysia); H, G. vomeris (Queensland, Australia).
Fig. 5 in Systematics of the family Ocypodidae Rafinesque, 1815 (Crustacea: Brachyura), based on phylogenetic relationships, with a reorganization of subfamily rankings and a review of the taxonomic status of Uca Leach, 1814, sensu lato and its subgenera
Fig. 5. Photographs of some species of the genus Ocypode. A, O. ceratophthalmus (Taiwan); B, O. cordimana (Dongsha, Taiwan); C, O. fabricii (Northern Territory, Australia); D, O. kuhlii (Christmas Island); E, O. occidentalis (Panama); F, O. rotundata (Iran); G. O. sinensis (Dongsha, Taiwan); H, O. stimpsoni (Taiwan).
Fig. 2. A in Systematics of the family Ocypodidae Rafinesque, 1815 (Crustacea: Brachyura), based on phylogenetic relationships, with a reorganization of subfamily rankings and a review of the taxonomic status of Uca Leach, 1814, sensu lato and its subgenera
Fig. 2. A Bayesian inference (BI) tree of the family Ocypodidae and outgroups, based on the combined 28S, 16S and COI markers. The solid circle at the node means it is strongly supported by both BI (≥ 90) and ML (≥ 70); and the open circle means only one method is strongly supported. Name of species or genus quoted means it is suggested as a synonym in this study.
Fig. 6 in Systematics of the family Ocypodidae Rafinesque, 1815 (Crustacea: Brachyura), based on phylogenetic relationships, with a reorganization of subfamily rankings and a review of the taxonomic status of Uca Leach, 1814, sensu lato and its subgenera
Fig. 6. Photographs of some species of the genera Afruca and Uca s. str. A, B, A. tangeri (Spain); C, U. heteropleura (Panama); D, U. insignis (El Salvador); E, U. major (Bahamas); F, U. maracoani (Brazil); G, U. princeps (Peru); H, U. stylifera (Panama).
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.