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13,397 results for “sp. nov.”
Fig. 7 in On Thaicypris panhai gen. et sp. nov., a new herpetocypridine ostracod (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 7. Thaicypris panhai gen. et sp. nov., allotype, ♂ (MSU-ZOC.315). A. T1, right palp. B. T1, left palp. C. Hemipenis. D. Zenker organ. Arrows on A–B indicate the small pointed projection at the inner base of the terminal segment. Scale bars: A–C = 50 μm; D = 100 μm.
Fig. 6 in On Thaicypris panhai gen. et sp. nov., a new herpetocypridine ostracod (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 6. Thaicypris panhai gen. et sp. nov., holotype, ♀ (MSU-ZOC.314). A. T2. B. T2, terminal segment. C. T3. D. T3, terminal part. E. CR. F. CR, terminal part. G. CR attachment. Scale bar: A, C, E, G = 100 μm; B, D, F = 50 μm.
Fig. 5 in On Thaicypris panhai gen. et sp. nov., a new herpetocypridine ostracod (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 5. Thaicypris panhai gen. et sp. nov., holotype, ♀ (MSU-ZOC.314). A. Md-palp. B. Md-palp, α, β, γ setae. C. Mx1. D. T1. E. T1, palp (endopodite). Scale bar: A–D = 50 μm; E = 100 μm.
Fig. 9 Morphometric relationship between a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 9 Morphometric relationship between a total body length and weight and b coxa 4 diagonal length and total body length. Bathymetric relationship of total body length for c juvenile and d female Eurythenes atacamensis sp. nov. Grey areas in b and c represent 95% confidence intervals of the model mean
Fig. 7 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 7 Bayesian phylogenies showing the relationship of Eurythenes atacamensis sp. nov. within Eurythenes based on a 16S rRNA and b COI. Specimens added by this study are in bold, with E. atacamensis sp. nov. in blue. An asterisk next to the name denotes holotype. References for comparative sequences are in Table 2. Branch nodes have Bayesian posterior probabilities and maximum likelihood bootstrap support values. Values less than 0.7 or 70 are not stated or depicted by an asterisk. Species delimitation inferences by the bPTP and/or GYMC analyses are shown on the right side of each phylogeny.
Fig. 8 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 8 The relative proportion of females, males, juveniles, and intersex of Eurythenes atacamensis sp. nov. by depth (m) at the Atacama Trench
Fig. 6 a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 6 a Eurythenes atacamensis sp. nov. feeding on bait and b two colour morphs prior to ethanol preservation. Still image and specimens are from 8074 m in the Atacama Trench during the 2010 RV Sonne SO209 Expedition (see Eustace et al. (2016) for site location details)
Fig. 5 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 5 Eurythenes atacamensis sp. nov. holotype (MNHNCL AMP-15816). a left pereopod 5; b left pereopod 6; c left pereopod 7; d epimeron and epimeron 3 insert with arrow denoting small tooth on the posteroventral corner; e left uropod 1; f left uropod 2; g left uropod 3 with the arrow showing plumose setae; h telson; i telson distal margin insert
Fig. 3 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 3 Eurythenes atacamensis sp. nov. holotype (MNHNCL AMP-15816). a left antenna 1; b left antenna 2; c left mandible with an arrow to highlight the broad palp; d head with arrows to highlight the anterior lobe and ventral corner of the eye; e left maxilla 1 outer plate and palp not flattened; f left maxilla 1 inner plate; g left maxilla 1 palp insert; h left maxilla 1 outer plate face; i left maxilla 2; j left and right maxillipeds with inner plates removed; k left maxilliped dactylus insert; l left maxilliped inner plate (medio-facial spines not shown)
Fig. 4 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 4 Eurythenes atacamensis sp. nov. holotype (MNHNCL AMP-15816). a left gnathopod 1; b chela of left gnathopod 1; c left gnathopod 2; d chela of left gnathopod 2; e left pereopod 3; f left pereopod 4
Fig. 2 a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 2 a Eurythenes atacamensis sp. nov.: female holotype from 8052 m (h; MNHNCL AMP-15816), juvenile paratype from 6714 m (pj; MNHNCL AMP-15818), intersex paratype from 7834m (pi; MNHNCL AMP-15820), male paratype from 7204 m (pm; MNHNCL AMP-15817); b Eurythenes atacamensis sp. nov., mature female, holotype, MNHNCL AMP-15816
Fig. 1 a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 1 a Map of the Peru-Chile Trench defined by depths>4900 m (red). Historical collection records of this species (circle), and the historical abyssal sampling with the absence of Eurythenes atacamensis sp. nov. (triangle). The extent of map (b) is indicated by the blue box. b The eleven deployments where E. atacamensis sp. nov. was recovered in the Atacama Trench during the Atacamex Expedition (square) and the RV Sonne SO216 Expedition (circle). Isobaths are shown every 1000 m between 3000- and 7000-m-depth contours.
Fig. 30 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Fig. 30. Map showing all localities of revised specimens of Otiorhynchus azaleae (black circles), O. gredleri (white circles), O. spaethi (black squares), O. venustus (white squares) and O. hypocrita (white squares with black circle).
Fig. 29 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Fig. 29. Map showing all localities of revised specimens of Otiorhynchus subcostatus (black circles) and those of O. muffi sp. nov. (white circles). Note that O. subcostatus is also recorded from the French Massif Central (records not shown on this map).
Figs 19–24 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 19–24. Spiculum ventrale of selected Otiorhynchus (Nihus) 19. O. subcostatus (lectotype, Engadine), 20. O. spaethi (Campogrosso), 21. O. spaethi (Monte Cavallo), 22. O. azaleae (Koralpe), 23. O. azaleae (Monte Sernio), 24. O. gredleri (Cima Tombea).
Figs 10–13 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 10–13. Habitus of 10. Otiorhynchus gredleri (female from a parthenogenetic population, Piz Clünas), 11. O. azaleae (male from Koralpe), 12. Ditto (female from an amphigonic population, Wöllaner Nock), 13. Ditto (female from a parthenogenetic population, Monte Sernio).
Figs 2–5 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 2–5. Habitus of female specimens of 2. Otiorhynchus uncinatus (Sagno), 3. O. carinatopunctatus (Tarasp), 4. O. muffi sp. nov. (holotype, S-charl), 5. O. subcostatus (lectotype, Engadine).
Figs 6–9 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 6–9. Habitus of 6. Otiorhynchus venustus (female from Valmasque), 7. O. hypocrita (female from Pragelato). 8. O. gredleri (male from Monte Baldo), 9. Ditto female from an amphigonic population, same locality.
Figs 25–28 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 25–28. Penis ventral and lateral of 25. O. gredleri (Monte Baldo), 26. O. azaleae (Koralpe), 27. O. spaethi (Campogrosso), 28. O. hypocrita (Albergian).
Figs. 2–3 in Centroscelis kadleci sp. nov. from Yemen and a new synonymy in the genus Centroscelis (Coleoptera: Chrysomelidae: Chrysomelinae)
Figs. 2–3. Median lobe of aedeagus of Centroscelis kadleci sp. nov. (SEM micrographs): 2 – lateral view; 3 – apex in dorsolateral view.
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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)
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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.