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FIGURE 8 in Siphonoecetini Just, 1983 (Crustacea, Amphipoda, Ischyroceridae) 10: Belkginoecetes gen. nov., Tropicoecetes gen. nov. and Rhinoecetes Just, 1983 from north-eastern and northern Australian shallow water, with eight new species
FIGURE 8. Belkginoecetes fleurae gen. et sp. nov. Holotype, 3. a2 flag, antenna 2 flagellum; c dv and c lv, head dorsal and lateral view; us, urosome; vp, ventral projection of article 2 of antenna 2. Habitus scale: 1 mm.
FIGURE 6 in Siphonoecetini Just, 1983 (Crustacea, Amphipoda, Ischyroceridae) 10: Belkginoecetes gen. nov., Tropicoecetes gen. nov. and Rhinoecetes Just, 1983 from north-eastern and northern Australian shallow water, with eight new species
FIGURE 6. Belkginoecetes solea gen. et sp. nov. Holotype, 3, except F, paratype, ovigerous Ƥ. a2 flag, antenna 2 flagellum; c dv and c lv, head dorsal and lateral view. Habitus scale, 3 and Ƥ: 1 mm.
FIGURE 3 in Siphonoecetini Just, 1983 (Crustacea, Amphipoda, Ischyroceridae) 10: Belkginoecetes gen. nov., Tropicoecetes gen. nov. and Rhinoecetes Just, 1983 from north-eastern and northern Australian shallow water, with eight new species
FIGURE 3. Belkginoecetes cooee gen. et sp. nov. Holotype, 3. gp1 and gp2, gnathopods 1 and 2; p4 and p6, pereopods 4 and
FIGURE 2 in Siphonoecetini Just, 1983 (Crustacea, Amphipoda, Ischyroceridae) 10: Belkginoecetes gen. nov., Tropicoecetes gen. nov. and Rhinoecetes Just, 1983 from north-eastern and northern Australian shallow water, with eight new species
FIGURE 2. Belkginoecetes cooee gen. et sp. nov. Holotype, 3, except ab, paratype in abode, and a2 and a2 flag, possibly but not verifiably antenna 2 of holotype with enlargement of flagellum. c dv and c lv, head dorsal and lateral views; el, eyelobe dorsal view; vp, ventral projection of article 2 of antenna 2. Habitus and a2 scale: 1 mm; abode scale: 2 mm.
FIGURE 6 in A strikingly polychromatic new species of Gonatodes (Squamata: Sphaerodactylidae) from northern Venezuela
FIGURE 6. Map of north central Venezuela showing the collecting localities of the specimens examined of Gonatodes rozei sp. nov.. The holotype is indicated by the star and all other localities by dots. The whole type series was collected within Guatopo National Park, which is delimited by a dashed line. The other three national parks are Waraira Repano (top), Macarao (left) and Laguna de Tacarigua (right).
FIGURE 3 in A strikingly polychromatic new species of Gonatodes (Squamata: Sphaerodactylidae) from northern Venezuela
FIGURE 3. Scalation pattern in the gular area of Gonatodes rozei sp. nov. (left; illustration based on MHNLS 5532 from Valle de Guanape, Anzoátegui, Venezuela) and the falconensis complex (right; illustration based on specimen of G. taniae, TCWC 59378, from Rancho Grande, Aragua, Venezuela).
FIGURE 1 in A strikingly polychromatic new species of Gonatodes (Squamata: Sphaerodactylidae) from northern Venezuela
FIGURE 1. Diagrammatic illustration of the seven (A–G) different subcaudal scale patterns found in the genus Gonatodes.
FIGURE 2 in A strikingly polychromatic new species of Gonatodes (Squamata: Sphaerodactylidae) from northern Venezuela
FIGURE 2. Adult male (top, holotype, MHNLS 20780) and adult female (bottom, UTA 60126) of Gonatodes rozei sp. nov. in life.
FIGURE 4 in A strikingly polychromatic new species of Gonatodes (Squamata: Sphaerodactylidae) from northern Venezuela
FIGURE 4. The four different male color morphs in Gonatodes rozei sp. nov., I-IV, arranged from top to bottom. Illustration by Emil Bröckl.
FIGURE 8. A in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 8. A Bayesian inference (BI) tree for Uca chlorophthalmus (H. Milne Edwards, 1837), U. crassipes (White, 1947) and U. splendida (Stimpson, 1858) from the Indo-West Pacific and outgroups, based on COI gene. Probability values at the nodes represent support values for BI, maximum likelihood (MI) and maximum parsimony (MP). "*" indicates specimens from the type locality of U. splendida or U. crassipes. For haplotype names, see Table 1.
FIGURE 7 in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 7. The distal part of right G1 (in mesial view) of Uca chlorophthalmus (H. Milne Edwards, 1837) (A), U. crassipes (White, 1947) (B) and U. splendida (Stimpson, 1858) (C), with similar carapace widths around 19.1 mm. Specimens used are the same in (D) of Fig. 6.
FIGURE 6 in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 6. Morphology of different sizes of Uca chlorophthalmus (H. Milne Edwards, 1837), U. crassipes (White, 1847) and U. splendida (Stimpson, 1858) males (top, middle and bottom in B–D). A, left: U. crassipes, 11.2 mm (Guam; ZRC 2000.0637) and right: U. splendida, 11.3 mm (Hainan, China; NCHUZOOL 13449). B, 13.1 mm (Kenya; NCHUZOOL 13498), 13.1 mm (Cocos-Keeling; ZRC) and 13.0 mm (New Taipei, Taiwan; NCHUZOOL 13446), respectively. C, 16.2 mm (Mayotte; MNHN- IU-2011-5601), 16.3 (Cocos-Keeling; ZRC) and 16.2 mm (Penghu, Taiwan; NCHUZOOL 13481), respectively. D, 19.2 mm (Mayotte; MNHN-IU-2011-5600), 19.1 mm (Philippines; NCHUZOOL 13473), 19.2 mm (Penghu, Taiwan; NCHUZOOL 13456), respectively. E, top: U. crassipes, 23.1 mm (Dongsha, Taiwan; NCHUZOOL 13464) and bottom: U. splendida, 23.5 mm (Penghu, Taiwan; NCHUZOOL 13488). Some males' chelae are separated from the body.
FIGURE 5 in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 5. Uca crassipes (White, 1847). Live coloration of adults (A–D, F) and juvenile (E). Photos taken from Dongsha Island, Taiwan (A–E) and Cocos-Keeling, Australia (F).
FIGURE 4 in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 4. Uca splendida (Stimpson, 1858). Live coloration of adults (A–E) and juvenile (F); C and D, the same female with different views; G, a population with high density near the bank; H, a female U. splendida (left) and a male U. crassipes (White, 1947) (right) sympatric in one locality, with reddish eyestalks for the former and greenish eyestalks for the latter. Photos taken from Cingluo (A–E, H) and Citou (F, G), Penghu, Taiwan.
FIGURE 2 in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 2. Uca splendida (Stimpson, 1858). G1 of neotype (ZRC 2012.0143); A, right G1, lateral view; B, distal part of right G1, lateral view; C, distal part of right G1, mesial view.
FIGURE 1 in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 1. Collection sites for specimens of Uca splendida (Stimpson, 1858) and U. crassipes (White, 1847) used in this study: blue triangles (nos. 9–12) for U. splendida; red solid circles (nos. 1–3, 5, 13–18) for U. crassipes; and purple squares (nos. 4, 6–8) for both species sympatrically. Red empty circles mean the additional records of U. crassipes from other references (Sakai 1939; Crane 1975; Yoshigou 2001). Different lines indicate the updated ranges of the two species.
FIGURE 3 in Gelasimus splendidus Stimpson, 1858 (Crustacea: Brachyura: Ocypodidae), a valid species of fiddler crab from the northern South China Sea and Taiwan Strait
FIGURE 3. Uca splendida (Stimpson, 1858). A–C, neotype (ZRC 2012.0143). A, habitus, dorsal view; B, right major chela; C, frontal view.
FIGURE 2 in New earthworm species of Glossoscolex Leuckart, 1835 and Fimoscolex Michaelsen, 1900 (Clitellata: Glossoscolecidae) from Northern Paraná, Brazil
FIGURE 2. Cluster of the neighbor-joining analysis of the COI barcode region from Glossoscolex (P.) lutocolus, G. (P.) uliginosus and G. (G.) palus. Phylogenetic relationship at the genus level ar not adequately represented.
FIGURE 1 in New earthworm species of Glossoscolex Leuckart, 1835 and Fimoscolex Michaelsen, 1900 (Clitellata: Glossoscolecidae) from Northern Paraná, Brazil
FIGURE 1. New species of Glossoscolex. A, B. Glossoscolex (Praedrilus) lutocolus n. sp. C, D. Glossoscolex (Praedrilus) uliginosus n. sp. E, F. Glossoscolex (Praedrilus) itaguajensis n. sp. FM = female pores; MP = male pores; A, C, E lateral view, B, D, F ventral view.
FIGURE 4 in New earthworm species of Glossoscolex Leuckart, 1835 and Fimoscolex Michaelsen, 1900 (Clitellata: Glossoscolecidae) from Northern Paraná, Brazil
FIGURE 4. New species of Glossoscolex and Fimoscolex. A, B. Glossoscolex (Glossoscolex) sanpedroensis n. sp. C, D. Glossoscolex (Glossoscolex) terraopimus n. sp. E, F. Glossoscolex (Glossoscolex) giocondoi n. sp. g,h,i. Fimoscolex bartzi n. sp. FM = female pores; MP = male pores; TS = testes sacs; O = ovaries; OS = ovisac; OF = ovaries funnels; CB = copulatory bulb; VNC = ventral nerve cord, VD = vas deferens; A, C, E, G lateral view, B, D, F, H lateral view; I dorsal internal ventral view of the sexual organs.
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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.