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Figure 3 in A new species of the genus Ethmolaimus de Man, 1880 (Nematoda, Ethmolaimidae) from intertidal zone of the Yellow Sea, China
Figure 3. Ethmolaimus multispiralis sp. nov. A. Lateral view of entire female; B. Anterior end of female, showing amphidial fovea (arrow) and cuticle punctation; C. Pharyngeal region of female, showing buccal cavity, anterior and posterior pharyngeal bulbs, and excretory system (arrows). Scale bars: A = 50 µm; B = 10 µm; C = 20 µm.
Fig. 3 in Taxonomic and functional diversity of mollusk assemblages in a tropical rocky intertidal zone
Fig. 3. Contribution of taxonomic groups (Gastropoda, Bivalvia, Polyplacophora) to quantitative (Abundance %DI) and qualitative (Species richness %DQ) dominances for each habitat (ALG, algae habitat;BAR, bare rock; BNC, barnacle belt; MUS, mussel beds) in the rocky intertidal zone of Morro de Pernambuco, IlhÉus, Bahia, Brazil.
Fig. 1 in Taxonomic and functional diversity of mollusk assemblages in a tropical rocky intertidal zone
Fig. 1. Substrate characterization of the rocky intertidal zone of Morro de Pernambuco, IlhÉus, Bahia, Brazil. Intertidal zones (High, Mid and Low) and percent cover (mean) of algae habitat (ALG), bare rock (BAR), barnacle belt (BNC) and mussel beds (MUS).
Fig. 5 in Taxonomic and functional diversity of mollusk assemblages in a tropical rocky intertidal zone
Fig. 5. Index of trophic diversity (ITD) calculated (mean ± SE, standard error) for each habitat (ALG, algae habitat; BAR, bare rock; BNC, barnacle belt; MUS, mussel beds) in the rocky intertidal zone of Morro de Pernambuco, IlhÉus, Bahia, Brazil. Significant differences are indicated with different letters (Tukey's test: p<0.05).
Fig. 2 in Taxonomic and functional diversity of mollusk assemblages in a tropical rocky intertidal zone
Fig. 2. Mollusk assemblages: number of individuals (Abundance), number of species (Species richness) and diversity indices (Shannon-Weaver H' and Pielou's evenness J) calculated (mean ± SE) measured for each habitat (ALG, algae habitat; BAR, bare rock; BNC, barnacle belt; MUS, mussel beds) in the rocky intertidal zone of Morro de Pernambuco, IlhÉus, Bahia, Brazil. Significant differences are indicated with different letters (Tukey's test: p<0.05).
FIG. 6 in A new species of Notonyx A. Milne-Edwards, 1873 (Crustacea, Brachyura, Goneplacidae) from the intertidal zone of Phuket, Thailand
FIG. 6. — Outer surface of right chela: A, Notonyx nitidus A. Milne-Edwards, 1873, ♂ topotypic 7.0 × 5.4 mm, New Caledonia (ZRC 2005.0139); B, Notonyx gigacarcinicus n. sp., holotype ♂ 12.1 × 8.7 mm, Thailand (ZRC 2000.0981).
FIG. 4. — Notonyx gigacarcinicus n in A new species of Notonyx A. Milne-Edwards, 1873 (Crustacea, Brachyura, Goneplacidae) from the intertidal zone of Phuket, Thailand
FIG. 4. — Notonyx gigacarcinicus n. sp., holotype ♂ 12.1 × 8.7 mm, Thailand (ZRC 2000.0981), carapace: A, dorsal view; B, ventral view; C, frontal view.
FIG. 2. — Notonyx nitidus A in A new species of Notonyx A. Milne-Edwards, 1873 (Crustacea, Brachyura, Goneplacidae) from the intertidal zone of Phuket, Thailand
FIG. 2. — Notonyx nitidus A. Milne-Edwards, 1873, ♂ topotypic 7.0 × 5.4 mm, New Caledonia (ZRC 2005.0139), carapace: A, dorsal view; B, ventral view; C, frontal view.
FIG. 1. — Notonyx nitidus A in A new species of Notonyx A. Milne-Edwards, 1873 (Crustacea, Brachyura, Goneplacidae) from the intertidal zone of Phuket, Thailand
FIG. 1. — Notonyx nitidus A. Milne-Edwards, 1873, holotype ♀ 9.2 × 6.6 mm (MNHN-B 10220), New Caledonia, coll. M. Balansa.
FIG. 3. — Notonyx nitidus A in A new species of Notonyx A. Milne-Edwards, 1873 (Crustacea, Brachyura, Goneplacidae) from the intertidal zone of Phuket, Thailand
FIG. 3. — Notonyx nitidus A. Milne-Edwards, 1873, ♂ topotypic 7.0 × 5.4 mm, New Caledonia (ZRC 2005.0139): A, dorsal view of carapace; B, third maxilliped; C, carpus of left cheliped; D, ischium of left cheliped; E, right fifth pereiopod, setae denuded; F, male abdomen; G, left second male gonopod; H, left first male gonopod; I, distal end of left first male gonopod. Scale bars: A, C-H, 1.0 mm; B, I, 0.5 mm.
Fig. 2 in Morphology and phylogeny of a new polychaete, Prionospio expansa (Annelida: Spionidae) from the intertidal zone of the Yellow Sea, Korea
Fig. 2. Drawing of Prionospio expansa sp. nov., paratype (NIBRIV0000900992). A. Anterior body without palps. B–E. Parapodium from chaetigers 2–5, front view. F. Unilimbate capillary from first notopodium. G. Ventral sabre chaeta from chaetiger 12. H. Neuropodial hooded hook from chaetiger 17. Scale bars: A = 0.2 mm; B–E = 0.1 mm; F–H = 20 μm.
Fig. 4 in Morphology and phylogeny of a new polychaete, Prionospio expansa (Annelida: Spionidae) from the intertidal zone of the Yellow Sea, Korea
Fig. 4. SEM images of two Prionospio species from Korean waters. A–I. Prionospio expansa sp. nov. A–B, D–F. Paratype (NIBRIV0000901890). C, G–I. Paratype (NIBRIV0000901891). J–K. Korean Prionospio japonica Okuda, 1935, non-type. A. Entire body without palp, dorsal view. B. Anterior end with seven chaetigers, dorsolateral view. C. Anterior end with eight chaetigers, dorsal view. D. Anterior end, front view. E. Frontal margin of prostomium, arrows indicating frontal small peaks. F. Pygidium with middorsal cirrus and paired ventral lappets. G. Hook of middle chaetiger, hood removed, lateral view. H. Hook of posterior chaetiger, lateral view. I. Hook of posterior chaetiger, ventrolateral view. J. Anterior end with seven chaetigers, dorsolateral view. K. Pygidium. Abbreviation: tcb = transverse ciliated bands. Scale bars: A = 0.5 mm; B–D = 0.1 mm; E = 10 μm; F = 20 μm; G = 2 μm; H–I = 1 μm; J–K = 0.2 mm.
Fig. 3 in Morphology and phylogeny of a new polychaete, Prionospio expansa (Annelida: Spionidae) from the intertidal zone of the Yellow Sea, Korea
Fig. 3. Images of Prionospio expansa sp. nov. A, C. Holotype (NIBRIV0000900991). B. Paratype (NIBRIV0000901000). D–J. Paratype (NIBRIV0000900992). A. Entire body with palps. B. Live specimen, dorsolateral view. C. Anterior end with palps, dorsal view. D. Anterior end without palps, dorsal view. E. Chaetiger 2, front view, branchia missing. F. Chaetiger 3, front view. G. Chaetiger 5, front view. H. Unilimbate capillary of first monopodium. I. Sabre chaeta of chaetiger 12. J. Lateral view of hooded hook in chaetiger 17, inset indicating front view of hooded hook. Abbreviation: pig = pigmentation. Scale bars: A = 0.5 mm; B–D = 0.2 mm; E–G = 50 μm; H–I = 20 μm; J = 10 μm.
Fig. 1 in Morphology and phylogeny of a new polychaete, Prionospio expansa (Annelida: Spionidae) from the intertidal zone of the Yellow Sea, Korea
Fig. 1. Map of the sampling sites and habitat of Prionospio expansa sp. nov. A. Map of sampling locations: type locality (red star) and other examined specimens collected (black circle). B. General view of type locality. C. Live worm inhabiting sandy sediment, scale bar: 5 mm.
Fig. 5 in Morphology and phylogeny of a new polychaete, Prionospio expansa (Annelida: Spionidae) from the intertidal zone of the Yellow Sea, Korea
Fig. 5. Relationships between the total chaetigers and the first appearances of neuro- and notopodial hooks in Prionospio expansa sp. nov.
A parasite-inclusive food web for the California rocky intertidal zone
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Рис. 8. Irus ishibashianus Kuroda et Habe, 1952. Fig. 8. Irus ishibashianus Kuroda et Habe, 1952. in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 8. Irus ishibashianus Kuroda et Habe, 1952. Fig. 8. Irus ishibashianus Kuroda et Habe, 1952.
Рис. 7. Megangulus luteus (Wood, 1828). Fig. 7. Megangulus luteus (Wood, 1828). in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 7. Megangulus luteus (Wood, 1828). Fig. 7. Megangulus luteus (Wood, 1828).
Рис. 6. Macoma sp. Fig. 6. Macoma sp. in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 6. Macoma sp. Fig. 6. Macoma sp.
Рис. 9. Liocyma fluctuosum (A.A. Gould, 1841). Fig. 9. Liocyma fluctuosum (A.A. Gould, 1841). in Bivalve mollusks of the intertidal zone of the Far Eastern seas of Russia
Рис. 9. Liocyma fluctuosum (A.A. Gould, 1841). Fig. 9. Liocyma fluctuosum (A.A. Gould, 1841).
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Allen Brain Atlas
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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
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