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FIGURE 6 in Odontonia kerangcaris sp. nov., a new bivalve-associated shrimp (Crustacea, Decapoda, Palaemonidae) from East Kalimantan, revealing intrageneric host switching
FIGURE 6. Odontonia kerangcaris sp. nov., holotype male, pocl. 2.1mm, MZB 5341. A, left third pereiopod, lateral view; B, idem, distal part propodus and dactylus. Scale bar: A = 0.5mm; B = 0.125mm.
FIGURE 8 in Odontonia kerangcaris sp. nov., a new bivalve-associated shrimp (Crustacea, Decapoda, Palaemonidae) from East Kalimantan, revealing intrageneric host switching
FIGURE 8. Odontonia kerangcaris sp. nov., holotype male, pocl. 2.1mm, MZB 5341. A, left first pleopod; B, left second pleopod; C, idem, appendix masculina and appendix interna; D, right exopod of uropod, distolateral part. Scale bars: A, B = 0.5mm; C, D = 0.125mm.
FIGURE 4 in Odontonia kerangcaris sp. nov., a new bivalve-associated shrimp (Crustacea, Decapoda, Palaemonidae) from East Kalimantan, revealing intrageneric host switching
FIGURE 4. Odontonia kerangcaris sp. nov., holotype male, pocl. 2.1mm, MZB 5341. A, left second maxilliped; B, left third maxilliped; C, left first pereiopod. Scale bar: = 0.5mm.
FIGURE 1 in Odontonia kerangcaris sp. nov., a new bivalve-associated shrimp (Crustacea, Decapoda, Palaemonidae) from East Kalimantan, revealing intrageneric host switching
FIGURE 1. Odontonia kerangcaris sp. nov., holotype male, pocl. 2.1mm, MZB 5341, habitus, lateral view (second pereiopods detached, not drawn). Scale bar: = 2mm.
FIGURE 5 in Odontonia kerangcaris sp. nov., a new bivalve-associated shrimp (Crustacea, Decapoda, Palaemonidae) from East Kalimantan, revealing intrageneric host switching
FIGURE 5. Odontonia kerangcaris sp. nov., holotype male, pocl. 2.1mm, MZB 5341. A, right major second pereiopod, dorsomedial view; B, left minor second pereiopod, dorsomedial view; C, fingers of right major second chela, medial view. Scale bar: A, B = 1.25mm; C = 0.125mm.
FIGURE 2 in Odontonia kerangcaris sp. nov., a new bivalve-associated shrimp (Crustacea, Decapoda, Palaemonidae) from East Kalimantan, revealing intrageneric host switching
FIGURE 2. Odontonia kerangcaris sp. nov., holotype male, pocl. 2.1mm, MZB 5341. A, anterior carapace and appendages, dorsal view; B, anterior part of carapace, rostrum and eyes, dorsolateral view; C, tail-fan and sixth abdominal segment, lateral view; D, telson and uropods, dorsal view; E, distal part of telson, dorsal view. Scale bars: A–C = 1mm; D = 0.5mm; E = 0.125mm.
Figure 9 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 9. Images of Kauluzoanthus sp.: A, in situ image of Kauluzoanthus sp. on stalks of Hyalonema sp.; B, preserved colony. Scale: 10 mm (A). Images credits: Okeanos/NOAA.
Figure 8 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 8. Images of external and internal morphology of Vitrumanthus oligomyarius (CMNH ZG-4785). A, preserved polyps on Tretochone duplicata; B, C, cross-section of polyp; D, longitudinal section of polyp; E, F, close-up images of cyclically transitional marginal musculature; G, close-up image of tentacle musculature. Abbreviations: A, actinopharynx; Dd, dorsal directives; Ctmm, cyclically transitional marginal musculature; Ec, ectoderm; M, mesoglea; Mm, marginal musculature; S, siphonoglyph; O, oral disk; 5th, fifth mesentery from dorsal directives. Scale bars: 5 mm (A), 1.5 mm (B, C), 0.5 mm (D, E), 0.1 mm (F), 0.25 mm (G).
Figure 7 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 7. Images of external and internal morphology of Vitrumanthus vanderlandi (holotype: RMNH.COEL.42623).A, preserved polyps on Aphrocallistes beatrix; B, C, close-up image of polyp; D, close-up image of tentacle musculature; E, longitudinal section of polyp; F, drawing of cyclically transitional marginal musculature. Abbreviations: A, actinopharynx; Te, tentacle; Tem, tentacle musculature; Ctmm, cyclically transitional marginal musculature. Scale bars: 3 mm (A), 1.5 mm (B, C, E), mm (C), 0.3 mm (D).
Figure 6 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 6. Images of external and internal morphology of Vitrumanthus schrieri (A, photographic record: image was taken at the entrance of Piscadera Bay, 12°07'06"N, 68°58'34"W; B–F, holotype: RMNH.COEL.42429). A, living polyps on Verrucocoeloidea liberatorii in situ; B, preserved polyps; C, close-up image of preserved polyp; D, close-up image of tentacle musculature; E, close-up image of cyclically transitional marginal musculature; F, drawing of cyclically transitional marginal musculature. Abbreviations: A, actinopharynx; Tem, tentacle musculature; Ctmm, cyclically transitional marginal musculature. Scale bars: 10 mm (A), 25 mm (B), 5 mm (C), 0.5 mm (D, E).
Figure 5 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 5. Cnidae in the tentacles, column, actinopharynx and mesenterial filaments of holotypes of new species in this study. A, cnidae of Churabana kuroshioae; B, cnidae of Vitrumanthus schrieri; C, cnidae of Vitrumanthus vanderlandi; D, cnidae of Vitrumanthus oligomyarius. Abbreviations: Hl, holotrichs large; Hm, holotrichs medium; Hs, holotrich small; O, basitrichs and microbasic b-mastigophores; Pm, microbasic p-mastigophores; S, spirocysts.
Figure 4 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 4. Images of external and internal morphology of Churabana kuroshioae (A, paratype: NSMT Co-1754; B–I, holotype: RUMF-ZG-04447). A, living polyps on Pararete sp.1 in situ at Nanpo Trough, Kikaijima Island; B, living polyps on Pararete sp.2 in an aquarium at Okinawa Churaumi Aquarium, Motobu, Japan; C, close-up image of preserved polyp; D–F, longitudinal section of polyp; G, cross-section of polyp; H, close-up image of cyclically transitional marginal musculature; I, drawing of cteniform endodermal marginal musculature. Abbreviations: A, actinopharynx; Dd, dorsal directives; Cemm, cteniform endodermal marginal musculature; Ec, ectoderm; En, endoderm; M, mesoglea; S, siphonoglyph; O, oral disk; 5th, fifth mesentery from dorsal directives. Scales: 5 mm (A, B), 2 mm (C–H).
Figure 2 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 2. Maximum likelihood tree based on combined dataset of COI, 12S-rDNA, 16S-rDNA, 18S-rDNA, 28S-rDNA and ITS-rDNA. Green-coloured box indicates Hexasterophora sponge-associated zoantharians and blue coloured boxes indicate Amphidiscophora sponge-associated zoantharians. Number at nodes represent ML bootstrap values (> 50% are shown). Black circles on nodes indicate high support of Bayesian posterior probabilities (> 0.95).
Figure 6 in New record of the wood-associated sea star Caymanostella, with notes on the phylogenetic position of the family Caymanostellidae (Asteroidea)
Figure 6. Spines of Caymanostella admiranda, RV Dmitry Mendeleev, St. 1234 (A–C), and C. madagascarensis, RV Vityaz II, St. 2653 (D–F). A, B, abactinal spinelets of the holotype; C, inferomarginal spine of the holotype; D, E, abactinal granules of the holotype; F, inferomarginal spine of the holotype.
Figure 4 in New record of the wood-associated sea star Caymanostella, with notes on the phylogenetic position of the family Caymanostellidae (Asteroidea)
Figure 4. Spines of Caymanostella spinimarginata, RV Akademik Kurchatov, St. 1267 (A–H), and C. cf. spinimarginata, RV Sonne, St. SO250-9 (I–R). A, inferomarginal spine of the holotype; B, inferomarginal spine of the paratype №3; C, inferomarginal spine of the paratype №7; D, E, adambulacral spines of the holotype; F, abactinal spinelet of the holotype; G, abactinal spinelet of the paratype №3; H, abactinal spinelet of the paratype №7; I, inferomarginal spine of the specimen №1; J–L, inferomarginal spines of the specimen №2; M, N, adambulacral spines of the specimen №1; O, adambulacral spine of the specimen №2; P, abactinal spinelet of the specimen №1; Q, spinelet from the aboral side of inferomarginal plate, specimen №2; R, one of the enlarged abactinal spinelets of the specimen №1.
Figure 3 in New record of the wood-associated sea star Caymanostella, with notes on the phylogenetic position of the family Caymanostellidae (Asteroidea)
Figure 3. Madreporites of different species of the genus Caymanostella. A, C. madagascarensis, RV Vityaz II, St. 2653, holotype; B, C. admiranda, RV Dmitry Mendeleev, St. 1234, holotype; C, C. spinimarginata, RV Akademik Kurchatov, St. 1267, paratype №3; D, C. cf. spinimarginata, RV Sonne, St. SO250-9, specimen №1.
Figure 1 in New record of the wood-associated sea star Caymanostella, with notes on the phylogenetic position of the family Caymanostellidae (Asteroidea)
Figure 1. Distribution of Caymanostella species, including the new record from the KuramBio II expedition.
Figure 7 in New record of the wood-associated sea star Caymanostella, with notes on the phylogenetic position of the family Caymanostellidae (Asteroidea)
Figure 7. Bayesian inference (BI) 50%-majority rule consensus tree. The analysis was based on the concatenated 3208- bp long dataset that included three mitochondrial (12S rRNA, 16S rRNA, COI) and two nuclear (18S rRNA, early stage H3 histone) markers. Branch support values are given from the BI (posterior probabilities)/ML (bootstrap percentage, 750 bootstrap replicates). The tree was artificially rooted between Velatida + Peripodida clade and other asteroid taxa. Ordinal names (at the right) are abbreviated as follows: BRIS, Brisingida; FOR, Forcipulatida; PER, Peripodida; N, Notomyotida; PAX, Paxillosida; SP, Spinulodida; VAL, Valvatida; VEL, Velatida. Familial names (aligned with the species names) are abbreviated as follows: Act, Acanthasteridae; Arch, Archasteridae; Asn, Asterinidae; Asp, Astropectinidae; Asps, Asteropseidae; Ast, Asteriidae; Bent, Benthopectinidae; Bris, Brisingidae; Cay, Caymanostellidae; Cht, Chaetasteridae; Cten, Ctenodiscidae; Ech, Echinasteridae; Fre, Freyellidae; Gan, Ganeriidae; Gon, Goniasteridae; Gop, Goniopectinidae; Hel, Heliasteridae; Kor, Korethrasteridae; Lei, Leilasteridae; Lu, Luidiidae; Mit, Mithrodiidae; Myx, Myxasteridae; Odt, Odontasteridae; Oph, Ophidiasteridae; Ore, Oreasteridae; Ped, Pedicellasteridae; Por, Poraniidae; Porc, Porcellanasteridae; Pse, Pseudarchasteridae; Pter, Pterasteridae; Sol, Solasteridae; Stich, Stichasteridae; Xyl, Xyloplacidae; Zor, Zoroasteridae.
Figure 1 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 1. Distribution of hexactinellid sponge-associated zoantharians examined in this study. Enclosed symbols indicate Hexasterophora sponge-associated zoantharians: Churabana kuroshioae (dark blue), Vitrumanthus schrieri (red), Vitrumanthus vanderlandi (green), Vitrumanthus oligomyarius (yellow). Boxes indicate Amphidiscophora spongeassociated zoantharians: Epizoanthus aff. armatus (grey), Epizoanthus fatuus (violet), Epizoanthus stellaris (light blue), Epizoanthus aff. fatuus (pink), Kauluzoanthus sp. (black).
Figure 5 in New record of the wood-associated sea star Caymanostella, with notes on the phylogenetic position of the family Caymanostellidae (Asteroidea)
Figure 5. Caymanostella cf. spinimarginata specimens, RV Sonne, St. SO250-9. A, B, freshly caught specimen №3: A, aboral view; B, oral view. C, D, ethanol fixed specimen №2: C, aboral view; D, oral view.
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.