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247 results for “sponge association”
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 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 3 in Evolution and phylogeny of glass-sponge-associated zoantharians, with a description of two new genera and three new species
Figure 3. Images of preserved Amphidiscophora spongesassociated zoantharians. A, B, Epizoanthus fatuus collected from Japan; C, Epizoanthus aff. fatuus collected from Australia; D, Epizoanthus stellaris collected from Australia; E, Epizoanthus aff. armatus collected from Japan. Scales: 10 mm.
FIGURE 5 in A new report on the deep-sea sponge-associated Spongicoloides weijiaensis Xu Zhou & Wang, 2017 (Decapoda: Spongicolidae) from the Southwest Indian Ocean Ridge
FIGURE 5. The map shows the type locality of all known species of Spongicoloides spp. The red colour star indicates the new location of S. weijiaensis from the SWIOR
FIGURE 1 in A new report on the deep-sea sponge-associated Spongicoloides weijiaensis Xu Zhou & Wang, 2017 (Decapoda: Spongicolidae) from the Southwest Indian Ocean Ridge
FIGURE 1. Spongicoloides weijiaensis Xu, Zhou & Wang, 2017. Female (NCPOR/HYD-IO/0018) whole specimen, 35.1 mm., the Southwest Indian Ridge.
FIGURE 6 in A new report on the deep-sea sponge-associated Spongicoloides weijiaensis Xu Zhou & Wang, 2017 (Decapoda: Spongicolidae) from the Southwest Indian Ocean Ridge
FIGURE 6. Phylogenetic trees of spongicolids based on the ML topology inferred from the gene fragments of mitochondrial COI. Bootstrap values of the ML analyses were placed at nodes, with dashes (–) indicating values below 50. Scale bars represent the number of substitutions per site.
FIGURE 3 in A new report on the deep-sea sponge-associated Spongicoloides weijiaensis Xu Zhou & Wang, 2017 (Decapoda: Spongicolidae) from the Southwest Indian Ocean Ridge
FIGURE 3. Spongicoloides weijiaensis Xu, Zhou & Wang, 2017. Female (NCPOR/HYD-IO/0018): A & B, mandible dorsal & ventral view C, maxillule D, maxilla E, first maxillipeds F, second maxillipeds G, antenna H, antennules.
FIGURE 2 in A new report on the deep-sea sponge-associated Spongicoloides weijiaensis Xu Zhou & Wang, 2017 (Decapoda: Spongicolidae) from the Southwest Indian Ocean Ridge
FIGURE 2. Spongicoloides weijiaensis Xu, Zhou & Wang, 2017. Female (NCPOR/HYD-IO/0018): A, carapace, lateral view, B, details of first to the sixth pleonal, C, telson and uropods, dorsal view D, fifth and sixth pleonal somite, telson, and uropods, dorsal view E, thoracic sternites, ventral view F, fifth and sixth pleonal somites, right lateral view.
Metagenomic and metatranscriptomics data for Bathymodiolus mussel and deep-sea sponge associated symbionts deposited in NCBI, IMG and other databases
<p>Metagenomic data for the sulfur- and methane-oxidizing symbionts of <em>Bathymodiolus</em> mussels and different sponge species deposited in the Integrated Microbial Genomes (IMG) database of the DOE Joint Genome Institute (http://img.jgi.doe.gov/) and NCBI until October 2017.</p>
FIGURE 9. Vellumnus intonsus n in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 9. Vellumnus intonsus n. sp., holotype male (cw 4.3 mm, cl 3.0 mm) (CASAU-CR-2021-1024), India: (A) anterior thoracic sternum and pleon; (B) dorsal view of left cheliped; (C) dorsal view of right cheliped; (D) outer view of left chela; (E) outer view of right chela; (F) left P5. B, C, and D, E, photographed to same magnification.
FIGURE 6. Latopilumnus ajmali n in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 6. Latopilumnus ajmali n. sp., holotype female (cw 5.2 mm, cl 3.6 mm) (CASAU-CR-2020-1023), India: (A) anterior thoracic sternum and pleon; (B) dorsal view of left cheliped; (C) dorsal view of right cheliped; (D) outer view of right chela; (E) outer view of left chela; (F) right P4; G, right P5. D, E, and F, G, photographed to same magnification.
FIGURE 5. Latopilumnus ajmali n in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 5. Latopilumnus ajmali n. sp., holotype female (cw 5.2 mm, cl 3.6 mm) (CASAU-CR-2020-1023), India: (A) overall habitus; (B) right side of carapace (denuded); (C) frontal view of cephalothporax; (D) antennules, antenna, orbit and epistome.
FIGURE 2. Acanthophrys keeae n in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 2. Acanthophrys keeae n. sp., holotype male (pcl 9.9 mm) (CASAU-CR-2021-1022), India: (A) overall habitus; (B) dorsal view of carapace; (C) anterior part of carapace; (D) angled subfrontal view of anterior part of carapace; (E) lateral view of right side of cephalothorax; (F) antennae, epistome, orbits, eyes, buccal cavity and third maxilliped; (G) proepistome, antennules and antennae; (H) epistome, antennules and antennae.
FIGURE 1 in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 1. (A) Colony of Callyspongia diffusa (Ridley, 1884) (Callyspongiidae) collected by trawlers; (B) Latopilumnus ajmali n. sp., holotype female (cw 5.2 mm, cl 3.6 mm) (CASAU-CR-2020-1023), on callyspongiid sponge.
FIGURE 8. Vellumnus intonsus n in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 8. Vellumnus intonsus n. sp., holotype male (cw 4.3 mm, cl 3.0 mm) (CASAU-CR-2021-1024), India: (A, B) overall habitus (carapace gently brushed with right side denuded); (C, D) right side of carapace (denuded); (E) frontal view of cephalothorax; (F) antennules, antenna, orbit and epistome; (B, D) paratype ovigerous female (cw 4.3 mm, cl 3.1 mm) (ZRC 2022.0999), India.
FIGURE 4. Acanthophrys keeae n in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 4. Acanthophrys keeae n. sp., holotype male (pcl 9.9 mm) (CASAU-CR-2021-1022), India: (A) left third maxilliped; (B) outer view of left chela; (C) merus of left cheliped; (D) left P5; (E) pleon; (F) left G1 (ventral view); (G) left G1 (dorsal view); (H) distal part of left G1 (ventral view); (I) distal part of left G1 (ventral view); (J) distal part of left G1 (subdorsal view); (K), (L) distal part of left G1 (dorsal views); (M) left G2. A–E, H–L, denuded. Scales: A–E = 0.5 mm; F–M = 0.2 mm.
FIGURE 3. Acanthophrys keeae n in Descriptions of new and rare crabs associated with coral rubble and sponges from Kanyakumari, southeastern Arabian Sea, southern India (Decapoda: Brachyura: Epialtidae and Pilumnidae)
FIGURE 3. Acanthophrys keeae n. sp., holotype male (pcl 9.9 mm) (CASAU-CR-2021-1022), India: (A) anterior thoracic sternum and pleon; (B) left G1 (ventral view); (C) left G1 (subdorsal view); (D) left G1 (dorsal view); (E) left G2. B–E, photographed to same magnification.
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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.