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234 results for “northeast Pacific”
Figure 5 in Comparison of non-native dwarf eelgrass (Zostera japonica) and native eelgrass (Zostera marina) distributions in a northeast Pacific estuary: 1997-2014
Figure 5: Area of Zostera marina and Zostera japonica as a function of distance from the mouth of Yaquina Estuary, from August normalised classifications of the digital orthophotographs obtained in 1997 and 2007.
Figure 8 in Comparison of non-native dwarf eelgrass (Zostera japonica) and native eelgrass (Zostera marina) distributions in a northeast Pacific estuary: 1997-2014
Figure 8: Perimeters of Zostera japonica patches in Idaho Flat embayment, mapped via DGPS on foot (June 23, 2000 and August 13, 2014).
Figure 3 in Comparison of non-native dwarf eelgrass (Zostera japonica) and native eelgrass (Zostera marina) distributions in a northeast Pacific estuary: 1997-2014
Figure 3: Seasonal variation in area of selected Zostera japonica meadows within Sallys Bend embayment, mapped via DGPS from a hovercraft (April 2011–November 2012).
Figure 6 in Comparison of non-native dwarf eelgrass (Zostera japonica) and native eelgrass (Zostera marina) distributions in a northeast Pacific estuary: 1997-2014
Figure 6: Total (August normalised) area of intertidal Zostera marina (A) and Zostera japonica (B) in lower Yaquina Estuary from orthophotograph image classifications (Year 1 is 1997, Year 11 is 2007) and best-fit equations with 95% CI.
FIGURE 4 in A new species of Plumarella (Octocorallia: Calcaxonia: Primnoidae) from the Northeast Pacific, and the redescription of Plumarella longispina Kinoshita, 1908
FIGURE 4. Polyps and sclerites of P. longispina from USNM 49344. A, stereo view of branch segment with alternating polyps. B, stereo lateral view of a polyp showing abaxial marginal spines, outer-lateral and coenenchymal scales. C, stereo lateral view of a polyp showing inner- and outer-lateral body wall scales and coenenchymal scales. D, stereo adaxial view of a polyp showing six marginal spines and two rectangular adaxial marginal scales. E, marginal scales. F, opercular scales. G, body wall scales. H, infrabasal scale. I, coenenchymal scales. Scale bars: A = 0.3 mm; B–G = 0.1 mm; H–I = 0.04 mm.
FIGURE 5. Maximum likelihood phylogenetic tree constructed with UCEs and exon loci dataset for the novel species P in A new species of Plumarella (Octocorallia: Calcaxonia: Primnoidae) from the Northeast Pacific, and the redescription of Plumarella longispina Kinoshita, 1908
FIGURE 5. Maximum likelihood phylogenetic tree constructed with UCEs and exon loci dataset for the novel species P. williamsi (in bold), the redescribed species P. longispina (in red), the related taxa and rooted to outgroup genera. ML bootstrap support values>70% are shown above branches.
FIGURE 1. A in A new species of Plumarella (Octocorallia: Calcaxonia: Primnoidae) from the Northeast Pacific, and the redescription of Plumarella longispina Kinoshita, 1908
FIGURE 1. A, holotype of Callogorgia williamsi. B, topotypic specimen of Callogorgia longispina from Japan, USNM 49344. Scale bar = 5 cm.
FIGURE 2 in A new species of Plumarella (Octocorallia: Calcaxonia: Primnoidae) from the Northeast Pacific, and the redescription of Plumarella longispina Kinoshita, 1908
FIGURE 2. Polyps of holotype of P. williamsi: A, stereo view of branch segment with alternating polyps. B, stereo view of branch segment showing lateral view of two polyps and coenenchymal scales. C, stereo lateral view of a polyp showing outerlateral scales. D, stereo adaxial view of a polyp showing all eight marginals and two infrabasal scales. E, stereo adaxial view of a polyp showing rectangular adaxial marginal scales. F–G, lateral views of a polyp showing sparse thick body wall scales. Scale bars: A = 0.4 mm; B, D, = 0.2 mm; C, E–G = 0.1 mm.
FIGURE 3 in A new species of Plumarella (Octocorallia: Calcaxonia: Primnoidae) from the Northeast Pacific, and the redescription of Plumarella longispina Kinoshita, 1908
FIGURE 3. Sclerites of holotype of P. williamsi. A, marginal scales. B, opercular scales. C, body wall scales. D, coenenchymal scales. E, infrabasal scales. All scale bars = 0.1 mm.
FIGURE 19 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 19. SEMs of the radula and jaws of a specimen of the holotype of Aeolidia libitinaria sp. nov. (SIO-BIC M12138). A. Jaw. B. Radular teeth.
FIGURE 11 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 11. Photographs of ventral, lateral and dorsal views of the external morphology of preserved specimens of Ziminella vrijenhoeki sp. nov. A–C. Holotype (SIO-BIC M12137), A. Ventral view of the head, B. Dorsal view of the head, C. Lateral view of the anterior portion of the body. D–E. Paratype (SIO-BIC M12135), D. Lateral view of the anterior portion of the body, E. Dorsal view of the head. Abbreviations: a, anus; fc, foot corner; ot, oral tentacle; pe, penis; rh, rhinophores; ro, reproductive opening.
FIGURE 15 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 15. Photographs of ventral, lateral and dorsal views of the external morphology of preserved specimens of several Aeolidida. A–B. Holotype of Cuthona methana sp. nov. (SIO-BIC M12413), A. Ventral view of the head; B, Lateral view of the anterior portion of the body. C–D. Paratype of Cuthona methana sp. nov. (SIO-BIC M12412), C. Ventral view of the head; D, Lateral view of the anterior portion of the body. E–F. Specimen of Zeusia herculea (Linnaeus, 1761) (SIO-BIC M12136), E. Ventral view of the head; F, Dorsal view of the head. G–H. Holotype of Aeolidia libitinaria sp. nov. (SIO-BIC M12138), G. Ventral view of the head; H, Dorsal view of the head. Abbreviations: a, anus; ot, oral tentacle; pe, penis; rh, rhinophores; ro, reproductive opening.
FIGURE 5 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 5. SEMs of the radula and jaws of the holotype of Tritonia nigritigris sp. nov. (LACM 3553). A. Rachidian and inner lateral radular teeth. B. Lateral radular teeth. C. Outer radular teeth. D. Jaw.
FIGURE 8 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 8. SEMs of the radula and jaws of the single specimen of Tritonia sp. (SIO-BIC M12395). A. Rachidian and inner lateral radular teeth. B. Lateral radular teeth. C. Outer radular teeth. D. Jaw. E. Jaw masticatory border.
FIGURE 2 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 2. Digital images of live animals showing color in life. A. Tritonia nigritigris sp. nov., holotype (LACM 3553), in situ, right side invaginations indicated with arrows. B. Tritonia sp. (SIO-BIC M12395), lab photo. C. Dendronotus claguei sp. nov., holotype (LACM 3555), in situ. D. Ziminella vrijenhoeki sp. nov., holotype (SIO-BIC M12137), lab photo. E. Ziminella vrijenhoeki sp. nov., paratype (SIO-BIC M12135), lab photo. F. Cuthona methana sp. nov., holotype (SIO-BIC M12413), lab photo. G. Cuthona methana sp. nov., paratype (SIO-BIC M12412), lab photo. H. Aeolidia libitinaria sp. nov., holotype (SIO- BIC M12138), lab photo.
FIGURE 18 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 18. Drawings of the internal anatomy of the holotype of Aeolidia libitinaria sp. nov. (SIO-BIC M12138). A. General view of the internal anatomy. B. Reproductive system. Abbreviations: am, ampulla; bb, buccal bulb; cns, central nervous system; dg, digestive gland; es, esophagus; fgc, female gland complex; i, intestine; pe, penis.
FIGURE 14 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 14. Bayesian consensus phylogenetic analyses of Flabellinoidea, Fionoidea and Aeolidioidea, with branches collapsed for clarity. The phylogenetic position of the species described herein (in bold) are represented in grey ovals. Posterior probability and maximum likelihood bootstrap values indicated for each branch.
FIGURE 13 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 13. SEMs of the radula and jaws of the paratype of Ziminella vrijenhoeki sp. nov. (SIO-BIC M12135). A. Jaw. B. Jaw masticatory border. C. Radular teeth. D. Lateral view of a radular tooth.
FIGURE 21 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 21. SEMs of the radula and jaws of a specimen of Zeusia herculea (Bergh, 1894) (SIO-BIC M12136). A. Jaw. B. Radular teeth.
FIGURE 12 in Five new deep-sea species of nudibranchs (Gastropoda: Heterobranchia: Cladobranchia) from the Northeast Pacific
FIGURE 12. Drawings of the internal anatomy of the paratype of Ziminella vrijenhoeki sp. nov. (SIO-BIC M12135). A. General view of the internal anatomy. B. Reproductive system. Abbreviations: am, ampulla; bb, buccal bulb; cns, central nervous system; dd, deferent duct; dg, digestive gland; es, esophagus; fgc, female gland complex; i, intestine; pe, penis; rm, retractor muscle.
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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.