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255 results for “Sea stars”
FIGURE 4 in Growth in two deep-sea associates: the octocoral Pseudogorgia bellona and the euryalid snake star Asteroschema ajax
FIGURE 4. Ophiuroid radial shield length (top) and PC1 summarizing overall ophiuroid size(bottom) as a function of octocoral base width. Trendline: LOESS curve with alpha degree of smoothing set to two.
FIGURE 1 in Growth in two deep-sea associates: the octocoral Pseudogorgia bellona and the euryalid snake star Asteroschema ajax
FIGURE 1. Map of study area with sampling site of 130 octocoral / ophiuroid pairs (station CP5052), and type locality for P. bellona (station CP2557). Sampling depth range is provided below station numbers. Isobaths plotted from 0 to 1500 m depth, in 500 m increments (Pante and Simon-Bouhet, 2013).
FIGURE 3 in Growth in two deep-sea associates: the octocoral Pseudogorgia bellona and the euryalid snake star Asteroschema ajax
FIGURE 3. Correlogram showing the Spearman correlations among the coral (top 2 lines, left 2 columns) and brittle star (bottom 9 lines, right 9 columns) variables. Lower panel: blue gradient indicating a positive correlation (dark blue meaning high correlation) and red gradient indicating a negative correlation (dark red meaning a strong negative correlation). Diagonal: probability density functions for individual variables. Upper panel: biplots corresponding to each variable pair. Sample sizes: n=10 for lines 1–2, n=52 for lines 3–5 (with data on oral and aboral sides of the ophiuroids, see methods), n=124 for lines 6–10 (with data on aboral side only, see methods).
FIGURE 2 in Growth in two deep-sea associates: the octocoral Pseudogorgia bellona and the euryalid snake star Asteroschema ajax
FIGURE 2. Maximum likelihood tree based on partial 16S sequences for the genera Asteroschema, Ophiocreas, and Astroceras within the Euryalidae. The alignment contains 35 sequences and is 559 bp long. Support values for each node are ultrafast bootstrap values. Names of A. ajax specimens are bolded.
Data from: Ocean acidification alters the response of intertidal snails to a key sea star predator
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Temporal and spatial variation in population structure among brooding sea stars in the genus Leptasterias
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Data from: Star-shaped trace fossil and Phymatoderma from Neogene deep-sea deposits in central Japan: probable echiuran feeding and fecal traces
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Directional control in sea star locomotion with respect to light
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Variable energy storage and growth in the sea star Pisaster ochraceus
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Cannibalism of newly-metamorphosed juvenile sea stars
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Two decades of change in sea star abundance at a subtidal site in Puget Sound, Washington
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Data from: Beyond the Coral Triangle: high genetic diversity and near panmixia in Singapore's populations of the broadcast spawning sea star Protoreaster nodosus
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Data from: Return of the ghosts of dispersal past: historical spread and contemporary gene flow in the blue sea star Linckia laevigata
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Data from: Structure and evolution of the sea star egg receptor for sperm bindin
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Fig. 6 in Three New Species of Dendrogaster (Crustacea: Ascothoracida) Infecting Goniasterid Sea-Stars (Echinodermata: Asteroidea) from Japan
Fig. 6. Dendrogaster tobasuii sp. nov., A–B, infecting Mediaster arcuatus. A, immature female (NSMT-Cr 26862, mantle size 11.68 mm); B, transparent medium-sized female (NSMT-Cr 26870, mantle size 19.2 mm). C–E, infecting M. brachiatus; C, non-ovigerous female (NSMT- Cr 26873, mantle size 16.0 mm), middle piece tends to be expanded laterally particularly; D, immature female (NSMT-Cr 26875, mantle size 4.0 mm); E, ovigerous female (NSMT-Cr 26876, mantle size 66.7 mm). Abbreviations: b1a, anterior primary branches; b2a, anterior secondary branches; b1p, posterior primary branches; mb, main branches; mp, middle piece.
Fig. 1. Mediaster brachiatus Goto, 1914 in Three New Species of Dendrogaster (Crustacea: Ascothoracida) Infecting Goniasterid Sea-Stars (Echinodermata: Asteroidea) from Japan
Fig. 1. Mediaster brachiatus Goto, 1914 (R 37 mm, r unmeasured) infected with Dendrogaster tobasuii sp. nov., paratype ovigerous female, NSMT-Cr 26865, in the coelomic cavity with dorsal body wall of the sea-star removed, dorsal view. Scale bar=10 mm.
FIGURE 7 in A new sea star of the genus Hippasteria (Asteroidea: Goniasteridae) from the Aleutian Islands
FIGURE 7. Map of Aleutian Islands showing distribution of Hippasteria aleutica sp. nov.
FIGURE 1 in A new genus and thirteen new species of sea stars (Asteroidea: Echinasteridae) from the Aleutian Island Archipelago
FIGURE 1. Bering Sea and Aleutian Islands.
FIGURE 58 in A new genus and thirteen new species of sea stars (Asteroidea: Echinasteridae) from the Aleutian Island Archipelago
FIGURE 58. Live, in situ. Type locality, intertidal (image: R. Clark, 16 June, 2003).
Supplementary material 1 from: Mei Z, Sha Z, Sun S (2023) Going deeper and further: a range and depth extension for the deep-sea feather star Paratelecrinus cubensis (Carpenter, 1881) (Comatulida, Atelecrinidae), first record from the Western Pacific. ZooKeys 1184: 103-113. https://doi.org/10.3897/zookeys.1184.110577
Sequence information needed to construct phylogenetic trees
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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)
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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
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