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97 results for “Sandy Beach”
FIGURE 2. Pseudobranchiomysis arenae n in Pseudobranchiomysis arenae, a new genus and species of Leptomysinae (Crustacea: Mysida) in Argentinian sandy beaches
FIGURE 2. Pseudobranchiomysis arenae n. sp.: holotype (male). A, view of the anterior body part; B, antennule; C, antenna in dorsal view; D, mandible; E, maxilla; F, maxillule; G, labrum.
FIGURE 4. Pseudobranchiomysis arenae n in Pseudobranchiomysis arenae, a new genus and species of Leptomysinae (Crustacea: Mysida) in Argentinian sandy beaches
FIGURE 4. Pseudobranchiomysis arenae n. sp.: holotype (male). A, first thoracic limb; B, second thoracic limb; C, third thoracic limb; D, fourth thoracic limb; E, eighth thoracic limb.
FIGURE 6. Pseudobranchiomysis arenae n in Pseudobranchiomysis arenae, a new genus and species of Leptomysinae (Crustacea: Mysida) in Argentinian sandy beaches
FIGURE 6. Pseudobranchiomysis arenae n. sp.: holotype (male). A, view of posterior body part; B, telson; C, uropod; D, endopod of uropod in ventral view.
FIGURE 3. Pseudobranchiomysis arenae n in Pseudobranchiomysis arenae, a new genus and species of Leptomysinae (Crustacea: Mysida) in Argentinian sandy beaches
FIGURE 3. Pseudobranchiomysis arenae n. sp.: allotype (female). A, view of the anterior body part; B, antennule.
FIGURE 2. NHG 27 001 in The whale barnacle Cryptolepas rhachianecti (Cirripedia: Coronulidae), a phoront of the grey whale Eschrichtius robustus (Cetacea: Eschrichtiidae), from a sandy beach in The Netherlands
FIGURE 2. NHG 27 001, Cryptolepas rhachianecti Dall, 1872, single left compartment (latus or carinolatus) collected from Recent beach deposits in Zoutelande (Walcheren, The Netherlands): a, alar view; b, external view; c, internal view; d, radial view; e, apical view. Scale bar: 5 mm. Scanning electron microscope (SEM) images by Julien Cillis, Koninklijk Belgisch Instituut voor Natuurwetenschappen, Brussels.
Dataset supporting "Daily Timescale Analysis of Sediment Transport and Topographic Changes on a Mesotidal Sandy Beach under Low to Moderate Wave Conditions", by Rodríguez-Padilla et al., submitted to Marine Geology
<p>This dataset comprises seven Matlab structure files containing measurements from different instruments deployed at Barra del Estero Beach (Baja California, Mexico) during a one-week field experiment (10-16/June/2016).</p> <p>Dataset:</p> <ul> <li>Wind speed and direction (MET.mat)</li> <li>Offshore wave conditions (ADCP_22m.mat)</li> <li>Depth-averaged velocities and pressure data (ADCP_22m.mat; ADCP_4m.mat; ADCP_2m.mat) </li> <li>Burst-averaged velocities and suspended sediment concentration time series (NADV.mat; SADV.mat)</li> <li>Daily topographic maps</li> </ul> <p>Note: The time-vector in all files is expressed in local time (GMT-7). </p>
Figure 4 in Small-scale spatial distribution of ghost shrimp and macrobenthic fauna in an Amazon macrotidal dissipative sandy beach
Figure 4. Relative abundance (%) of taxonomic (A), feeding groups (B), mean density (ind./m2 ± standard error) (C) and taxon richness (± standard error) (D) of the macrobenthic fauna of the two study areas (Area 1: muddy sediment – next to a tidal channel, Area 2: sandy sediment).
Figure 5 in Small-scale spatial distribution of ghost shrimp and macrobenthic fauna in an Amazon macrotidal dissipative sandy beach
Figure 5. Plot of the principal coordinate analysis (PCoA) of the samples of macrocrobenthic fauna collected from the two areas (Area 1: muddy sediment – next to a tidal channel, Area 2: sandy sediment). The vectors represent species with Spearman correlation values greater than 0.5. Samples from Area 1 and Area 2 were 68.34% dissimilar.
Figure 2 in Small-scale spatial distribution of ghost shrimp and macrobenthic fauna in an Amazon macrotidal dissipative sandy beach
Figure 2. Photography showing the chimneys (elevated, muddy) of agglutinated sediments at the burrow openings of the Lepidophtalmus siriboia tube in the study area.
Figure 1 in Small-scale spatial distribution of ghost shrimp and macrobenthic fauna in an Amazon macrotidal dissipative sandy beach
Figure 1. Map of Algodoal-Maiandeua island showing the study beach (Fortalezinha) and the sample areas (Area 1: muddy sediment – next to a tidal channel, Area 2: sandy sediment).
Figure 3 in Small-scale spatial distribution of ghost shrimp and macrobenthic fauna in an Amazon macrotidal dissipative sandy beach
Figure 3. Mean density (± standard error) of the Lepidophtalmus siriboia burrows in the intertidal zones (HT: high intertidal; MT: mid intertidal; LT: low intertidal) of the study areas (Area 1: muddy sediment – next to a tidal channel, Area 2: sandy sediment). Different letters indicate significant differences (p <0.05); letters indicate the results of Tukey tests for the comparisons between areas (uppercase letters) and among intertidal zones (lowercase letters).
FIGURE 5 in New species of Metadesmolaimus, Rhynchonema and Gairleanema (Nematoda) from the sandy beaches of the Sea of Japan
FIGURE 5. Rhynchonema pulchrum sp. nov. Micrographs of paratypes. Male. A: Entire body; C: Head region; E: The arrow indicates the area of change in the directionof annules; H: Lateral view of tail region and copulatory apparatus; Female. B: Entire body; D: Head region; F: Vulva; G: Tail region; (Scale bars: A, B—100 μm, C, D, E, F, G—20 μm).
FIGURE 8 in New species of Metadesmolaimus, Rhynchonema and Gairleanema (Nematoda) from the sandy beaches of the Sea of Japan
FIGURE 8. Gairleanema arenosa sp. nov.. A, B: Laser-scanning microscopy pictures. A: Lateral view of male head; B: detail of female head; (Scale bars: A, B—25 µm).
FIGURE 3 in New species of Metadesmolaimus, Rhynchonema and Gairleanema (Nematoda) from the sandy beaches of the Sea of Japan
FIGURE 3. Metadesmolaimus innii sp.nov. Micrographs of paratypes. Male. A: Entire body; B: distal part of spicules, C: Tail region with copulatory apparatus. Female. D: Entire body; E: Lateral surface view of pharynx region; F: Head region; G: Lateral view of tail region; H: Vulva; (Scale bars: A, D—100 μm; B, C, E—50 μm; F, G, H—20 μm).
FIGURE 2 in New species of Metadesmolaimus, Rhynchonema and Gairleanema (Nematoda) from the sandy beaches of the Sea of Japan
FIGURE 2. Metadesmolaimus innii sp. nov.. Male holotype. A: Entire body; B: Head; C: Lateral view of tail region and copulatory apparatus. Female paratype D: Entire body; E: Head; (Scale bars: A, D—100 μm, B, E—20 μm; C—50 μm).
FIGURE 7 in New species of Metadesmolaimus, Rhynchonema and Gairleanema (Nematoda) from the sandy beaches of the Sea of Japan
FIGURE 7. Gairleanema arenosa sp. nov.. Micrographs of paratypes. Male. A: Entire body; D: Head region; E: Copulatory apparatus; G: Supplements; H: Lateral view of tail region. Female. B: Entire body; C: Head region; F: Vulva; I: Lateral view of tail region; (Scale bars: A, B—100 μm; C, D, E, G, H—20 μm, F, I—50 μm).
FIGURE 4 in New species of Metadesmolaimus, Rhynchonema and Gairleanema (Nematoda) from the sandy beaches of the Sea of Japan
FIGURE 4. Rhynchonema pulchrum sp.nov. Male holotype. A: Entire body; B: Lateral surface view of pharynx region; C: copulatory apparatus. Female paratype; D: Entire body; (Scale bars: A, D—100 μm, B—50 μm; C—20 μm).
FIGURE 6 in New species of Metadesmolaimus, Rhynchonema and Gairleanema (Nematoda) from the sandy beaches of the Sea of Japan
FIGURE 6. Gairleanema arenosa sp. nov.. Male holotype. A: Head region; D; Entire body; E: copulatory apparatus. Female paratype. B: Head region; C: Entire body; F: Lateral view of tail region; (Scale bars: C, D—100 μm, A, B, E, F—20 μm).
Dataset associated with the manuscript " Locally developed models improve the accuracy of remotely assessed metrics as a rapid tool to classify sandy beach morphodynamics"
<p>Raw dataset associated with the manuscript " Locally developed models improve the accuracy of remotely assessed metrics as a rapid tool to classify sandy beach morphodynamics"</p>
Distribution. Sandy deserts of NW Australia (Western Australia), including Gibson, Little Sandy, and Great Sandy deserts, and possibly parts of the Tanami Desert, and approaching the coast in the hinterland of the Eighty Mile Beach between Port Hedland and Broome. in Notoryctidae
Distribution. Sandy deserts of NW Australia (Western Australia), including Gibson, Little Sandy, and Great Sandy deserts, and possibly parts of the Tanami Desert, and approaching the coast in the hinterland of the Eighty Mile Beach between Port Hedland and Broome.
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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.