Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
63
datasets available to search
ShareScore release 0.9.0
Dataset results
63 results for “soft bottoms”
Figure 3 in Systematics and life habit in Serpula israelitica Amoureux, 1977 (Polychaeta Serpulidae) from the Mediterranean with remarks on other soft-bottom serpulids
Figure 3. Serpula israelitica. (A) Attached tube parts irregularly curved and widely encrusting a corallinae algal fragment. Scale bar 1 mm. Sample AM/91 2D. (B) Encrusting tube circular in cross-section, with smooth shiny surface and two evident lateral flanges. Scale bar 1 mm. Sample AP07. (C) Detail of smooth outer surface from the attached part of the tube. Scale bar 200 µm. Sample AP07. (D) Row of alveoles inside a broken part of the basal flange. Alveoles are equally sized and regularly aligned. Scale bar 500 µm. Sample AM/91 2D. (E) Internal view of an alveole showing a subquadrangular undulate contour and crystals paving the lumen surface. Scale bar 50 µm. Sample AM/91 2D. (F) Detail of alveole on its inner surface with elongate prismatic crystals irregularly arranged in an unoriented structure. Scale bar 5 µm. Sample AM/91 2D. (G) Encrusting tube still with its proximal end (arrow). Scale bar 1 mm. Sample AP 07. (H) Detail of proximal end of tube, circular in cross-section, weak and lacking ornamentation, separated from the rest of the tube by a narrow rim (arrow). Scale bar 100 µm. Sample AP 07.
Figure 2 in Systematics and life habit in Serpula israelitica Amoureux, 1977 (Polychaeta Serpulidae) from the Mediterranean with remarks on other soft-bottom serpulids
Figure 2. Serpula israelitica. (A) Collar chaetae: slender limbate capillaries. (B) Collar chaeta: geniculate with a narrow distal tip. (C) Thoracic chaetae: limbate capillaries. (D) Thoracic uncinus. (E) Capillary simple chaeta from the 12th thoracic chaetiger. (F) Abdominal chaeta with flat trumpet-shaped end. Scale bars 10 µm. Sample Ciclopi 2G.
Figure 6 in Systematics and life habit in Serpula israelitica Amoureux, 1977 (Polychaeta Serpulidae) from the Mediterranean with remarks on other soft-bottom serpulids
Figure 6. (A) Serpula israelitica: free tube distal part showing three different growth directions (arrows), double orifice (to the left) resulting from two growth directions after accidental breakage. (B) Detail of bifurcation. (C) Tube distal end forming a slightly bend and two angular changes in growth direction. Scale bars 2 mm. Sample Ciclopi 18G. (D–G) Hydroides norvegicus: trochospirally coiled tubes of adult specimens growing free on the sediment. (D) Tube showing on its base a sand grain of the sediment still preserved as the original tiny substrate. (E, F) Dextrally and sinistrally coiled tubes with encrusted substrates not evident. (G) Tube with the cast of the original tiny substrate. Scale bar 1 mm. Samples Megara 6, 8. (H, I) Protula tubularia: tube irregularly folding on itself before straightening and growing vertically far from sediment, as shown by epibiont encrustations exclusively on distal end. Scale bar 5 mm. Sample BIOICE 2168, 2595. (L) Protula tubularia: tube distal end showing three different changes in growth directions (arrows) as a response of subsequent repositions of the animal above the bottom. Scale bar 1 cm. Sample CT 11.
Figure 1 in Systematics and life habit in Serpula israelitica Amoureux, 1977 (Polychaeta Serpulidae) from the Mediterranean with remarks on other soft-bottom serpulids
Figure 1. Serpula israelitica. (A) Branchial crown bearing operculum on the left and a rudimentary club-shaped pseudoperculum on the right. (B) Operculum shallow funnel-shaped with a denticulate edge, transition/operculum marked by a slight constriction. Sample Ciclopi 2G. (C) A coloured specimen within its tube. Sample CANCAP 7.031 (Photo F. Verbiest). (D) Thorax in lateral view, trilobed collar and 12 pairs of chaetigers. Sample Ciclopi 2G. Scale bars 1 mm.
Figure 4 in Systematics and life habit in Serpula israelitica Amoureux, 1977 (Polychaeta Serpulidae) from the Mediterranean with remarks on other soft-bottom serpulids
Figure 4. Serpula israelitica. (A) Tube distal parts. Scale bar 2 mm. Sample Noto 10N. (B) Old-looking tube flaking off in irregular layers. Scale bar 1 mm. Sample Ciclopi 2G. (C) Tube of a young specimen with a shiny outer surface and slight growth lines. Scale bar 1 mm. Sample CR/10. (D) Micromorphology of outer surface of the tube of a young specimen showing rounded and symmetric in section growth lines. Scale bar 200 µm. Sample Ciclopi 2G. (E) Smooth outer surface from a tube distal part corresponding to the adult/old stage, growth lines disappearing with further calcification. Scale bar 200 µm. Sample Noto 10N.
FIGURE 2 in Ecology determines appearance: a new taxonomic solution for the soft bottom dwelling spider crab Pisoides bidentatus (A. Milne-Edwards, 1873) from the Sea of Japan, with remarks on Pisoides ortmanni (Balss, 1924) and the northwestern Pacific Pugettia Dana, 1851 (Majoidea: Epialtidae)
FIGURE 2. Scyra bidentata (A. Milne-Edwards, 1873) comb. nov., ZMMU Ma-6228, coloration and camouflage (dorsal view) of living specimens, Vostok Bay of the Sea of Japan. Scale 10 mm.
FIGURE 6 in Ecology determines appearance: a new taxonomic solution for the soft bottom dwelling spider crab Pisoides bidentatus (A. Milne-Edwards, 1873) from the Sea of Japan, with remarks on Pisoides ortmanni (Balss, 1924) and the northwestern Pacific Pugettia Dana, 1851 (Majoidea: Epialtidae)
FIGURE 6. Scyra bidentata (A. Milne-Edwards, 1873) comb. nov., ZMMU Ma-6226, ♁, gonopod I (a–f) and gonopod II (g–j): a—gonopod I, general view; b–f—tip of gonopod I, different views; g,h—gonopod II, different views; i, j—tip of gonopod II, different views. Scale 1 mm.
FIGURE 1 in Ecology determines appearance: a new taxonomic solution for the soft bottom dwelling spider crab Pisoides bidentatus (A. Milne-Edwards, 1873) from the Sea of Japan, with remarks on Pisoides ortmanni (Balss, 1924) and the northwestern Pacific Pugettia Dana, 1851 (Majoidea: Epialtidae)
FIGURE 1. Bayesian and Maximum Likelihood phylogenetic trees of the family Epialtidae for combined molecular data (concatenated sequences from COI, 16S rRNA and 18S rRNA gene fragments). Number above or under the brunches are Bayesian posterior probabilities and bootstrap values for ML analysis.
FIGURE 4 in Ecology determines appearance: a new taxonomic solution for the soft bottom dwelling spider crab Pisoides bidentatus (A. Milne-Edwards, 1873) from the Sea of Japan, with remarks on Pisoides ortmanni (Balss, 1924) and the northwestern Pacific Pugettia Dana, 1851 (Majoidea: Epialtidae)
FIGURE 4. Scyra bidentata (A. Milne-Edwards, 1873) comb. nov., ZMMU Ma XXXX, ♁ (a, c, e–g), ♀ (b, d), fixed specimens, Vostok Bay of the Sea of Japan: a, b—carapace (lateral view); c, d—front of carapace, ventral view; e—front of carapace, lateral view; f—front of carapace, dorsal view; g—carapace and sternites, ventral view. Scale 5 mm.
FIGURE 5 in Ecology determines appearance: a new taxonomic solution for the soft bottom dwelling spider crab Pisoides bidentatus (A. Milne-Edwards, 1873) from the Sea of Japan, with remarks on Pisoides ortmanni (Balss, 1924) and the northwestern Pacific Pugettia Dana, 1851 (Majoidea: Epialtidae)
FIGURE 5. Scyra bidentata (A. Milne-Edwards, 1873) comb. nov., ♁, ZMMU Ma-6226 (a, b), ♀, ZMMU Ma-6227 (c), fixed specimens, Vostok Bay of the Sea of Japan: a—chela of pereiopod I (chelipeds), outer view; b—pereiopod II; c—sterno-pleonal cavity. Scale 5 mm.
FIGURE 3 in Ecology determines appearance: a new taxonomic solution for the soft bottom dwelling spider crab Pisoides bidentatus (A. Milne-Edwards, 1873) from the Sea of Japan, with remarks on Pisoides ortmanni (Balss, 1924) and the northwestern Pacific Pugettia Dana, 1851 (Majoidea: Epialtidae)
FIGURE 3. Scyra bidentata (A. Milne-Edwards, 1873) comb. nov., ZMMU Ma-6226 (♁) and Ma-6227 (♀), fixed specimens (dorsal view), Vostok Bay of the Sea of Japan. Scale 10 mm.
FIGURE 1 in Soft-bottom sipunculans in Izmir Bay (Aegean Sea, eastern Mediterranean)
FIGURE 1. Map of the investigated area, with the location of sampling stations.
FIGURE 2 in Soft-bottom sipunculans in Izmir Bay (Aegean Sea, eastern Mediterranean)
FIGURE 2. Relative dominance of the species in soft substrata by numbers of individuals.
FIGURE 3 in Soft-bottom sipunculans in Izmir Bay (Aegean Sea, eastern Mediterranean)
FIGURE 3. Seasonal population densities of sipunculan species in Izmir Bay during 2001.
FIGURE 1 in Elasmopus thalyae sp. nov. (Crustacea: Amphipoda: Maeridae), a new benthic species from soft and hard bottoms of Arcachon Bay (SE Bay of Biscay)
FIGURE 1. Sampling stations in the Arcachon Bay (SW France).
Figure 2 in Nematodes of soft bottoms from the 'Po'ol Tunich' cave system, Quintana Roo, Mexico
Figure 2. Abundance of nematode taxa per site in the Po´ol Tunich cave system, Mexico.
Figure 4 in Depth-related gradient of soft-bottom crustacean distribution along the Cilician shelf*
Figure 4. nMDS (A; see Figure 1 for depth code) and biplot of CCA (axes 1–2) performed on log-transformed (log 10 × [N + 1]) density values (N) of the crustacean taxa and environmental variables (arrows) at each replicate (B; see Figure 1 for depth and transect codes around the symbols) and at 7 depths of a combination of 3 transects each, including 7 stations (C) in each season. Arrows refer to the direction and relative importance of environmental variables in the ordination. Symbol size is proportional to depth of sampling sites variable, i.e. the largest symbol corresponds to the maximum depth. See Table 3 for the abbreviations of the environmental variables.
Figure 1 in Depth-related gradient of soft-bottom crustacean distribution along the Cilician shelf*
Figure 1. Study area (framed in rectangle) and sampling stations located on soft bottoms (1: 10 m, 2: 25 m, 3: 50 m, 4: 75 m, 5: 100 m, 6: 150 m, and 7: 200 m) across 3 transects, Erdemli (E), Limonlu (L), and Kumkuyu (K), in the Cilician shelf in 2000.
Figure 4 in A new deep-sea species of genus Bathypisella (Crustacea: Peracarida: Amphipoda) from bathyal soft bottoms, south-western Gulf of Mexico
Figure 4. Bathypisella carmenae sp. n. A, gnathopod 1; B, gnathopod 2.
Figure 2 in A new deep-sea species of genus Bathypisella (Crustacea: Peracarida: Amphipoda) from bathyal soft bottoms, south-western Gulf of Mexico
Figure 2. Bathypisella carmenae sp. n. Lateral view of body.
ScienceDex guides
Understand access before you commit
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.