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.
476
datasets available to search
ShareScore release 0.9.0
Dataset results
476 results for “Erosive”
Figs. 1. A-E in Macrophytes communities associated to soil bioengineering techniques for erosion control in riverbanks
Figs. 1. A-E. Collection sites of aquatic microphytes at Amparo de São Francisco. A. Vegetated Slope; B. Vegetated Riprap; C. Eroded Slope; D. Cribwall; E. Vetiver Grass Contour Line.
Fig. 3 in Macrophytes communities associated to soil bioengineering techniques for erosion control in riverbanks
Fig. 3. Observed and estimated species accumulation curve at the sampling sites in municipality of Amparo de São Francisco, Sergipe state, 2014.
Supplementary material 1 from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
: Data type: statistical data
Supplementary material 2 from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
: Data type: statistical data
Supplementary material 3 from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
: Data type: phylogenetic data
Figure 5 from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
Figure 5 Biogeographic and phylogenetic expectations for a 'vicariance by erosion' scenario as hypothesized for the southern Cumberland Plateau. A–C Karst (gray) erodes and fragments over time, leading to the isolation and divergence of cave populations (colored circles) in the remaining patches of karst D A phylogeny consistent with the vicariance by erosion process, with taxa that diverge early distributed at the periphery of the eroding region.
Figure 3 from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
Figure 3 Ultrametric tree for the hirtus-group. Bayesian tree estimated from combined partial mitochondrial sequence data. Branches supported by posterior probability >0.90 are labeled with values or, for branches with posterior probability of 1.0, an asterisk. Blue bars indicate 95% confidence intervals of estimated ages for the nodes. Taxa are labeled with species name and specimen identifier (Table 1). Scale at bottom indicates divergence times in millions of years as estimated by BEAST (Drummond et al. 2012). Branch colors correspond to those in Figure 2A.
Figure 1 from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
Figure 1 Eye morphologies in Ptomaphagus. Lateral view of head capsule and compound eye or eyelets (arrowheads) of Ptomaphagus species discussed in this paper. Ptomaphaguscavernicola and P.consobrinus are macrophthalmic and were used as outgroups in this study. Ptomaphagusshapardi, the only soil-dwelling species in the hirtus-group, has reduced eyes and is considered microphthalmic. The other 17 members of the hirtus-group are extremely microphthalmic.
Figure 2B from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
Figure 2B Distribution of hirtus-group species. All known sites for members of the South Cumberlands lineage in Tennessee and Alabama. Exposed karst is shown in gray.
Figure 2A from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
Figure 2A Distribution of hirtus-group species. All known sites for hirtus-group species in Kentucky, Tennessee, Alabama, and Georgia. P.shapardi sites in Oklahoma and Arkansas are indicated in upper right inset map. A dozen species from the southern Cumberland Plateau in Tennessee and Alabama are combined.
Figure 4 from: Leray VL, Caravas J, Friedrich M, Zigler KS (2019) Mitochondrial sequence data indicate "Vicariance by Erosion" as a mechanism of species diversification in North American Ptomaphagus (Coleoptera, Leiodidae, Cholevinae) cave beetles. Subterranean Biology 29: 35-57. https://doi.org/10.3897/subtbiol.29.31377
Figure 4 Distribution of Ptomaphagus species on the southern Cumberland Plateau, overlaid on a digital elevation model. Higher elevations (to 500 m) are indicated by darker shades, lower elevations (to 180 m) by lighter shades. Ptomaphagus species diverging early in the South Cumberlands lineage are limited to isolated ridges and mountains on the fringes of the plateau. These species are P.loedingi (yellow), P.longicornis (dark gray), P.julius (blue), P.solanum (dark green) and P.hazelae (light blue). The colors used here correspond to those in Figure 2B.
Quantifying channel bank erosion of a small mountain river in Russian wet subtropics using erosion pins (pins measurements dataset)
<p>A set of erosion pins measurements was conducted during 3 years of channel bank monitoring at the Black Sea coast. This is a dataset of the field measurements of the pins. </p>
Text-fig. 14. Za Hájovnou Cave. Section ZH P-10 (Narozeninová chodba (= Birthday Corridor), erosion rill). in The Unique Record Of Za Hájovnou Cave
Text-fig. 14. Za Hájovnou Cave. Section ZH P-10 (Narozeninová chodba (= Birthday Corridor), erosion rill).
The Control of Velocity Variations in Turbidity Currents by Bed Erosion: A Froude number approach
<p>The data that support the findings of this study</p>
Dataset of Slope Stability Analsyis of Dune Face undergoing Wave-Driven Erosion
<p>This dataset contains the slope stability analysis performed for the paper titled: "Using geotechnical modelling to explore dune face stability undergoing wave-driven erosion". It contains groundwater and slope stability analyses performed with the software Geostudio (v2012.) of dune faces undergoing wave driven erosion and reflect all the analysis performed to produce the results of the paper. The folders are split as the results and discussion sections where the figures were presented. All the geostudio files made are found in the relevant folder together with an excel CSV file summarising the results.</p>
Figure 6. K in What is the matter with Corbicula fluminea (Mollusca: Bivalvia: Cyrenidiae)? Occurrence of unusual shell erosion in Northern Italy
Figure 6. K-medoid analysis of the (a) Gaviola and (b) Castellana populations.
Coastal erosion and accretion areas along the Beaufort Sea and Laptev Sea Coasts based on Landsat 1999 - 2014
<p>The dataset covers the Laptev Sea coast from 120 to 168 E and Alaska and Canadian Beaufort Sea Coast from 130 to 168 W. </p> <p>Probabilities of erosion and accretion (change of land to water and visa versa) have been derived from Landsat for the time period 1999–2014. A probability threshold of 50% was applied to separate erosion and accretion areas which are provided as polygons (shape files).</p> <p>Further information regarding the algorithm is available in Bartsch et al. (2020). </p>
Erosion-classification data for centre-pivot-irrigated fields in Cristalina, Brazil
<p>This dataset provides the results from a visual classification of erosion features for centre-pivot-irrigated fields in the municipality of Cristalina, Brazil. A detailed description of the data is provided in the README file. The methodology of the classification is described in detail in the preprint linked to this entry.</p> <p>The shapefiles with the resulting erosion classifications per centre-pivot field were adapted from the freely available geodata provided in the Brazilian Irrigation Atlas, developed by the Brazilian Water Agency:</p> <p>Agência Nacional de Águas e Saneamento Básico (ANA). Atlas Irrigação 2021: Uso da Água na Agricultura Irrigada. Accessed 24 February 2023. <<a href="https://metadados.snirh.gov.br/geonetwork/srv/api/records/e2d38e3f-5e62-41ad-87ab-990490841073">https://metadados.snirh.gov.br/geonetwork/srv/api/records/e2d38e3f-5e62-41ad-87ab-990490841073</a>>.</p>
Complexities of Extremely Shallow Damaging Earthquakes as Evidence for Seismogenic Intersecting Faults in Low Seismicity Regions Unloaded by Erosion
<p>The Seismic data used in this paper for inversion Centroid Moment Tensor and First Motion Mechanism</p>
Omepral® Tablets Special Clinical Experience Investigation in Patients With Erosive Esophagitis
ClinicalTrials.gov study NCT00859287. IPD Sharing: Not stated. Countries: 0. Publications: 1.
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.