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2,555 results for “catalogs”
Lunar PSR catalog: Area, Length, Slope, H/L ratio
<p>Catalog of lunar northern and southern PSRs with length, area, H/L ratio, and slope measurements. </p>
Cataloged fresh craters of "Subsurface heterogeneity of light plains formed by the Orientale basin"
<p>This dataset includes all the fresh impact craters observed in the work. The craters in each region are stored as a separate shapefile. In the attribute table, the "Rock" field is marked as "1" for observed excavated boulders and "0" for no observed boulders. The "Diameter" field represents the crater diameter in meters, and the "Max_EXdepth" field indicates the excavation depth of the crater, also in meters.</p>
3D-CMT catalog of earthquakes in Noto Peninsula, central Japan
<p>The CMT solutions are obtained in "Aftershock characteristics of the 2024 Noto Peninsula earthquake (Mw7.5) through centroid moment tensor analysis using a 3-D seismic velocity structure model" by Lina Yamaya, Hisahiko Kubo, Katsuhiko Shiomi, and Takeshi Kimura.</p> <ul> <li>Aftershocks (Mw of 3.2–5.8) of the 2024 Noto Peninsula earthquake, central Japan </li> <li>Earthquakes occurring between 2007 to 2023</li> </ul> <p>Data format: YYYY-MM-DD (JMA origin at JST), time (JMA origin at JST), YYYY-MM-DD<br>(JMA origin at UTC), time (JMA origin at UTC], longitude, latitude, depth, Mrr, Mtt, Mff, Mrt, Mrf, Mtf (Nm), time shift, variance reduction, Mw</p> <p>The centroid times of the 3D-CMT solutions can be obtained by adding the time shift to the JMA origin time (columns 1 and 2, or 3 and 4).</p> <p>"Noto_aftershock.zip" and "Noto_2007_2023.zip" files include 3D-CMT solutions for the earthquakes and station lists.</p> <p>This dataset is for a submitted manuscript.</p> <p>For more information, please contact the creator.</p>
Characteristically repeating earthquake catalog for Mendocino - Maacama fault
<p>Characteristically repeating earthquake catalog for Mendocino - Maacama fault</p>
FIGURE 4 in The first Palearctic species of Discheramocephalus Johnson (Coleoptera, Ptiliidae, Ptiliinae) from Korea with an annotated catalog of the genus Discheramocephalus
FIGURE 4. Collection locality of the Discheramocephalus jaeseoki sp. nov.: A, locality map; B–C, foreground of the collection locality (pictures were taken on 9 August 2023), B, oriental persimmon (Diospyros kaki) orchard; C, entrance to the Gobdol (talc) mine.
FIGURE 3 in The first Palearctic species of Discheramocephalus Johnson (Coleoptera, Ptiliidae, Ptiliinae) from Korea with an annotated catalog of the genus Discheramocephalus
FIGURE 3. Genitalia and abdominal structures of the Discheramocephalus jaeseoki sp. nov.: A, E, abdominal sternite VI with a pair of cavities; B, F, pygidium (= tergite X); C, D, aedeagus; G, spermatheca (chord broken at the arrow indicated part); A–D, male; E–G, female.
FIGURE 1 in The first Palearctic species of Discheramocephalus Johnson (Coleoptera, Ptiliidae, Ptiliinae) from Korea with an annotated catalog of the genus Discheramocephalus
FIGURE 1. Habitus of the female Discheramocephalus jaeseoki sp. nov.: A–B, E–G, habitus; C, pronotum; D, head; A–C, dorsal view; D, frontal view; E, dorsolateral view; F, lateral view; G, ventral view.
FIGURE 2 in The first Palearctic species of Discheramocephalus Johnson (Coleoptera, Ptiliidae, Ptiliinae) from Korea with an annotated catalog of the genus Discheramocephalus
FIGURE 2. Head and thoracic structures of the male Discheramocephalus jaeseoki sp. nov.: A, head; B, meso-, and metathoracic structures; C, meso-, and metaventrite; D, foreleg; E, midleg; F, hindleg.
The EWAS Catalog manuscript: Extended data
<p>Epigenome-wide association studies (EWAS) of 387 traits were conducted within the Accessible Resource for Integrated Epigenomic Studies (ARIES). These results were uploaded to The EWAS Catalog: http://www.ewascatalog.org/. The table presented here represents the extended data in The EWAS Catalog manuscript. </p>
The EWAS Catalog manuscript: Underlying data
<p>Epigenome-wide association studies (EWAS) of 40 traits were conducted using publically available data from the Gene Expression Omnibus (GEO) online repository. These results were uploaded to The EWAS Catalog: http://www.ewascatalog.org/. The table presented here represents the underlying data in The EWAS Catalog manuscript and contains the traits along with the corresponding GEO accession numbers and PubMed IDs.</p>
Characteristically repeating earthquake catalog for San Juan Bautista - Parkfield region
<p>Characteristically repeating earthquake catalog for San Juan Bautista - Parkfield region </p>
FIGURE 2 in Catalog of type specimens of the fish collection of the Núcleo de Pesquisas em Limnologia, Ictiologia e Aquicultura (NUP), Universidade Estadual de Maringá Paraná, Brazil
FIGURE 2. Distribution of the richness of fish species by orders and by river basins across the Neotropical region, deposited as type-material in the NUP fish collection.
FIGURE 1 in Catalog of type specimens of the fish collection of the Núcleo de Pesquisas em Limnologia, Ictiologia e Aquicultura (NUP), Universidade Estadual de Maringá Paraná, Brazil
FIGURE 1. Richness of species by order and family, deposited as type-material in the NUP fish collection.
The relocated catalog of the 2021 Flores Sea earthquake
<p>The relocated catalog of the 2021 Flores Sea earthquakes</p> <p>Please refer to:</p> <p>Supendi, P., Rawlinson, N., Prayitno, B.S., Widiyantoro, S., Simanjuntak, A., Palgunadi, K.H., Kurniawan, A., Marliyani, G.I., Nugraha, A.D., Daryono, D., Anugrah, S.D., Fatchurochman, I., Gunawan, M.T., Sadly, M., Adi, S.P., Karnawati, D., Arimuko, A. (2022). The Kalaotoa Fault: A newly identified fault that generated the Mw 7.3 Flores Sea Earthquake. The Seismic Record (2022) 2 (3): 176–185.</p>
CMT catalog of small-to-moderate earthquakes at off Ibaraki region
<p>CMT catalog of small-to-moderate earthquakes at off Ibaraki region</p> <p> </p> <p>The CMT solutions are obtained in “CMT inversion for small-to-moderate earthquakes applying to dense short-period OBS array at off Ibaraki region” by Lina Yamaya, Kimihiro Mochizuki, Takeshi Akuhara, Shunsuke Takemura, Masanao Shinohara, and Tomoaki Yamada.</p> <ul> <li>Aftershocks of the 2011 Tohoku-oki earthquake with Mw 9.0</li> <li>March 11, 2011 to September 17, 2011</li> <li>Mw2.5–4.5</li> </ul> <p>Data format: Date (“YYMMDDHHMMSS”), lng, lat, dep, Mrr, Mtt, Mff, Mrt, Mrf, Mtf, 0, 0, exponent (dyne-cm), VR, 68% confidence interval of Kagan angle by bootstrap result, 95% confidence interval of Kagan angle, Mw</p> <p> </p> <p>The seismic velocity model is the input file for using Open SWPC. Note that the details are shown in "Sedimentary structure from multi-mode ambient noise tomography with dense OBS network at the Japan Trench" by Lina Yamaya, Kiminiro Mochizuki, Takeshi Akuhara, and Kiwamu Nishida. Related link: <a href="https://doi.org/10.5281/zenodo.4719128">10.5281/zenodo.4719128</a></p> <p> </p> <p>For more information, please contact the first author.</p>
The relocated catalog of the 2022 Pasaman (West Sumatra) earthquake
<p>The relocated catalog of the 2022 Pasaman (West Sumatra) earthquake</p> <p>Please refer to:</p> <p>Supendi, P., Rawlinson, N., Prayitno, B.S., Sianipar, D., Simanjuntak, A., Widiyantoro, S., Palgunadi, K.H., Kurniawan, A., Shiddiqi, H.A., Nugraha, A.D., Sahara, D.P., Daryono, D., Triyono, R., Adi, S.P., Karnawati, D., Daniarsyad, G., Ahadi, S., Fatchurochman, I., Anugrah, S.D., Heryandoko, N., Sudrajat, A. (2022). A hidden fault revealed by the February 25, 2022 (Mw 6.1) Pasaman Earthquake, West Sumatra, Indonesia, Physics of the Earth and Planetary Interiors, 106973. https://doi.org/10.1016/j.pepi.2022.106973</p>
Global catalog of alluvial fans and other fan-shaped features on Mars, with morphology characteristics
<p>Alluvial fans on Mars record evidence of depositional environments that represent the final era of potential habitability on the Martian surface. Alluvial fan deposits can often look similar to deltaic or fluvial systems in visible remote sensing images but are firmed in depositional and climatic environments that are distinct from those that lead to other radial depositional features. In order to better constrain the regional and global depositional environments and further inform the analysis of the sedimentary history of Mars, this study expands the global catalog of alluvial fans on Mars by adding newly identified features and characterizing all new and previously identified features based on morphologic parameters. Based on how closely they fit the morphologic definition of alluvial fans, as established by terrestrial sedimentology, each feature is classified as either an alluvial fan or another depositional feature.</p> <p>The .csv files made available here contain the full global database of features investigated in the referenced paper (Mondro et al., 2022). Five different .csv files are included, divided according to feature classification category based on the morphological parameters described in Mondro, et al. 2022. The five classification categories are: alluvial fan, possible alluvial fan, non-alluvial radial feature (NARF), small feature, and non-fan.</p> <p>For each individual depositional feature, the database contains the lat/long location of the fan apex, a reference to the first publication to identify it, the results of the characterization parameters, and the final morphologic classifications. The characterization parameters are planform shape, radius (meters), average radial slope (degrees), adjusted average radial slope (degrees), and radial profile shape. When a parameter is listed as NA, the morphologic categorization for that class of feature did not include that specific parameter.</p> <p>See referenced paper for more detail on methodology and discussion of results:</p> <p><a href="https://www.sciencedirect.com/science/article/pii/S0019103522003311?via%3Dihub" rel="noopener">Mondro, C.A., J.E. Moersch, C.M. Fedo. An updated global survey of alluvial fans on Mars: Distinguishing alluvia fans from other fan-shaped features through morphologic characterization. <em>Icarus</em>, 398C. doi: 10.1016/j.icarus.2022.115238.</a></p> <p>Please reference the above paper when using this dataset.</p>
Figure 13 in Updated catalog of the Chilean wedge-shaped beetles (Coleoptera: Ripiphoridae) with the first records of Macrosiagon flavipennis (LeConte) in Chile
Figure 13. Distribution map of Chilean Ripiphoridae species.
Expanded catalog of metagenome-assembled genomes reveals resistome characteristics athletic performance- associated microbes in horse
<p><strong>Background</strong><br> As a domesticated species vital to humans, horses are raised worldwide as a source of mechanical energy for sports, leisure, food production, and transportation. The gut microbiota plays an important role in the health, diseases, athletic performance, and behaviour of horses.<br> <strong>Results</strong><br> Here, using approximately 2.2 Tb of metagenomic sequencing data from gut samples from 242 horses, including 110 samples from the caecum and 132 samples from the rectum (faeces), we assembled 4142 microbial metagenome-assembled genomes (MAG), 4015 (96.93%) of which appear to correspond to new species. From long-read data, we successfully assembled 13 circular whole-chromosome bacterial genomes representing novel species. The MAG contained over 313,568 predicted carbohydrate-active enzymes (CAZy), over 59.77% of which had low similarity match in CAZy public databases. High abundance and diversity of antibiotic resistance genes (ARG) were identified in the MAG, likely showing wide use of antibiotic in the management of horse. The abundances of at least 36 MAG (e.g. MAG belonging to Lachnospiraceae, Oscillospiraceae, and Ruminococcus) were higher in elite racehorses than that in normal horses. These MAG enriched in racehorses contained every gene in a major pathway for producing acetate and butyrate by fiber fermentation, presenting potential for greater amount of short-chain fatty acids available to fuel athletic performance.<br> <strong>Conclusions</strong><br> Overall, we assembled 4142 MAG from short- and long-read sequence data in the horse gut. Our dataset represents an exhaustive microbial genome catalog for the horse gut microbiome and provides a valuable resource for discovery of performance-enhancing microbes and studies of horse gut microbiome.</p>
Supplementary material 2 from: Talamas EJ, Thompson J, Cutler A, Fitzsimmons Schoenberger S, Cuminale A, Jung T, Johnson NF, Valerio AA, Smith AB, Haltermann V, Alvarez E, Schwantes C, Blewer C, Bodenreider C, Salzberg A, Luo P, Meislin D, Buffington ML (2017) An online photographic catalog of primary types of Platygastroidea (Hymenoptera) in the National Museum of Natural History, Smithsonian Institution. In: Talamas EJ, Buffington ML (Eds) Advances in the Systematics of Platygastroidea. Journal of Hymenoptera Research 56: 187–224 https://doi.org/10.3897/jhr.56.10774
Non-primary type specimens of Platygastroidea in USNM : Explanation note: This table contains a list of species and specimens in USNM that are determined to species, but not represented by primary types, and for which images are publicly available.
ScienceDex guides
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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.