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1,544
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1,544 results for “spots”
Amazon Spot Service Price History (2018-2022.05)
<p>The price history of Amazon's spot services. Amazon only allows to download the most recent 2-month or 3-month data, so the data are saved in separated files with overlaps.</p>
Response of the cerebellar cortex to spot stimulation of the mossy fiber terminals
<p>Response of the cerebellar cortex to spot stimulation of the mossy fiber terminals</p>
Lucerna lamp with spot
Remix of [Lucerna Lamp ME5030. Evora, Portugal](https://sketchfab.com/3d-models/lucerna-lamp-me5030-evora-portugal-89c64532741149f09b10c7fa93c4b58e) by Global Digital Heritage. The texutre is in the inside only and is illuminated with a spotlight. The thickness of the model has also been increased making the image less recognisable than the original. Source: Objaverse 1.0 / Sketchfab
Peru's Spot Price of Electricity in Hourly Basis, 2005 - 2023
<p>Peru's spot price of electricity in local currency (S/) by kWh.</p>
Size evolution of Jupiter's Great Red Spot
<p>This dataset contains the historical size measurements (length and width) of Jupiter's Permanent Spot (PS) and the Great Red Spot (GRS) and its Hollow. It also contains the fits to the GRS shrinkage rates for different epochs. The second dataset gives PS and GRS zonal velocities in meters per second).</p>
Wave transmission through the megaregolith as a mechanism for lunar cold spot formation: supplementary information
<p>Supplementary information for Frizzell and Hartzell, 2024 - Wave transmission through the megaregolith as a mechanism for lunar cold spot formation. Contains LIGGGTS input scripts and restart files, MATLAB processing and analysis codes along with example processed *.mat files. Any generated code can be found at our linked public repository.</p>
Data from: Experimental evidence supports the ability of spotted lanternfly to hitchhike on vehicle exteriors as a mechanism for anthropogenic dispersal
<p>This data is a companion to this paper: </p> <p>Johanna E Elsensohn, Scott Wolford, Amy Tabb, Tracy Leskey, “Experimental evidence supports the ability of spotted lanternfly to hitchhike on vehicle exteriors as a mechanism for anthropogenic dispersal,” 2024, Royal Society Open Science 11:240493. <a href="https://doi.org/10.1098/rsos.240493">doi:10.1098/rsos.240493</a>. </p> <p><br><strong>Manually-measured data</strong></p> <p>Experiments are detailed in the paper and data is contained in the table in this data release. Details of the data are available in the paper; we also summarize and define acronyms contained in the table here.</p> <p>Stage: insect life cycle stage. Values are 1<sup>st</sup>, 2<sup>nd</sup>, 3<sup>rd</sup>, 4<sup>th</sup> instars, early adult, and late adult.</p> <p>Location: location on the vehicle where the insect was placed for the experiment. Values, and their USA equivalents:</p> <p>- bonnet = hood.</p> <p>- nose wing = side panel.</p> <p>- scuttle panel = cowl panel.</p> <p>- wiper blade = wiper.</p> <p>- windscreen = windshield.</p> <p>Acclim.: means that the insect was allowed an acclimation period. 1 = yes there was an acclimation period, 0 = no there was not an acclimation period.</p> <p>Max RPM reached (0/1) : the insect remained attached to the vehicle at the maximum revolutions per minute (RPM) of the blower fan, 1850 RPM, equivalent to wind speed output was 100 ± 5 km/h 60cm from the housing exhaust. </p> <p>Max RPM reached: the maximum revolutions per minute (RPM) of the blower fan at which time the insect was detached from the vehicle.</p> <p>Windspeed (ft/min): conversion of insect detachment RPM (column 7) to feet/minute.</p> <p>Windspeed (KPH): conversion of insect detachment RPM (column 7) to windspeed in kilometers/hour.</p> <p>Body size: values are null (.), small (s), and (large). The body size is only assessed for the adult life stages; all instar stages have null. The adult is considered ‘small’ if the lateral yellow area on the insect’s underside was concave or flat and less than 2 mm wide. The insect was labelled ‘large’ if the lateral yellow area was ≥ 2 mm wide and convex.</p> <p>Sex (m/f): sex (male, female) was determined for the adult stages only. All of the instar stages have the value null (.).</p>
Synthetic images of fluorescent spots and ground truth data
<p>Synthetical images of fluorescent spots and ground truth data created with the simcep software.</p>
Dataset specialist generalist genotype of Two-Spotted Spider Mite across various species of Lonicera and Euonymus europaeus.
<p>A map containing the Excel sheets, tables, figures, SPSS scripts and figures and an explanation of what is to find in all maps in the repository. </p>
FIGURE 43 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURE 43. Map with distribution of Labidostomis species in Iran (●—Labidostomis elegans; □—L. kantneri; ○—L. luristanica; ▲—L. shirazica).
FIGURES 38–42. Habitus. 38 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 38–42. Habitus. 38—Labidostomis shirazica (male, 5.1 mm); 39—L. shirazica (female, 5.2 mm); 40—L. shirazica (holotype, male, 5.5 mm); 41—L. regalini sp. nov. (paratype, male, 6.1 mm); 42—L. regalini sp. nov. (paratype, female, 5.4 mm).
FIGURES 32–37. Habitus. 32 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 32–37. Habitus. 32—Labidostomis limbata (paratype of L. heinzi, male, 6.6 mm); 33—L. limbata (female, 6.3 mm); 34—L. limbata (holotype, female, 8.0 mm); 35—L. luristanica (male, 7.0 mm); 36—L. luristanica (female, 5.4 mm); 37—L. luristanica (syntype, female, 5.6 mm).
FIGURES 22–25 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 22–25. Aedeagus with everted internal sac and ejaculatory guide in different views. 22—Labidostomis luristanica; 23—L. luristanica (specimen from Zanjan prov.); 24—L. shirazica; 25—L. regalini sp. nov. Not to scale.
FIGURES 26–31. Habitus. 26 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 26–31. Habitus. 26—Labidostomis elegans (male, 6.7 mm); 27—L. elegans (male, 6.5 mm); 28—L. elegans (male, 8.7 mm); 29—L. elegans (female, 6.2 mm); 30—L. kantneri (paratype, male, 6.2 mm); 31—L. kantneri (female, 5.5 mm).
FIGURES 19–21 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 19–21. Aedeagus with everted internal sac and ejaculatory guide in different views (eg—ejaculatory guide, lslateral sclerites, as—anterior sclerite). 19—Labidostomis elegans; 20—L. kantneri; 21—L. limbata. Not to scale.
FIGURES 13–18. Male mandibles and clypeal processes. 13 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 13–18. Male mandibles and clypeal processes. 13—Labidostomis elegans; 14—L. kantneri; 15—L. limbata; 16— L. luristanica; 17—L. shirazica; 18—L. regalini sp. nov. Scale bar: 0.5 mm.
FIGURES 7–12. Spermatheca. 7 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 7–12. Spermatheca. 7—Labidostomis elegans; 8—L. kantneri; 9—L. limbata; 10—L. luristanica; 11—L. shirazica; 12—L. regalini sp. nov. Scale bar: 0.5 mm.
FIGURES 1–6 in Revision of Labidostomis (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini) with large united elytral spot from Iran and adjacent countries
FIGURES 1–6. Aedeagus in dorsal, lateral and ventral views (as—anterior sclerite, op—operculum, di—dorsal impression). 1—Labidostomis elegans; 2—L. kantneri; 3—L. limbata; 4—L. luristanica; 5—L. shirazica; 6—L. regalini sp. nov. Scale bar: 0.5 mm.
FIGURES 41a–f in Revision of the Old World species of the genus Tephritis (Diptera, Tephritidae) with a pair of isolated apical spots
FIGURES 41a–f. Tephritis zernyi: a—tip of aculeus, ventral view; b—aculeus, ventral view; c—eversible membrane, ventral view; d—eversible membrane, dentate scales; e—spermathecae. Scale bar = 1 mm.
FIGURES 39a–b in Revision of the Old World species of the genus Tephritis (Diptera, Tephritidae) with a pair of isolated apical spots
FIGURES 39a–b. Natural habitat of T. youngiana new species and the host plant Youngia sp: a—stand of Youngia sp. near pond; b—flower head of Youngia sp.
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.