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1,618 results for “City”
Yellow parking spots in Trento detected with Virtual City Explorer
<p>Yellow parking spots detected with the <a href="https://zenodo.org/record/3540843#.XeVahHH7RhF">Virtual City Explorer</a>, using crowdworkers from MechanicalTurk. This is raw data, before any fusion takes place. Therefore, expect spots that have been detected multiple times.</p> <p>The dataset is distributed using <a href="https://github.com/smart-data-models/dataModel.Parking/blob/master/OnStreetParking/doc/spec.md">FiWare models format.</a></p> <p>Provenance and <a href="https://zenodo.org/record/3531962#.XeU1wHH7RhE">crowd-voc</a> description included.</p>
Bike Racks in the city of Trento
<p>Bike racks in the Limited Traffic Zone of Trento, Italy, collected with the <a href="https://doi.org/10.5281/zenodo.3540843">Virtual City Explorer </a>. Crowdworkers were recruited through the FigureEight platform.</p> <p>Data is provided as OnStreetParking elements from teh <a href="https://github.com/FIWARE/data-models/tree/master/specs/Parking">FiWare data model for parkings</a> </p> <p>Provenance and task description information (following the <a href="https://doi.org/10.5281/zenodo.3531962">crowd-voc vocabulary</a>) is included.</p>
Figure 3 in Insecticide resistance of Stegomyia aegypti (Diptera: Culicidae) population from Paranaguá a port city in southern Brazil
Figure 3. Relative gene expression of the (A) acetylcholinesterase (ace-1), (B) α-esterase (CCEae3A), and (C) cytochrome P 450 (CYP6N12) genes in S. aegypti females. C1_R: Rockefeller control group (n=10); C2_Pr: Paranaguá control group (n=14); C3_Pr: Paranaguá solvent control group (n=10); T1: Paranaguá resistant females after exposure to malathion at a concentration of 3.41% (n=24). Data are presented as median ± interquartile range. Different letters indicate significant difference at p <0.05, according to Dunn's post hoc tests.
Figure 2 in Insecticide resistance of Stegomyia aegypti (Diptera: Culicidae) population from Paranaguá a port city in southern Brazil
Figure 2. Mortality curve showing the upper and lower limits for each concentration of malathion exposure for S. aegypti of the Rockefeller strain.
Figure 1 in Insecticide resistance of Stegomyia aegypti (Diptera: Culicidae) population from Paranaguá a port city in southern Brazil
Figure 1. (A) Location of the city of Paranaguá, and (B) location of ovitraps containing the eggs obtained during the June 2018 monitoring cycle in the city. Colors depict the representativeness of each point in the establishment of the S. aegypti insectary used to obtain the F and F generations.
Figure. CCA ordination of bird species. The eigenvalue of the first axis is 0.164 and of the second axis is 0.127. Species abbreviations are the first 3 letters of their genus followed by the first 3 letters of the species epithet. in Birds and small urban parks: a study in a high plateau city
Figure. CCA ordination of bird species. The eigenvalue of the first axis is 0.164 and of the second axis is 0.127. Species abbreviations are the first 3 letters of their genus followed by the first 3 letters of the species epithet.
Text-fig. 7. Plan for expansion of museum from 1924. (City council Lázně Bělohrad, construction board, construction documentation, parcel no. 191.). / Plán přístavby muzea z roku 1924. (Městský úřad Lázně Bělohrad, stavební úřad, stavební dokumentace k č. p. 191.). in Frič Museum In Lázně Bělohrad
Text-fig. 7. Plan for expansion of museum from 1924. (City council Lázně Bělohrad, construction board, construction documentation, parcel no. 191.). / Plán přístavby muzea z roku 1924. (Městský úřad Lázně Bělohrad, stavební úřad, stavební dokumentace k č. p. 191.).
Text-fig. 6. Platanaceae 1–3. Platanites raynoldsii (NEWBERRY) comb. nov. 1. Holotype of Platanus raynoldsii NEWBERRY (1868, 1898), Banks of the Yellowstone River, Montana, USNM 7000. 2. Holotype of Platanites canadensis MCIVER et BASINGER (1993), here treated as synonym of P. raynoldsii, showing clearly the position of the lateral leaflets, US 3-66, Ravenscrag Formation, Saskatchewan, Canada. 3. Specimen from Yellowstone Bridge, Miles City, Montana. UF19021-39390. 4. Detail from fig. 2. Scale bars 5 cm. in Revisions To Roland Brown'S North American Paleocene Flora
Text-fig. 6. Platanaceae 1–3. Platanites raynoldsii (NEWBERRY) comb. nov. 1. Holotype of Platanus raynoldsii NEWBERRY (1868, 1898), Banks of the Yellowstone River, Montana, USNM 7000. 2. Holotype of Platanites canadensis MCIVER et BASINGER (1993), here treated as synonym of P. raynoldsii, showing clearly the position of the lateral leaflets, US 3-66, Ravenscrag Formation, Saskatchewan, Canada. 3. Specimen from Yellowstone Bridge, Miles City, Montana. UF19021-39390. 4. Detail from fig. 2. Scale bars 5 cm.
Figure 2 in Therates hubertusi sp. nov. a new species of tiger beetle (Coleoptera: Cicindelidae) in Davao City Philippines
Figure 2. Elytra apex: A: Therates hubertusi Medina&Cabras, sp.n., B: Therates fasciatus fasciatus Fabricius, 1801, C: Therates monticola Zettel&Pangantihon, 2017, D: Therates fasciatus pseudolatreillei (Horn, 1895), E: Therates fasciatus quadrimaculatus Horn, 1895.
FIGURE 3 in Balaenoptera edeni skull from the Holocene (Quaternary) of Osaka City, Japan
FIGURE 3. Maxilla, premaxilla and vomer, OMNH-QV4816. 1, left anterior part of maxilla and premaxilla. 2, left middle part of maxilla. 3, left preorbital region of maxilla. 4, right anterior part of maxilla. 5, right preorbital region of maxilla. 1- 5, in dorsal view. 6, right anterior part of maxilla. 7, right preorbital region of maxilla. 8, left anterior part of maxilla and premaxilla. 9, left middle part of maxilla. 10, left preorbital region of maxilla. 6-10, in ventral view. 11 to 13, vomer. 11, in dorsal view. 12, in left lateral view. 13, in posterior view.
FIGURE 2 in Balaenoptera edeni skull from the Holocene (Quaternary) of Osaka City, Japan
FIGURE 2. Skull, OMNH-QV4816 in dorsal view. 1, Restoration of the skull based on a photo, which was taken just before specimen was damaged by pulling up from the locality. 2, Line art was made from the photo. The outline of the skull is anteroposteriorly extended at the level of the antorbital process (arrow), result of a slide between the lose frontal and maxilla.
FIGURE 1. Locality maps and a in Balaenoptera edeni skull from the Holocene (Quaternary) of Osaka City, Japan
FIGURE 1. Locality maps and a stratigraphic section at the locality. 2, restoration of the Kawachi Bay following Osaka City Cultural Properties Association (2008). 3, the columnar section at OMNH-QV4816 locality, which was modified from a boring survey report in 1965.
FIGURE 10 in Balaenoptera edeni skull from the Holocene (Quaternary) of Osaka City, Japan
FIGURE 10. Map showing records of Balaenoptera edeni and B. brydei. 1, around Japan. 2, in the Seto Inland Sea including the Osaka Bay. See Table 2.
FIGURE 4 in Balaenoptera edeni skull from the Holocene (Quaternary) of Osaka City, Japan
FIGURE 4. Frontals, OMNH-QV4816. 1, left in dorsal view. 2 and 3, right in dorsal view. 2, line art. 3, photo. 4 and 5, right in ventral view. 4, photo. 5, line art. 6. right in ventral view. 7 and 8, in right lateral view. 7, photo. 8, line art.
FIGURE 7 in Telychian (Llandovery, Silurian) conodonts from the LaPorte City Formation of eastern Iowa, USA (East-Central Iowa Basin) and their implications for global Telychian conodont biostratigraphic correlation
FIGURE 7. Simple cone elements from Garrison Core. All specimens in lateral view except for 6. 1-2, Panderodus equicostatus, graciliform, GC 124.66–124.93 m, SUI 142251 (1) and graciliform, GC 121.92-121.88 m, SUI 142253 (2). 3-5, Panderodus panderi, graciliform, GC 124.66–124.93 m, SUI 142252 (3); arcuatiform, GC 131.95–132.23 m, SUI 142254 (4); and graciliform, GC 111.38–111.63 m, SUI 142255 (5). 6, Psuedooneotodus beckmanni, oral view, GC 135.65–136.10 m, SUI 142256. 7, Panderodus cf. P. unicostatus, falciform, GC 135.65–136.10 m, SUI 142257. 8- 11, Panderodus unicostatus, falciform, GC 131.95–132.23 m, SUI 142258 (8); fused cluster of 8 elements, GC 130.20–130.48 m, specimen destroyed processing for SEM (9); fused cluster of 6 elements, GC 131.95–132.23 m, SUI 142260 (10); and tortiform element, GC 131.95–132.23 m, SUI 142261 (11); 12-13, Walliserodus curvatus, dyscritiform, GC 134.06–134.31 m, SUI 142262 (12) and curvatiform, GC 128.85–129.11 m, SUI 142263 (13). 14-15, Panderodus greenlandensis, arcuatiform GC 118.20–118.41 m, SUI 142264 (14) and graciliform, GC 134.06–134.31 m, SUI 142265 (15). White scale bar represents 0.5 mm.
FIGURE 3 in Telychian (Llandovery, Silurian) conodonts from the LaPorte City Formation of eastern Iowa, USA (East-Central Iowa Basin) and their implications for global Telychian conodont biostratigraphic correlation
FIGURE 3. Cross section of Silurian strata in eastern Iowa. The lower two members of the Hopkinton Formation become indistinguishable in the western part of the cross section. The Sweeney and Marcus members are referred to as Hopkinton A, the Farmers Creek Quarry Member as Hopkinton B, and the Picture Rock Member as Hopkinton C in this manuscript. Note the change in datum at the CC core in Linn County. Modified from Witzke (1992, figure 6).
FIGURE 11. P1 in Telychian (Llandovery, Silurian) conodonts from the LaPorte City Formation of eastern Iowa, USA (East-Central Iowa Basin) and their implications for global Telychian conodont biostratigraphic correlation
FIGURE 11. P1 elements of Wurmiella? polinclinata estonica and Wurmiella? polinclinata polinclinata. 1-11 are classified as W.? polinclinata polinclinata. 12 and 14 show some characteristics of each subspecies, but compare most closely to W.? polinclinata polinclinata. 13, 15-17 are classified as W.? polinclinata estonica. All specimens in lateral view. 1, GC 121.92–121.88 m, SUI 142321; 2, GC 128.85–129.11 m, SUI 142322; 3-5, GC 130.20–130.48 m, SUI 142323 (3), 142324 (4), and 142325 (5); 6, GC 130.79–131.09 m, SUI 142326; 7-11, GC 131.95–132.23 m, SUI 142327 (7), 142328 (8), 142329 (9), 142330 (10), and 142331 (11); 12-14, GC 134.06–134.31 m, SUI 142332 (12), 142333 (13), and 142334 (14); and 15-17, GC 135.65–136.10 m, SUI 142335 (15), 142336 (16), and 142337 (17).
FIGURE 5 in Telychian (Llandovery, Silurian) conodonts from the LaPorte City Formation of eastern Iowa, USA (East-Central Iowa Basin) and their implications for global Telychian conodont biostratigraphic correlation
FIGURE 5. Stratigraphic column and conodont range chart for the LPC in the Garrison Core. Dashed lines indicate uncertainty in range. M = mudstone, W = Wackestone, P = Packstone, F = Floatstone for carbonate lithologies. L.H. = Lower Hopkinton. Log colors represent the color of the rock. Correlation of conodont biozonation to chronostratigraphic units from Cramer et al. (2011).
FIGURE 10 in Telychian (Llandovery, Silurian) conodonts from the LaPorte City Formation of eastern Iowa, USA (East-Central Iowa Basin) and their implications for global Telychian conodont biostratigraphic correlation
FIGURE 10. Conodonts from the Garrison Core and DX5 outcrop. 1-7, Pterospathodus amorphognathoides angulatus, Sc1 element, posterior view, GC 115.51–115.76 m, SUI 142304 (1); Pb1? element, lateral view, GC 115.51– 115.76 m, SUI 142305 (2); Pb2 element, GC 111.38–111.63 m, SUI 142306 (3); Pb1 element, inner lateral, and oral views, GC 115.51–115.76 m, SUI 132410 (4 and 5); Pa element, oral view, DX5 3.49–3.59 m, SUI 142307 (6); and Pa element, lateral view, DX5 4.59–4.61 m, SUI 142308 (7). 8-19, Pterospathodus eopennatus ssp. n. 2 sensu Männik (1998), Sb2 element, posterior, and lateral views, GC 130.79–131.09 m, SUI 142309 (8 and 9); Sc1 element, lateral view, GC 130.79–131.09 m, SUI 142310 (10); M element, GC 130.79–131.09 m, SUI 142311 (11); Pb1 element, lateral view, GC 128.85–129.11 m, SUI 142312 (12); Pc element, lateral view, GC 130.20–130.48 m, SUI 142313 (13); Pb1 element, lateral view, GC 130.20–130.48 m, SUI 142314 (14); Pa element, lateral view, GC 128.85–129.11 m, SUI 142315 (15); Pb1 element, lateral view, GC 130.20–130.48 m, SUI 142316 (16); Pa element, lateral, and oral views, GC 130.79–131.09 m, SUI 142317 (17 and 18); and Pa element fragment, oral view, GC 130.20–130.48 m, SUI 142318 (19). 20-21, Aulacognathus sp., juvenile P1 element, oral, and lateral-anterior views, GC 135.65–136.10 m, SUI 142319. 22-23, Kockelella cf. K. abrupta, P1 element, oral, and lateral views, DX5 0.67–0.74 m, SUI 142320.
FIGURE 2. 1 in Telychian (Llandovery, Silurian) conodonts from the LaPorte City Formation of eastern Iowa, USA (East-Central Iowa Basin) and their implications for global Telychian conodont biostratigraphic correlation
FIGURE 2. 1, Paleogeographic map showing the locations of the continents during the lower to middle Silurian. Black box indicates approximate location of the Illinois Basin. From Torsvik et al. (1996, figure 13). 2, Map showing the deepest part of the Illinois and East-Central Iowa basins, and trans-Iowa sag in Iowa and nearby states during the Silurian. Shading indicates extent of basins. Modified from Cramer et al. (2006, figure 1).
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.