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.
910
datasets available to search
ShareScore release 0.7.1
Dataset results
910 results for “pollution”
Fig. 2 in Glass Buildings As Bird Feeders: Urban Birds Exploit Insects Trapped By Polarized Light Pollution
Fig. 2. (A) Hovering white wagtail (Motacilla alba) catching caddis flies from a window. (B) House sparrow (Passer domesticus) capturing caddis flies from a vertical glass surface. (C) Great tit (Parus major) standing on a window's edge and catching caddis flies. (D) European magpie (Pica pica) on
Fig. 1 in Glass Buildings As Bird Feeders: Urban Birds Exploit Insects Trapped By Polarized Light Pollution
Fig. 1. (A) The southern (left arrow) and northern (right arrow) building of the Faculty of Natural Sciences of the Eötvös University in Budapest seen from the river Danube. (B) Mass-swarming caddis flies (Hydropsyche pellucidula, white dots) at the vertical glass surfaces of the northern building. (C) "Well-laid table" for urban birds: caddis fly imagoes (black dots) landed on white (untinted) and black (tinted) vertical glass surfaces. (D) An adult caddis fly landed on the outside surface of a window photographed from outside. (E) A copulating caddis fly pair on the outside surface of a window
Fig. 1. Investigated 8 in The Relation Of Forest And Air Pollution With Human Health In Urban Territories Of Lithuania
Fig. 1. Investigated 8 urban territories of Lithuania (Alytus, Kaunas, Klaipeda, Palanga, Panevezys, Siauliai, Vilnius, Visaginas urban municipalities).
Рис. 2. Ментум Λичинок роΑа Chironomus из озера Кенон Fig. 2. Mentum of the Chironomus genus larvae from Lake Kenon in Toxic pollution assessment of Chita TPP-1 cooling reservoir by applying the method of head capsule morphological deformations in chironomid larvae
Рис. 2. Ментум Λичинок роΑа Chironomus из озера Кенон Fig. 2. Mentum of the Chironomus genus larvae from Lake Kenon
Рис. 1. Схема мониторинговых станций на озере Кенон: 1–1.6 — ТЭЦ; 2–2.1 — КСК; 3 — Нефтебаза; 4 — Центр озера; 5 — КаΑаΛинка Fig. 1. Diagram of monitoring stations on Kenon lake: 1–1.6 — TPP; 2–2.1 — KSK; 3 — Tank farm; 4 — Lake Center; 5 — Kadalinka in Toxic pollution assessment of Chita TPP-1 cooling reservoir by applying the method of head capsule morphological deformations in chironomid larvae
Рис. 1. Схема мониторинговых станций на озере Кенон: 1–1.6 — ТЭЦ; 2–2.1 — КСК; 3 — Нефтебаза; 4 — Центр озера; 5 — КаΑаΛинка Fig. 1. Diagram of monitoring stations on Kenon lake: 1–1.6 — TPP; 2–2.1 — KSK; 3 — Tank farm; 4 — Lake Center; 5 — Kadalinka
FIGURE 3 in Convergent responses of fish belonging to different feeding guilds to sewage pollution
FIGURE 3 | Distribution of the piscivorous species Hoplias intermedius (red points) and the detritivorous species Hypostomus francisci (blue points) in the bi-plot space by study regions: A. Upper RV, B. Middle RV, C. Lower RV and D. Control sites. Resources: GR = Grasses; RV= Riparian vegetation; PE = periphyton; SW = Sewage (before treatment); AL = filamentous algae and FS = Fish.
FIGURE 2 in Convergent responses of fish belonging to different feeding guilds to sewage pollution
FIGURE 2 | Variation in the isotopic composition of carbon (A. and C.) and nitrogen (C. and D.) in the piscivorous species Hoplias intermedius (A. and C.) and the detritivorous species Hypostomus francisci (B. and D.) among the studied regions.
FIGURE 1 in Convergent responses of fish belonging to different feeding guilds to sewage pollution
FIGURE 1 | Sampling network in the rio das Velhas basin, Minas Gerais, Brazil. Sampling sites at rio das Velhas main stem (RV-01 to RV- 05), rio Taquaraçu (TQ); rio Jaboticatubas (JB); rio Cipó (CP1 and CP2); rio da Onça (ON); rio Bicudo (BI); rio Curimataí (CU); and Sewage Treatment Plants (STP's).
Figure 6 in Main Pattern of the Caspian Sea Surface Oil Pollution Revealed by Satellite Data
Figure 6. Examples of the manifestations of oil slicks from natural seeps on the seafloor in the Sefid Rud Cap area in satellite images. Parts of SAR-C Sentinel-1A images: a) February 16, 2015, 14:36 UTC; b) August 9, 2016, 14:36 UTC; c) October 27, 2017, 14:36 UTC. Parts of MSI Sentinel-2A images (color composites of 4, 3 and 2 spectral channels): d) September 14, 2015, 07:39 UTC; e) May 28, 2016, 07:29 UTC; f) June 25, 2019, 07:38 UTC.
Figure 7 in Main Pattern of the Caspian Sea Surface Oil Pollution Revealed by Satellite Data
Figure 7. Consolidated maps of oil slicks due to natural seepages on the seafloor revealed from SAR imagery: a) in the Cheleken area; b) in the Sefid Rud Cape area.
Figure 4 in Main Pattern of the Caspian Sea Surface Oil Pollution Revealed by Satellite Data
Figure 4. Statistics on the frequency of detection of oil patches in the "Oil Rocks" oil producing area in SAR images in dependence on near-surface winds.
Figure 2 in Aquatic pollutants are associated with reproductive alterations and genotoxicity in estuarine fish (Sciades herzbergii - Bloch, 1794) from the Amazon Equatorial Coast
Figure 2. Differential Pulse Voltamograms using ECV/CoPc at different concentrations of Acenaphthene and Naphthalene respectively (1) real sample; (2) 0.0383 mg/L and 0.0319 mg/L (0.249 µmol L-1 and 0.249 µmol L-1); (3) 0.0766 mg/L and 0.0637 mg/L (0.497 µmol L-1 and 0.497 µmol L-1); (4) 0.0152 mg/L and 0.0126 mg/L (0.99 µmol L-1 and 0.99 µmol L-1) of buffer solution BR 0.2 mol L-1, pH 2, v = 0.025 V s-1.
Figure 4 in Aquatic pollutants are associated with reproductive alterations and genotoxicity in estuarine fish (Sciades herzbergii - Bloch, 1794) from the Amazon Equatorial Coast
Figure 4. Biplot of Principal Component Analysis (PCA) applied to the association between variables, Gonadossomatic Index and genotoxic biomarkers on the Ovaries and Gills in S. herzbergii at São Jose Bay. GSI = gonadossomatic index; ATR = atresic ovarian follicles; MMC = ovarian melanomacrophagus; RET = oocyte cytoplasmatic retraction; MN = micronucleus; GHL = gill hyperplasia; GLF = gill lamellar fusion; GC = gill lamelar congestion; GED = gill epithelium displacement.
Fig. 524. Water pollution. A in Fig. 4 in Fig. 4 in Fig. 3 in Fig. 21. Sesarmops mora n in Paralbunea dayriti
Fig. 524. Water pollution. A: Qasemlo chay, type locality of Alburnoides petrubanarescui, which is not longer found here; B: Kalibar chay, natural habitat of six native species. C: Fish poisoning by chemical pollution in Kalibar River. D: Washing a carpet next to the Qarasu River.
Supplementary Data for "Development of a General Calibration Model and Long-Term Performance Evaluation of Low-Cost Sensors for Air Pollutant Gas Monitoring" (abridged version)
<p>This is a supplementary data set associated with the publication "Development of a General Calibration Model and Long-Term Performance Evaluation of Low-Cost Sensors for Air Pollutant Gas Monitoring" from the Center for Atmospheric Particle Studies, submitted to Atmospheric Measurement Techniques. This is an abbreviated version which does not include the calibrated models; these models must be re-generated by running the codes contained with the data set.</p> <p> </p>
Figure 6 in The morphometric and erythrometric analyses of Pelophylax ridibundus living in anthropogenic pollution resources
Figure 6. Other erythrocytic abnormalities: A- IE; immature erythrocyte (arrow), B- ME; mitotic erythrocyte (arrow), C- EE; enucleated erythrocyte (arrow), D- PE; picnotic erythrocyte (arrow), Giemsa.
Figure 4 in The morphometric and erythrometric analyses of Pelophylax ridibundus living in anthropogenic pollution resources
Figure 4. Erythrocytic nuclear abnormalities (2. and 3. stations). A- Bud nucleus (arrow), B- Blebbed nuclei (arrows), C- Kidney shaped nuclei (arrows), D- Binucleated erythrocyte (arrow). Giemsa.
Figure 5 in The morphometric and erythrometric analyses of Pelophylax ridibundus living in anthropogenic pollution resources
Figure 5. Cellular abnormalities of P. ridibundus (3. Station) A- Vacuolized erythrocytes (arrows), B- Erythrocytes with distorted elliptical shape (arrows). Giemsa.
Figure 3 in The morphometric and erythrometric analyses of Pelophylax ridibundus living in anthropogenic pollution resources
Figure 3. The erythrocytes of P. ridibundus. A- Normal erythrocyte (arrow) (1. station), B–D- Erythrocytic nuclear abnormalities (2. and 3. stations); B- Micronucleus (arrow), C- Lobed nucleus (arrow), D- Notched nuclei (arrows). Giemsa.
Figure 5 in Determination of oxidative, genotoxic, and histopathologic effects of metal pollution on the fish fauna inhabiting Karasu River, Turkey
Figure 5. Pathological damages in A. mossulensis A) separation from the granular layer (black arrow), hyperemia (orange arrows) and infiltration (red arrow) in the cerebellum, B) separation in pia mater (black arrow), congestion and damage in vein (orange arrow), degeneration in periventricular layer (green arrow) and axonopathy (circle) C) dilatation (orange arrow) and vacuolization (yellow arrows) in the cortex H & E.
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.