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.
566
datasets available to search
ShareScore release 0.7.1
Dataset results
566 results for “ponds”
Fig. 5 in Effect of Bacillus sphaericus Neide on Anopheles (Diptera: Culicidae) and associated insect fauna in fish ponds in the Amazon
Fig. 5. Regression analysis of diversity and richness data compared to application of Bacillus sphaericus.
Fig. 3 in Effect of Bacillus sphaericus Neide on Anopheles (Diptera: Culicidae) and associated insect fauna in fish ponds in the Amazon
Fig. 3. Abundance over time of aquatic insects and values LNMH at C3 and C4, Manaus, Amazonas, Brazil.
Fig. 2 in Effect of Bacillus sphaericus Neide on Anopheles (Diptera: Culicidae) and associated insect fauna in fish ponds in the Amazon
Fig. 2. Abundance over time of aquatic insects and values LNMH at C1 and C2, Manaus, Amazonas, Brazil.
Figure 3 in Effect of reed burning and precipitation on the breeding success of Great Reed Warbler, Acrocephalus arundinaceus, on a mining pond
Figure 3. Correlation between amount of precipitation and breeding success at Bager Pond, 2008–2011. Data points are Early and Late groups in 4 years.
Figures 2-3. 2 in First report of Rhantus validus Sharp (Coleoptera: Dytiscidae) as necrophage and generator of postmortem artifacts in a human corpse found in an artificial freshwater pond from the Región de La Araucanía, Chile
Figures 2-3. 2. Adult of Rhantus validus Sharp. Dorsal and ventral view. Scale bar: 10 mm. 3. Two Rhantus validus adults (indicate with red arrows) associated to a postmortem artifact in left ear.
Figure 4 in First report of Rhantus validus Sharp (Coleoptera: Dytiscidae) as necrophage and generator of postmortem artifacts in a human corpse found in an artificial freshwater pond from the Región de La Araucanía, Chile
Figure 4. Two Rhantus validus adults (indicate with red arrows) associated to a postmortem artifact in upper chest.
Figure 1 in A comparative study of the aquatic insect diversity of two ponds located in Cachar District, Assam, India
Figure 1. Map of Cachar District, Assam, highlighting the urban pond in Silchar city and Jalinga pond in the West Jalinga tea garden.
Figure 4 in Freshwater ciliates from Beytepe Pond in Ankara with new records for Turkey
Figure 4. Astylozoon pyriforme live specimen (a) and after silver impregnation (b). a) Lateral view of a typical specimen. b) View of the pellicular striation. ACW, Aboral ciliary wreath; FV, food vacuole; CV, contractile vacuole; Ma, macronucleus; PD, peristomial disk; PS, pellicular striation.
Figure 3 in Freshwater ciliates from Beytepe Pond in Ankara with new records for Turkey
Figure 3. Pleuronema crassum live specimen (a) and after protargol impregnation (b). a) A typical specimen with ellipsoid outline and a conspicuous undulating membrane. b) Ventrolateral view of ciliary pattern, which includes 3 adoral membranelles and a single undulating membrane. FV, Food vacuoles; CV, contractile vacuole; M1–M3, adoral membranelles 1–3; Ma, macronucleus; SK, somatic kineties; SC, somatic cilia.
Figure 5 in Freshwater ciliates from Beytepe Pond in Ankara with new records for Turkey
Figure 5. Pseudovorticella monilata live specimen (a) and after silver impregnation (b). a) Lateral view of a typical specimen. b) Mesh-like silver line system. ACW, Aboral ciliary wreath; FV, food vacuoles; CV, contractile vacuole; My, myoneme; Ma, macronucleus.
Figure 2 in Freshwater ciliates from Beytepe Pond in Ankara with new records for Turkey
Figure 2. Oxytricha similis live specimen (a) and after protargol impregnation (b). a) A specimen from ventral side with slenderly ellipsoid outline and the typical Oxytricha cirral pattern with 2 conspicuous caudal cilia. b) Ciliary pattern from ventral side. AZM, Adoral zone of membranelles; BC, buccal cirrus; CC, caudal cirri; FC, frontal cirri; FVC, frontoventral cirri; CV, contractile vacuole; LMR; left marginal cirral row; Ma, macronucleus; POC, postoral cirri; RMR, right marginal cirral row; TC, transverse cirri; VC, ventral cirri.
Figure 4 in Diversity of zooplankton in municipal wastewater-contaminated urban pond ecosystems of the lower Gangetic plains
Figure 4. Hierarchical cluster analyses of the study sites depending on the physicochemical conditions (a) and zooplankton community structure (b).
Figure. Lateral view and mouth shape of (A) Capoeta damascina, NUIC-1519, 158.9 mm SL; Malatya prov.: Sürgü Stream. TigrisEuphrates basin (B) C. damascina, NUIC-1520, 163.5 mm SL; Gaziantep prov.: Merzimen Stream, Tigris-Euphrates basin (C) C. damascina, NUIC-1521, 152.3 mm SL; Adıyaman prov.: Input of Atatürk Dam Lake, Tigris-Euphrates basin (D) C. damascina, NUIC-1817, 127.3 mm SL; Kilis prov.: Sapkanlı Pond, Orontes basin (E) C. kosswigi, NUIC-1907, 179.3 mm SL; Van prov.: Karasu Stream, Lake Van basin (All from Turkey). in Capoeta kosswigi Karaman, 1969 a junior synonym of Capoeta damascina (Valenciennes, 1842) (Teleostei: Cyprinidae)
Figure. Lateral view and mouth shape of (A) Capoeta damascina, NUIC-1519, 158.9 mm SL; Malatya prov.: Sürgü Stream. TigrisEuphrates basin (B) C. damascina, NUIC-1520, 163.5 mm SL; Gaziantep prov.: Merzimen Stream, Tigris-Euphrates basin (C) C. damascina, NUIC-1521, 152.3 mm SL; Adıyaman prov.: Input of Atatürk Dam Lake, Tigris-Euphrates basin (D) C. damascina, NUIC-1817, 127.3 mm SL; Kilis prov.: Sapkanlı Pond, Orontes basin (E) C. kosswigi, NUIC-1907, 179.3 mm SL; Van prov.: Karasu Stream, Lake Van basin (All from Turkey).
Figure 1 in First record of the occurrence of the Chinese pond mussel Sinanodonta woodiana (Lea, 1834) (Bivalvia: Unionidae) in African freshwaters: Oubeira Lake, Algeria
Figure 1. Location of Oubeira Lake in the boundaries of El-Kala National Park (modified from Sarri, 2017).
Figure 3 in First record of the occurrence of the Chinese pond mussel Sinanodonta woodiana (Lea, 1834) (Bivalvia: Unionidae) in African freshwaters: Oubeira Lake, Algeria
Figure 3. Scheme of measurements for S. woodiana from Oubeira Lake (photos by Bensaâd-Bendjedid L.): shell's length (SL), height (SH), and width (SW).
Figure 7 in Environmental niche modelling of the Chinese pond mussel invasion in Europe under climate change scenarios
Figure 7. Map of potential invasion range of S. woodiana in Europe under the RCP 8.5 climate change scenario at 2080-2100: green filling indicates areas defined as suitable using minimum presence (MP) threshold; orange filling indicates areas defined as suitable using 10th percentile presence (10P) threshold. Black dots indicate species record used for SDM.
Figure 6 in Environmental niche modelling of the Chinese pond mussel invasion in Europe under climate change scenarios
Figure 6. Map of potential invasion range of S. woodiana in Europe under the RCP 4.5 climate change scenario at 2080-2100: green filling indicates areas defined as suitable using minimum presence (MP) threshold; orange filling indicates areas defined as suitable using 10th percentile presence (10P) threshold. Black dots indicate species record used for SDM.
Figure 4 in Environmental niche modelling of the Chinese pond mussel invasion in Europe under climate change scenarios
Figure 4. Response curves of the environmental variables selected for prediction of S. woodiana distribution under the RCP 8.5 scenario. Each curve (green line) shows how the logistic prediction changes as each environmental variable is varied. The orange dashed line crosses the maximum value of the variable.
Figure 5 in Environmental niche modelling of the Chinese pond mussel invasion in Europe under climate change scenarios
Figure 5. Map of potential invasion range of S. woodiana in Europe under the recent climate conditions: green filling indicates areas defined as suitable using minimum presence (MP) threshold; orange filling indicates areas defined as suitable using 10th percentile presence (10P) threshold. Black dots indicate species record used for SDM.
Figure 3 in Environmental niche modelling of the Chinese pond mussel invasion in Europe under climate change scenarios
Figure 3. Response curves of the environmental variables selected for prediction of S. woodiana distribution under the RCP 4.5 scenario. Each curve (green line) shows how the logistic prediction changes as each environmental variable is varied. The orange dashed line crosses the maximum value of the variable.
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.