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57 results for “Water masses”

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zenodo32/100

Dataset for article "Measurement report: Molecular characteristics of cloud water in southern China and insights into aqueous-phase processes from Fourier Transform Ion Cyclotron Resonance Mass Spectrometry"

<p>This dataset is the result of molecular composition of cloud water collected in southern China obtained by ESI FT-ICR MS. This dataset is for the article &quot;Measurement report: Molecular characteristics of cloud water in southern China and insights into aqueous-phase processes from Fourier Transform Ion Cyclotron Resonance Mass Spectrometry&quot; published in Atmospheric Chemistry and Physics by Sun et al. (2021).</p>

opencc-by-4.0Nov 2021View details →
zenodo32/100

Temperature data collected in turf aggregations, seaweed patches and the water masses in mesocosm in the Oslofjord, Norway

<p><span>Temperature data collected in turf aggregations, seaweed patches and the water masses in the NIVA mesocosm basins at Solbergstrand, in the Oslofjord, Norway</span></p>

opencc-by-4.0Oct 2024View details →
zenodo32/100

Temperature data collected in the surface turf aggregations and the water masses below, in the Varildsfjorden in the Oslofjord, Norway

<p>Temperature data collected in the surface turf aggregations and the water masses just below the turf, in the Varildsfjorden in the Oslofjord, Norway</p>

opencc-by-4.0Oct 2024View details →
zenodo32/100

Figure 3 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast

Figure 3. Hierarchical clustering, based on similarities in aquatic macroinvertebrate assemblages, of the sampling stations with a Ward linkage method and a Euclidian distance; Sa, Sahoua; Ah, Ahondo; Tc, Taabo cité; Co, Courandjourou; Tv, Taabo village.

opennotspecifiedFeb 2010View details →
zenodo32/100

Figure 5 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast

Figure 5. Canonical correspondence analysis (CCA) diagram of macroinvertebrates collected from water hyacinth samples in relation to nine independent environmental variables measured: Temp., temperature; NH +, ammonium; pH; Trans., transparency; NO –, nitrate; Turb., 4 3 turbidity; PO 3–, phosphate; O, dissolved oxygen; and CND, conductivity.

opennotspecifiedFeb 2010View details →
zenodo32/100

Figure 2 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast

Figure 2. Box-plots showing differences in physical and chemical variables between the two seasons (Rs = rainy season and Ds = dry season); box corresponds to 50% of the values, the square in the box corresponds to the median value and the vertical bars correspond to the minimum/maximum values.

opennotspecifiedFeb 2010View details →
zenodo32/100

Figure 1 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast

Figure 1. Map of the man-made Taabo Lake, showing sampling stations (UTM, Universal Transverse Mercator) (Kouassi 2007).

opennotspecifiedFeb 2010View details →
zenodo32/100

Figure 4 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast

Figure 4. Box-plots showing differences in physical and chemical variables between the three clusters (I, II and III) identified on Figure 3; box corresponds to 50% of the values, the square in the box corresponds to the median value and the vertical bars correspond to the minimum/ maximum values; n = 10. (Continued)

opennotspecifiedFeb 2010View details →
dryad32/100

Data from: Broad-scale genetic patterns of New Zealand abalone, Haliotis iris, across a distribution spanning 13° latitude and major oceanic water masses

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publicJun 2016View details →
dryad32/100

Prolonged water‐only fasting followed by a whole‐plant‐food diet promotes fat‐free mass recovery and continued fat mass loss in adults with overweight or obesity

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publicJul 2025View details →
dryad32/100

Data from: Microbe biogeography tracks water masses in a dynamic oceanic frontal system

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publicMar 2017View details →
zenodo28/100

How is copepod functional diversity shaped by 2015-2016 El Niño and seasonal water masses in a coastal ecosystem of Southwest Atlantic?

<p>Figure S1: a) El Niño-Southern Oscillation episodes. Index values (Oceanic Niño Index - ONI) of +0.5 or higher indicate El Niño; values of -0.5 or lower indicate La Niña (dotted line). Transparent gray shade represents the period of interest (2014-2016), b) Pixel contour plots show satellite-based sea surface temperature monthly means in the Arvoredo MPA surroundings. Data visualization standard plots from the zooplankton time series adopted by SCOR WG125 (Mackas et al., 2012) and performed at http://www.st.nmfs.noaa.gov/copepod/.</p><p>Table S1 – Taxa code and functional traits of copepod species during the summer and winter of 2014, 2015, and 2016 in the Arvoredo MPA surroundings.</p><p>Table S2 – Total and mean abundance (ind. m-3), standard deviation (SD), relative abundance (RA %), and frequency of occurrence (FO %) of copepod species during the summer and winter of 2014, 2015, and 2016 in the Arvoredo MPA surroundings.</p><p>&nbsp;</p>

opencc-by-4.0Nov 2023View details →
dryad28/100

Raw data of eDNA quantities from an experimental study testing temperature, water masses, and fish species

<p>Environmental DNA (eDNA) is a very promising approach to facilitate and improve the aquatic species monitoring, which is crucial for their management and conservation. In comparison with the plethora of monitoring studies in the fields, relatively few studies have focused on experimentally investigating the "ecology" of eDNA, in particular pertaining to processes influencing the detection of eDNA. The paucity of knowledge about its ecology hampers the use of eDNA analysis to its full potential. In this study, we experimentally evaluated the impact of several biotic and abiotic factors on the rate of production and degradation of eDNA. Individuals of three freshwater fish species (brown bullhead, tench, and yellow perch) with distinct ecology were placed in two types of water from the St. Lawrence River (Québec, Canada) with very distinct physicochemical characteristics and at three different temperatures. Water samples were then filtered at predetermined time intervals, and quantitative PCR was used to quantify the eDNA in each sample. We found that temperature, species, water types, and some interactions between these factors had a strong effect on the production and degradation of eDNA. The results of this study enhance our knowledge about the ecology of eDNA, thus improving eDNA data interpretation.</p>

opencc-zeroNov 2021View details →
dryad28/100

Lean mass dynamics in hibernating bats and implications for energy and water budgets

<p>Hibernation requires balancing energy and water demands over several months with no food intake for many species. Many studies have considered the importance of fat for hibernation energy budgets because it is energy dense and can be stored in large quantities. However, protein catabolism in hibernation has received less attention and whole animal changes in lean mass have not previously been considered. We used quantitative magnetic resonance body composition analysis to measure fat and lean mass in two systems of hibernating bats, emphasizing the importance of lean mass for energy and water budgets. For cave myotis ( Myotis velifer ), lean mass represented 38 and 25% (male and female respectively) of pre-hibernation mass gain. In Townsend's big-eared bats ( Corynorhinus townsendii ), lean mass accounted for 18 – 35% of mass change during hibernation, but lean only contributed 3 – 7% of the energy budget. Water is produced from the catabolism of both fat and lean, but net water production is much less than gross water production when accounting for the water required to excrete urea. Although most mammals can't rely on protein catabolism for metabolic water production due to the water cost of excreting urea, we propose a variation on the protein-for-water strategy whereby hibernators could temporally compartmentalize the benefits of protein catabolism to periods of torpor, and the water cost to periodic arousals when free drinking water is typically available. Combined, our analyses demonstrate that lean mass is dynamic in hibernation, with important functional consequences for both energy and water budgets. </p>

opencc-zeroFeb 2022View details →
zenodo28/100

Supporting Information for: Re-evaluating Water Column Reoxygenation in the Aftermath of the End Permian Mass Extinction

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opencc-by-4.0Jul 2024View details →
zenodo28/100

Temperature data collected in the water masses in the Varildsfjorden in the Oslofjord, Norway

<p><span>Temperature data collected in the water masses in the Varildsfjorden in the Oslofjord, Norway</span></p>

opencc-by-4.0Oct 2024View details →
zenodo28/100

Figure 2 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast

Figure 2. (Continued).

opennotspecifiedFeb 2010View details →
zenodo28/100

Figure 4 in Aquatic macroinvertebrate assemblages associated with root masses of water hyacinths, Eichhornia crassipes (Mart.) Solms-Laubach, 1883 (Commelinales: Pontederiaceae) in Taabo Lake, Ivory Coast

Figure 4. (Continued).

opennotspecifiedFeb 2010View details →
dryad28/100

Lean mass dynamics in hibernating bats and implications for energy and water budgets

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publicMar 2022View details →
dryad28/100

Raw data of eDNA quantities from an experimental study testing temperature, water masses, and fish species

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publicNov 2021View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record