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.
16
datasets available to search
ShareScore release 0.9.0
Dataset results
16 results for “Spirostomum”
Fig. 14. a in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 14. a) Spirostomum teres numbers plot [cells mL–1] against autotrophic, APP vs. heterotrophic picoplankton, HPP [cells mL–1], and all analysed APP/HPP data plot, b) Species occurrence in habitats, in which S. teres was found (in the logarithmic scale of APP).
Fig. 15. a in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 15. a) Spirostomum teres numbers plot [cells mL–1] against Photosynthetically Active Radiation, PAR [%] vs. autotrophic picoplankton, APP [cells mL–1], and analysed PAR/APP data plot; blue bubbles mark the samples from the event of incomplete mixing (January); b) Species occurrence in habitats, in which S. teres was found (in the logarithmic scale of PAR).
Fig. 5 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 5. Representative Spirostomum teres sampling profiles in Lake La Preciosa (a to c) and Lake de La Cruz (d to f). a, d, g) T [°C], Dissolved oxygen, DO [mg L–1], and Photosynthetically active radiation PAR [%]; b, e, h) numbers of APP [cells mL–1] (not analysed in de La Cruz) and of Spirostomum teres [cells L–1]; c) turbidity [NTU]; f, I) chlorophyll a, Chl a [µg L–1], phycoerythrin, PE [µg L–1], and phycocyanin, PC [ng L–1].
Fig. 2 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 2. Heterotrophic (HPP) and autotrophic picoplankton (APP) in Lake Alchichica (based on Peštová et al. 2008, Macek et al. 2009, Hernández-Avilés et al. 2010, Bautista-Reyes and Macek 2012, Sánchez-Medina et al. 2016, Pájares et al. 2017, and this study).
Fig. 6 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 6. Spirostomum teres: a) Lake Alchichica (8/8/2011, 30 m), b) Lake La Preciosa (2/9/2011, 20.5 m and c) Lake de La Cruz (25/6/2010, 11.25 m. Protargol stain (QPS). 1 ≡ 10 µm.
Fig. 10 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 10. Feeding experiments with FLB in Lake Alchichica (a, b), La Preciosa (c, d) and Lake de la Cruz (e, f). Triple DAPI/FITC/CY3 set (a, b); DAPI set (c, e), Chlorophyll a / FITC set. Arrow: Just filled vacuole. 1 ≡ 10 µm.
Fig. 9 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 9. Lake Alchichica Spirostomum teres with apparent purple sulphur bacteria in Protargol stain a) 4/12/2012, 36.5 m; b) 19/11/14, 38 m, and in infrared autofluorescence b) 19/11/14, 38 m. 1 ≡ 10 µm.
Fig. 4 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 4. Representative early- (a to h) and late-stratification (i to p) of Spirostomum teres in Lake Alchichica. a, e, i, m) Temperature, T [°C], Dissolved oxygen, DO [mg L–1], and Photosynthetically active radiation PAR [%]; b, f, j, n) numbers of heterotrophic-, HPP [cells mL–1] and autotrophic picoplankton, APP [cells mL–1], and Spirostomum teres [cells L–1]; c, g, k, o) nitrites, NO –, nitrates NO – and ammonium, 2 3 NH [µmol L–1]; d, h, l, p) chlorophyll a, Chl a [µg L–1], phycoerythrin, PE [µg L–1], and phycocyanin, PC [ng L–1].
Fig. 13. a in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 13. a) Spirostomum teres numbers plot [cells mL–1] against dissolved oxygen, DO [mg L–1] vs. nitrite nitrogen NO – [µmolL–1], and all 2 analysed DO/nutrients data plot, b) Species occurrence in habitats, in which S. teres was found (in the logarithmic scale of nitrite nitrogen concentration).
Fig. 12. a in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 12. a) Spirostomum teres numbers plot [cells mL–1] against dissolved oxygen, DO [mg L–1] vs. nitrate nitrogen NO – [µmolL–1], and 3 all analysed DO/nitrate data, b) Species occurrence in habitats, in which S. teres was found (in the logarithmic scale of nitrate nitrogen concentration).
Fig. 8 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 8. Spirostomum teres in Alchichica on July 2013 (epifluorescence microscope, Leica DMLB). a) DAPI filter set (A); b) Phycobilin filter set (Y3); c) Chlorophyll a filter set (I3). 1 ≡ 10 µm.
Fig. 3. a in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 3. a) Dissolved Oxygen isopleths, sampled data/depths (Analysed), and of Spirostomum teres numbers in Lake Alchichica; b) average S. teres numbers throughout an hypoxic/anoxic layer (based on Peštová et al. 2008, Bautista-Reyes and Macek 2012, Sánchez-Medina et al. 2016, and this study).
Fig. 7 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 7. Spirostomum teres in Alchichica on July 2016 (epifluorescence microscope, Leica DMLB). a) DAPI staining; b) Phycobilin filter set (Y3); c) Chlorophyll a filter set (I3). 1 ≡ 10 µm.
Fig. 16. a in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 16. a) Plot of distance-based redundancy analysis (dbRDA) of Spirostomum teres (S. teres), autotrophic picoplankton (APP) and heterotrophic picoplankton (HPP) abundance using environmental data as predictor variables, for Lake Alchichica. Environmental variables: Concentrations of dissolved oxygen (DO), ammonium (NH 3), nitrite (NO 2), nitrate (NO 3), dissolved reactive phosphorus (DRP) and silicon (SiO).
Fig. 1. a in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 1. a) Temperature and b) photosynthetically active radiation profiles in Lake Alchichica.
Fig. 11 in Spirostomum teres: A Long Term Study of an Anoxic-Hypolimnion Population Feeding upon Photosynthesizing Microorganisms
Fig. 11. Spirostomum teres occurrence (%) in habitats defined by DO concentration (mgL–1).
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.