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.
1,034
datasets available to search
ShareScore release 0.9.0
Dataset results
1,034 results for “HOT”
Fig. 3 in Urogenital schistosomiasis transmission on Unguja Island, Zanzibar: characterisation of persistent hot-spots
Fig. 3 Number of human-water contact sites in persistent hot-spot and low-prevalence shehias in Unguja
Fig. 2 in Urogenital schistosomiasis transmission on Unguja Island, Zanzibar: characterisation of persistent hot-spots
Fig. 2 Map of Unguja Island, Zanzibar, showing the location of selected persistent hot-spot and low-prevalence shehias
Fig. 1 in Urogenital schistosomiasis transmission on Unguja Island, Zanzibar: characterisation of persistent hot-spots
Fig. 1 Flowchart showing the inclusion procedure for persistent hot-spot and low-prevalence shehias in Unguja
Figure 3 in The effectiveness of hot water pressurized spray in field conditions to slow the spread of invasive alien species
Figure 3. (A) Average maximum temperature, (B) Average thermal exposure (area under the curve), of hot water spray applied to Dreissena polymorpha, Dikerogammarus villosus and Crassula helmsii from three distances (10, 20, 30 cm) and for three durations (5, 10, 15 seconds). Error bars show standard error (n = 36).
Figure 4 in Modelling hot spot areas for the invasive alien plant Elodea nuttallii in the EU
Figure 4. The occurrence with data thinned by extraction from subset 1 (A) and subset 2 (B) of occurrence data. The combined output of both is also presented (C). Areas with low uncertainty and above the habitat suitability threshold (i.e. priority areas) are marked in red while areas with high uncertainty are marked in yellow. The grid size of all 3 maps is 1 km2.
Figure 2 in Modelling hot spot areas for the invasive alien plant Elodea nuttallii in the EU
Figure 2. The model performance (regularized training gain) of the MaxEnt model generated using subset 2 of the occurrence data when the variable in question is omitted or used in isolation, compared to the performance of the model when all variables are used.
Figure 6. The occurrence with data from subset 1 in Modelling hot spot areas for the invasive alien plant Elodea nuttallii in the EU
Figure 6. The occurrence with data from subset 1 (A) and subset 3 (B). The combined output of both is also presented (C). Areas with low uncertainty and above the habitat suitability threshold (i.e. priority areas) are marked in red while areas with high uncertainty are marked in yellow. The grid size of all 3 maps is 1 km2.
Figure 2 in The effectiveness of hot water pressurized spray in field conditions to slow the spread of invasive alien species
Figure 2. Average temperature of hot water spray treatment applied to Dreissena polymorpha, Dikerogammarus villosus and Crassula helmsii from three distances (10, 20, 30 cm) and for three durations (5, 10, 15 seconds) and control cold water treatment (from 10 cm for 15 seconds). Grey shading shows standard error of average (n = 36).
Figure 1 in The effectiveness of hot water pressurized spray in field conditions to slow the spread of invasive alien species
Figure 1. Photographs of four invasive alien species utilised in hot water spray effectiveness experiments; a. Dikerogammarus villosus, b. Dreissena polymorpha, c. Crassula helmsii, d. Hydrocotyle ranunculoides. Photographs by Chris Pollock (a, b, c) and Stephanie Bradbeer (d).
Figure 7 in Modelling hot spot areas for the invasive alien plant Elodea nuttallii in the EU
Figure 7. "Alert areas", i.e. areas with high probability to be invaded by Elodea nuttallii that are at least 100 km away from any known occurrence point of the species, divided by being inside or outside Natura 2000 site, generated using subset 1 and subset 3 of occurrence data.
Figure 5 in Modelling hot spot areas for the invasive alien plant Elodea nuttallii in the EU
Figure 5. "Alert areas", i.e. areas with high probability to be invaded by Elodea nuttallii that are at least 100 km away from any known occurrence point of the species, divided by being inside or outside Natura 2000 site, generated using subset 1 and subset 2 of occurrence data.
Figure 4 in The effectiveness of hot water pressurized spray in field conditions to slow the spread of invasive alien species
Figure 4. (A) Average maximum temperature, (B) Average thermal exposure (area under the curve), of hot water spray applied to Crassula helmsii from two distances (10 and 30 cm) for three durations (30, 60, 90 seconds). Error bars show standard error (n = 12), * show statistical significance and letters show treatments statistically the same to another.
Fig. 5 in Redescription of Dexiotricha colpidiopsis (Kahl, 1926) Jankowski, 1964 (Ciliophora, Oligohymenophorea) from a Hot Spring in Iceland with Identification Key for Dexiotricha species
Fig. 5. Dexiotricha species from live (A, D, F, G) and silver-stained specimens (B, C, E, H–L). (A–C) D. elliptica (from Fan et al. 2014). (D, E) D. tranquilla (from Augustin and Foissner 1992). (F) D. polystyla (from Foissner 1987). (G, H) D. granulosa (G from Behrend 1916; H from Fan et al. 2014). (I) D. media (from Peck 1974). (J, K) D. colpidiopsis (J from Fauré-Fremiet 1968; H from Jankowski 1964). (L) D. raikovi (from Jankowski 1964). Scale bars: 20 µm.
Fig. 2 in Redescription of Dexiotricha colpidiopsis (Kahl, 1926) Jankowski, 1964 (Ciliophora, Oligohymenophorea) from a Hot Spring in Iceland with Identification Key for Dexiotricha species
Fig. 2. Dexiotricha colpidiopsis from live (A–C) and after protargol-staining (D–F). (A) Ventrolateral view of a typical specimen showing the subterminal contractile vacuole (arrow). (B) Ventral view (from Kahl 1926). (C) Right lateral view showing the transverse row of cilia (arrows). (D) Ciliature of oral region. (E, F) Ventral and dorsal views of type specimen. CC, caudal cilium; M1–3, membranelles 1–3; Ma, macronucleus; Mi, micronucleus; PK, postoral kineties; PM, paroral membrane; Sc, scutica; SK, somatic kineties; SK1, first somatic kinety on right margin of buccal cavity; SKn, first somatic kinety on left margin of buccal cavity. Scale bars: 25 µm.
Fig. 4 in Redescription of Dexiotricha colpidiopsis (Kahl, 1926) Jankowski, 1964 (Ciliophora, Oligohymenophorea) from a Hot Spring in Iceland with Identification Key for Dexiotricha species
Fig. 4. Phylogenetic tree inferred by Maximum-likelihood (ML) analyses of the small SSU rRNA gene sequences. The new sequence is highlighted in bold. Numbers at the nodes are the bootstrap values of the ML and BI analyses, respectively. The mark "-" indicates discrepancies in the topologies of the ML and BI trees; thus, only the values of ML are shown in these cases. The scale bar corresponds to 5 substitutions per 100 nucleotide positions.
Fig. 3 in Redescription of Dexiotricha colpidiopsis (Kahl, 1926) Jankowski, 1964 (Ciliophora, Oligohymenophorea) from a Hot Spring in Iceland with Identification Key for Dexiotricha species
Fig. 3. Photomicrographs of Dexiotricha colpidiopsis from live (A–D; A with bright field illumination, C–D with differential interference contrast microscopy), after dry silver nitrate staining (E), and after protargol-impregnation (F–I). (A, B) Ventrolateral views showing the subterminal contractile vacuole (arrows) and the caudal cilium (arrowhead). (C) Right lateral view showing the transverse row of cilia (arrows). (D) Slightly compressed specimens showing the subterminal contractile vacuole (arrows). (E) Showing the position of the contractile vacuole pore (arrow). (F, G) Ventral and dorsal views of the type specimen. (H, I) Right and left lateral views. M1–3, membranelles 1–3; Ma, macronucleus; Mi, micronucleus; PK, postoral kinety, PM, paroral membrane. Scale bars: 25 µm.
Fig. 2 in Too hot to move: temperatures during transportation might reduce the survival of salvinia weevils (Coleoptera: Curculionidae)
Fig. 2. Bivariate analysis of air temperature and temperature experienced inside transportation totes for Cyrtobagous salviniae (a) with 1.3 cm circulation holes in modified fitted lids (n = 80), and (b) conventional lids without circulation holes (P ≤ 0.05; n = 80) in May 2016.
Fig. 3 in Too hot to move: temperatures during transportation might reduce the survival of salvinia weevils (Coleoptera: Curculionidae)
Fig. 3. Percent mortality of Cyrtobagous salviniae exposed to 4 temperatures in environmental growth chambers: (a) 35 °C, (b) 40 °C, (c) 45 °C, and (d) 50 °C.
Fig. 1 in Antixenotic and allelochemical resistance traits of watermelon against Bactrocera cucurbitae in a hot arid region of India
Fig. 1. Associations of major antixenotic and allelochemical fruit traits of watermelon with resistance to the melon fly evaluated by percentage fruit infestation under different infestation categories.
Data for: TOI-1685 b is a Hot Rocky Super-Earth (Burt et al. 2024)
<p>Machine Readable Tables containing the time series photometry and radial velocity data used in Burt et al. 2024 paper 'TOI-1685 b is a Hot Rocky Super-Earth: Updates to the Stellar and Planet Parameters of a Popular JWST Cycle 2 Target'</p> <p>Notes (also in ReadMe Document) </p> <p>TOI1685_Full_TimeSeries_Photometry_DataSet.dat : the juliet light curve input file for the transit fit presented in the paper.</p> <p>The nine columns in the file correspond to, Time (BJD_TDB), Normalized flux, Normalized flux error, Dataset label, Airmass, Centroid X offset, Centroid Y offset, PSF full-width half-maximum (FWHM) and PSF peak brightness. As these are not used to model the TESS light curves, these values are blank for the TESS data. For the MuSCAT2 data, entropy (a proxy for the PSF FWHM) is used in place of PSF FWHM, and PSF peak brightness is not used at set to 0. For the OMM data, total background across the target and comparison stars is used in place of PSF peak brightness. All values in the final five columns are normalized between -1 and 1 for any given dataset. </p> <p>~~~~~~~~~~~~~</p> <p>TOI1685_Full_RV_DataSet.csv : The full data sets from the MAROON-X data presented in this paper, as well as the CARMENES data from Bluhm et al. 2021 and the IRD data from Hirano et al. 2021. </p> <p>The fit presented in the paper only makes use of the RV time series from each instrument, but the SERVAL results for MAROON-X and CARMENES also provide a variety of activity indicators which we include as additional columns here for completeness.</p>
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.