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136 results for “temperature-dependence”
Raw data from "On the lineshapes of temperature-dependent transport measurements of superconductors under pressure"
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Experimental and Simulation data for the molecular mechanism of temperature-dependent phase separation of HSF1
<p>1. lmp_datatfile</p> <p>The documents contain the LAMMPS input datafiles of initial configuration used to run all simulations, including single chain, trimer(LZ1-3-RD), and RD systems.</p> <p>2.Experimental data.</p> <p>The documents contain original ucsf data</p>
Temperature-dependent sleep patterns in Drosophila
<p>The data generated in the study: Sanjay Ramnarayan Yadav, Martina Gáliková, and Peter Klepsatel: Temperature-dependent sleep patterns in <em>Drosophila</em></p>
Figure 3 in Temperature-dependent geographic variation in the flashes of the firefly Luciola cruciata (Coleoptera: Lampyridae)
Figure 3. The relationship between flash types and DNA types. The phylogenic tree was constructed on the basis of mitochondrial DNA studies (Yoshikawa et al. 2001; Suzuki et al. 2002). Notes: The three flash types are shown in Figure 2; in the DNA types, II-i, II-ii, and I-ii denote Suzuki et al.'s (2002) classification, and II, II-a, and I-b denote Yoshikawa et al.'s (2001) classification.
Figure 2 in Temperature-dependent geographic variation in the flashes of the firefly Luciola cruciata (Coleoptera: Lampyridae)
Figure 2. Linear regressions of interflash intervals on ambient air temperatures at the five study sites. Notes: Mean interflash intervals and their standard errors are given; however, the standard errors at Shimobe, Kofu, Chino, and Matsuo-kyo were too small (<0.06) to be shown.
Figure 1 in Temperature-dependent geographic variation in the flashes of the firefly Luciola cruciata (Coleoptera: Lampyridae)
Figure 1. Locations of the five study sites, Tomioka, Chino, Matsuo-kyo, Kofu, and Shimobe in central Japan. For reference, the location of Tokyo, the capital of Japan, is also shown.
Supplementary Table S1 from "Temperature-Dependent Estimation of Gibbs Energies Using an Updated Group-Contribution Method"
<p>Supplementary Table S1 containing reaction and compound thermodynamic data used for making temperature and ion concentration corrections to thermodynamic estimates for aqueous biochemical reactions.</p>
Temperature-dependent feeding behavior in the brown box crab
<p>Growing fishing pressures and ocean warming are potential concerns for populations of brown box crabs, <em>Lopholithodes</em> <em>foraminatus</em>, at the southern end of their geographic distribution. In Southern California, brown box crabs are thought to occupy a broad depth gradient (intertidal zone – 547 m), which exposes them to temperatures ranging from 8℃–24°C. This large temperature span presents challenges for these ectothermic animals because the rates of their physiological processes, and ultimately their dietary needs, behavior, and health, vary with temperature. Here we examined how temperature affects the feeding behavior of brown box crabs to better understand their ecology in warmer regions of their distribution. Adult crabs were exposed to one of three temperature treatments (8℃, 15°C, and 20℃, N=10) for 2 months. Weekly throughout the exposure period, crabs were given two similar-sized prey items of different crushing strength (clam and mussel). Claw pinch force, prey preference, time to consume prey, and number of prey consumed were recorded prior to the start of the experiment and weekly for the duration of the study, with the exception of pinch force, which was recorded bi-weekly. We hypothesized that crabs will have a stronger pinch force at warmer temperatures, prefer prey items that require less breaking force at the coldest temperature, consume prey faster at warmer temperatures, and consume more prey at warmer temperatures. Our results confirm that pinch force is consistently greater at 15°C compared to 8°C, however, crabs at 8°C consumed more clams (higher strength) while those at 15°C consumed more mussels. Crabs at 8°C also consumed prey items faster than crabs at 15°C but ate a similar number of prey. Furthermore, there was 100% mortality at 20℃ within 8 days of exposure, indicating their proximity to lethal limits within Southern California. These results show that brown box crab feeding behavior exhibits temperature thresholds, which may alter their nutritional state, community interactions, and distribution under both short-term and long-term changes in ocean temperature.</p>
Data from: Quantitative genetic variation in, and environmental effects on, pathogen resistance and temperature-dependent disease severity in a wild trout
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Temperature-dependent effects of sea-louse infestation on juvenile Atlantic salmon
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Data from: Temperature-dependent species interactions shape priority effects and the persistence of unequal competitors
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Data from: Trait-based scaling of temperature-dependent foliar respiration in a species-rich tropical forest canopy
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Data from: Seasonality and temperature-dependent flight dispersal of Triatoma infestans (Hemiptera: Reduviidae) and other vectors of Chagas disease in western Argentina
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Data from: Temperature-dependent growth and fission rate plasticity drive seasonal and geographic changes in body size in a clonal sea anemone
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Data from: Temperature-dependent oxygen limitation and the rise of Bergmann’s Rule in species with aquatic respiration
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Temperature-dependent competitive outcomes between the fruit flies Drosophila santomea and D. yakuba
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Data from: Conservation of sex-linked markers among conspecific populations of a viviparous skink, Niveoscincus ocellatus, exhibiting genetic and temperature-dependent sex determination
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Data from: Stay tuned: active amplification tunes tree-cricket ears to track temperature-dependent song frequency
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Temperature-dependent feeding behavior in the brown box crab
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Data from: Modeling the effects of climate-change induced shifts in reproductive phenology on temperature-dependent traits
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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.
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.