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Dataset results
20 results for “stated preference”
Dataset on adult preferences toward EQ-5D-Y health states in Slovenia
<p>The dataset includes preferences of adults in Slovenia toward EQ-5D-Y health states in Slovenia, taking on a perspective of a 10-year old child. The preferences were collected using a discrete-choice experiment. The additional file presents the DCE design and variables descriptions.</p>
Dataset on preferences of rheumatic patients towards EQ-5D-5L health states in Germany
<p>The dataset includes preferences of rheumatic patients towards EQ-5D-5L health states in Germany, adjacent codebooks.</p>
Dataset on preferences of patients with diabetes towards EQ-5D-5L health states in Germany
<p>The dataset includes data on preferences of patients with diabetes toward EQ-5D-5L health states in Germany and adjacent codebooks. </p>
Dataset on adult preferences toward EQ-5D-Y health states in Germany
<p>The dataset include adult preferences towards EQ-5D-Y health states in Germany and adjacent codebook.</p>
Dataset on preferences of rheumatic patients preferences towards EQ-5D-5L health states in Spain
<p>The dataset includes preferences of rheumatic patients towards EQ-5D-5L health states in Spain.</p>
Frustration Between Preferred States of Complementary Trinucleotide Repeat DNA Hairpins Anticorrelates with Expansion Disease Propensity
<p>The expansion of DNA trinucleotide repeats (TRs) beyond a threshold often results in neurodegenerative diseases in humans. The mechanisms causing these expansions remain unknown, although the tendency of TR ssDNA to self-associate into hairpins that slip along their length is widely presumed to be related. Here we apply single molecule FRET (smFRET) experiments and molecular dynamics simulations to determine conformational stabilities and slipping dynamics for CAG, CTG, GAC, and GTC hairpins. By developing novel analysis approaches for states with closely spaced FRET efficiencies along with improved transition detection algorithms, we determined the kinetic slipping schemes for these hairpins. Tetraloops are favored in CAG (89%), CTG (89%) and GTC (69%) while GAC favors triloops. We also determined that TTG interrupts near the loop in the CTG hairpin stabilize the hairpin against slipping (as do CAA substitutions in CAG hairpins). The different loop stabilities have implications for intermediate structures that may form when TR-containing duplex DNA opens. Opposing hairpins in the (CAG) ∙ (CTG) duplex would have matched stability whereas opposing hairpins in a (GAC) ∙ (GTC) duplex would have unmatched stability. This unmatched stability would introduce mechanical stress or frustration in the (GAC) ∙ (GTC) opposing hairpins that would be absent in (CAG) ∙ (CTG) structures. Given the biological observation that the CAG and CTG TR can undergo large, disease-related expansion whereas the GAC and GTC sequences do not, the mechanical stability differences we have identified can inform and constrain models of the expansion mechanisms of TR regions.</p>
Frustration Between Preferred States of Complementary Trinucleotide Repeat DNA Hairpins Anticorrelates with Expansion Disease Propensity
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Dataset on adult preferences toward EQ-5D-Y health states in Spain
<p>The dataset includes data on adult preferences toward EQ-5D-Y health states. </p>
Dataset on preferences of patients with diabetes towards EQ-5D-5L health states in Spain
<p>The dataset includes data of patients with diabetes preferences toward EQ-5D-5L health states.</p>
Data from: Bed bug preferences for host odor or aggregation odor are differentially modulated by physiological state in various odorscapes
Open the record for dataset details and reuse information.
Exotic pet owners' preferences for different ectothermic taxa is based on species traits and purchase price in the United States
<p>Data set that supports the publication Pienaar, E.F., Sturgeon, D.J.E. (2024) Exotic pet owners’ preferences for different ectothermic taxa is based on species traits and purchase price in the United States. <em>Neobiota</em>, <span>91: 1-27</span>.</p>
Supplementary material 1 from: Zembrzuski D, Woller DA, Jech L, Black LR, Reuter KC, Overson R, Cease A (2021) Establishing the nutritional landscape and macronutrient preferences of a major United States rangeland pest, Melanoplus sanguinipes, in field and lab populations. Journal of Orthoptera Research 30(2): 163-172. https://doi.org/10.3897/jor.30.61605
Supplementary material 1 from: Zembrzuski D, Woller DA, Jech L, Black LR, Reuter KC, Overson R, Cease A (2021) Establishing the nutritional landscape and macronutrient preferences of a major United States rangeland pest, Melanoplus sanguinipes, in field and lab populations. Journal of Orthoptera Research 30(2): 163-172. https://doi.org/10.3897/jor.30.61605
Fig. 2 in Carabid Beetle (Coleoptera: Carabidae) Abundance and Habitat Preference in Northeastern São Paulo State, Brazil
Fig. 2. Perceptual map of correspondence analysis showing carabid species occurrence in the forest fragment (traps along transect 10–100 m inside the fragment), at the edge (traps along transect of 1–4 m), and in the crop (traps along transect 10–100 m inside the crop). Carabid species names are abbreviated with the first three letters of their genus and first four letters of the species epithet (see Table 1 for complete species names). Small circle represents the location of carabid species; large circle, square, and plus sign indicate the location of traps in edge, forest fragment and crop, respectively.
Fig. 1 in Carabid Beetle (Coleoptera: Carabidae) Abundance and Habitat Preference in Northeastern São Paulo State, Brazil
Fig. 1. Dendrogram of hierarchical cluster analysis identifying groups of similar carabid species according to abundance in the forest fragment, in the edge, and in the crop. Carabid species names are abbreviated with the first three letters of their genus and first four letters of the species epithet (see Table 1 for complete species names).
Supplementary material 1 from: Pienaar EF, Sturgeon DJE (2024) Exotic pet owners' preferences for different ectothermic taxa are based on species traits and purchase prices in the United States. NeoBiota 91: 1-27. https://doi.org/10.3897/neobiota.91.109403
Additional results for reference by readers and the reviewers
Figure 3 from: Zembrzuski D, Woller DA, Jech L, Black LR, Reuter KC, Overson R, Cease A (2021) Establishing the nutritional landscape and macronutrient preferences of a major United States rangeland pest, Melanoplus sanguinipes, in field and lab populations. Journal of Orthoptera Research 30(2): 163-172. https://doi.org/10.3897/jor.30.61605
Figure 3 Performance experiments. Survival and specific growth rates of grasshoppers from the long-term lab colony no-choice diet experiments. A. The specific growth rates for each diet treatment. Diamonds indicate the mean and bolded lines indicate the median. Boxes are +/- 25%, lines represent minimum and maximum values excluding extreme values, and dots indicate data points > 1.5 farther from the box edge than the interquartile range. Lower case letters indicate differences from Mann-Whitney post-hoc analyses. B. The proportion of grasshoppers surviving through time on each diet treatment. Most diet treatments did not have individuals die until the 5th day of the experiment, and most treatments except 7p:35c had minimal deaths (although there were no significant differences among treatments). C. Proportion of grasshoppers molting to adults over time. Most of the diets saw increases in molting from days 5–7, except diet treatment 7p:35c, which was delayed and had the least number of grasshoppers successfully molt (significantly different from all other treatments).
Figure 2 from: Zembrzuski D, Woller DA, Jech L, Black LR, Reuter KC, Overson R, Cease A (2021) Establishing the nutritional landscape and macronutrient preferences of a major United States rangeland pest, Melanoplus sanguinipes, in field and lab populations. Journal of Orthoptera Research 30(2): 163-172. https://doi.org/10.3897/jor.30.61605
Figure 2 Field IT compared to nutritional landscape. A, B. Grasshopper intake targets of the field populations (black solid line) alongside the nutrient contents of grasses (triangles) and forbs (circles) collected from the same fields. The grey solid line represents the intake target from the other field population. The dotted line represents a 1p:1c ratio. C, D. The average Euclidean distance between the plants (triangles and circles in A and B) and either the grasshopper IT from each location or the 1p:1c line. * denotes a significant difference between the Euclidean distances calculated from the IT and the 1p:1c line.
Figure 1 from: Zembrzuski D, Woller DA, Jech L, Black LR, Reuter KC, Overson R, Cease A (2021) Establishing the nutritional landscape and macronutrient preferences of a major United States rangeland pest, Melanoplus sanguinipes, in field and lab populations. Journal of Orthoptera Research 30(2): 163-172. https://doi.org/10.3897/jor.30.61605
Figure 1 Field populations and lab population ITs. Average intake target (+/- SEM) for two field populations, Bliss and Boise, ID, and the lab colony. The dashed line represents a 1:1 ratio of protein and carbohydrates, and the crosses on the data points represent SE.
Stated-Preferences in Knee Arthroplasty
ClinicalTrials.gov study NCT03058380. IPD Sharing: NO. Countries: 1. Publications: 0.
Figure 2. Prey preference and stomach content states. a in Life is uncertainı eat dessert first: feeding ecology and prey-predator interactions of the coffee snake Ninia atrata
Figure 2. Prey preference and stomach content states. a) Percentage of prey-items in the stomach content and available in the environment. b) stomach contents categories.
ScienceDex guides
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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.