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980 results for “Coping”
Data from: Coping with the cold: energy storage strategies for surviving winter in freshwater fish
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Data from: Can newts cope with the heat? Disparate thermoregulatory strategies of two sympatric species in water
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High-speed terrestrial substrate transitions: how a fleeing cursorial day gecko copes with compliance changes that are experienced in nature
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Coping with impostor feelings: evidence-based recommendations from a mixed methods study
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BCL6 enables leukemia cells to cope with inhibition of oncogenic tyrosine kinases
GEO Series GSE24426. Homo sapiens. 21 samples. Type: Expression profiling by array; Genome binding/occupancy profiling by genome tiling array.
A Crop Plant Integrates and Coordinates its Defenses to Cope with the Attack by Begomovirus and Whitefly
GEO Series GSE29812. Nicotiana tabacum. 4 samples. Type: Expression profiling by high throughput sequencing.
Transcriptomics of coping strategies in free-swimming Lepeophtheirus salmonis (Copepoda)
GEO Series GSE37976. Lepeophtheirus salmonis. 78 samples. Type: Expression profiling by array.
DAF-16 stabilizes the aging transcriptome and is activated in mid-aged C. elegans to cope with internal stress
GEO Series GSE122892. Caenorhabditis elegans. 42 samples. Type: Expression profiling by high throughput sequencing.
Using individual coping styles to explain within-population variation in adaptive gene expression
GEO Series GSE40615. Danio rerio. 30 samples. Type: Expression profiling by array.
Microglia renewal in old mice enhances the cellular fitness to cope with stroke
GEO Series GSE196737. Mus musculus. 23 samples. Type: Expression profiling by high throughput sequencing.
Data from: Morphological and digestive adjustments buffer performance: how staging shorebirds cope with severe food declines
Organisms cope with environmental stressors by behavioral, morphological, and physiological adjustments. Documentation of such adjustments in the wild provides information on the response space in nature and the extent to which behavioral and bodily adjustments lead to appropriate performance effects. Here we studied the morphological and digestive adjustments in a staging population of migrating Great Knots Calidris tenuirostris in response to stark declines in food abundance and quality at the Yalu Jiang estuarine wetland (northern Yellow Sea, China). At Yalu Jiang, from 2011 to 2017 the densities of intertidal mollusks, the food of Great Knots, declined 15‐fold. The staple prey of Great Knots shifted from the relatively soft‐shelled bivalve Potamocorbula laevis in 2011–2012 to harder‐shelled mollusks such as the gastropod Umbonium thomasi in 2016–2017. The crushing of the mollusks in the gizzard would require a threefold to 11‐fold increase in break force. This was partially resolved by a 15% increase in gizzard mass which would yield a 32% increase in shell processing capacity. The consumption of harder‐shelled mollusks was also accompanied by reliance on regurgitates to excrete unbreakable parts of prey, rather than the usual intestinal voidance of shell fragments as feces. Despite the changes in digestive morphology and strategy, there was still an 85% reduction in intake rate in 2016–2017 compared with 2011–2012. With these morphological and digestive adjustments, the Great Knots remaining faithful to the staging site to a certain extent buffered the disadvantageous effects of dramatic food declines. However, compensation was not complete. Locally, birds will have had to extend foraging time and use a greater daily foraging range. This study offers a perspective on how individual animals may mitigate the effects of environmental change by morphological and digestive strategies and the limits to the response space of long‐distance migrating shorebirds in the wild.
Figure 13 from: Niemiller ML, Cannizzaro AG, Sawicki TR, Culver DC (2024) A new species of Stygobromus Cope, 1872 (Amphipoda, Crangonyctidae) from a hypotelminorheic seepage spring in Washington, D.C., USA. Subterranean Biology 48: 117-146. https://doi.org/10.3897/subtbiol.48.112984
Figure 13 Median joining networks for nuclear loci (18s, 28s, and h3) generated in PopART v1.7.
Figure 4 from: Shorter PL, Hennen DA, Marek PE (2018) Cryptic diversity in Andrognathus corticarius Cope, 1869 and description of a new Andrognathus species from New Mexico (Diplopoda, Platydesmida, Andrognathidae). ZooKeys 786: 19-41. https://doi.org/10.3897/zookeys.786.27631
Figure 4 Andrognathuscorticarius head and anterior body rings, ventral view. Scale bar: 0.3 mm.
Seasonal changes in coral thermal threshold suggest species-specific strategies for coping with temperature variations
<p>Data and R code for the paper:</p> <p>“Seasonal changes in coral thermal threshold suggest species-specific strategies for coping with temperature variations” </p> <p>Composed of three data sets:</p> <p>-Dataset1.csv</p> <p>-Dataset2.csv</p> <p>-GenoCoeffs.csv</p> <p> </p> <p>Thermal response of Acropora spp. and Pocillopora verrucosa using photosynthetic efficiency (Fv/Fm) values measured in situ</p> <p>————————————————————————————————————————————————</p> <p>CSV contains data measured in situ in Al Fahal reef used to create Figure 1. It includes 7 columns</p> <p>- ID_Experimen: Id assigned to each field experiment included in the study. </p> <p>-Species: ID of the two species included in the study Acropora spp. and P. verrucosa</p> <p>- Replicate: Biological replicates associated with each experiment and sampling time.</p> <p>- Fv.Fm: Photosynthetic efficiency measured in situ using diving PAM.</p> <p>-SamplingTime: ID of the sampling time associated to each experiment.</p> <p>-Date: Date of the field experiment</p> <p>-EnvT: In situ seawater temperature (daily average) the date of the field experiment.</p> <p> </p> <p>Performance data collected during the CBASS experiment for Acropora spp. and Pocillopora verrucosa </p> <p>————————————————————————————————————————————————</p> <p>CSV contains data measured during the CBASS experiment in tanks used to create Figures 2 and 3 and Table 1.</p> <p>-ID_Experiment: ID assigned to each field experiment included in the study. </p> <p>-Species: ID of the two species included in the study Acropora spp. and P. verrucosa</p> <p>-Sample Name: ID of each coral fragment placed in the tank</p> <p>-Site: ID of the colonies treatment if any. All coral colonies were non-treated</p> <p>-Tank: Tank ID</p> <p>-Temp: Assay temperature of each tank</p> <p>-Geno: Biological replicate</p> <p>-PAM: Fv/Fm values measured after the experiment in the tanks using a diving PAM</p> <p>-SamplingTime: ID of the sampling time associated with each experiment.</p> <p>-Date: Date of the experiment</p> <p>-EnvT: In situ seawater temperature (daily average) the date of the field experiment.</p> <p> </p> <p>Dataset combining thermal thresholds and environmental data to fit lmer models.</p> <p>———————————————————————————————————————————————</p> <p>CSV contains data to fit LMER models using experimentally derived ED50 thermal thresholds and in situ data.</p> <p>-ED50: Thermal thresholds estimated by fitting DRC</p> <p>-Site: ID of the experiment and sampling time</p> <p>-Replicate: Biological replicates</p> <p>-EnvT: In situ seawater temperature (daily average) the date of the field experiment.</p> <p>-FvFm_Field: Photosynthetic efficiency measured in situ using diving PAM.</p> <p>-Species: ID of the two species included in the study Acropora spp. and P. verrucosa</p>
Fig. 8 in Redescription of the type species of Odontostilbe Cope, 1870 (Teleostei: Characidae: Cheirodontinae), and description of three new species from the Amazon basin
Fig. 8. Holotype of Odontostilbe caquetae, ANSP 70495, unsexed 28.0 mm SL.
The effect of Computer Assisted Rehabilitation Environment (CAREN) in cognitive impairment and coping strategies in Parkinson's disease: a preliminary study
<p>Parkinson's disease is a neurodegenerative disorder characterized by different motor, vegetative, behavioral, and cognitive impairments, with worsening quality of life. Virtual reality devices have given promising results in neurorehabilitation as they can provide multisensory stimulation in a realistic environment. This study aims to test the efficacy of virtual reality training by using Computer Assisted Rehabilitation Environment in cognitive impairment in a sample of PD. 31 patients affected by PD were enrolled. All PD patients underwent 24 sessions of Computer Assisted Rehabilitation Environment training. The participants were assessed at baseline (T0) and after two months (T1). Our results suggested that Computer Assisted Rehabilitation Environment training may be effective in the cognitive and emotional domains, particularly by improving executive function, anxiety, and depressive symptoms. These changes have helped to improve self-efficacy and coping strategies. These results indicate greater cognitive and physical effort to overcome stressors. Our results show that Computer Assisted Rehabilitation Environment training was beneficial in improving cognitive functions. Longer duration training may be especially beneficial for patients with mild cognitive impairment. Our findings open the door to tailored personalized treatments based on the patient's motor and cognitive profiles.</p>
Dataset of the Distress Screening Scale for the article: Emotional distress, coping, and social support: A network analysis of risk and resources in persons with cancer
<p>Dataset of the Distress Screening System comprises 52 items that relate to six psycho-social domains of human functioning: depression, anxiety, social support, coping efficacy, satisfaction with care, and functional status</p>
A Feasibility Trial of an Enhanced Coping-oriented Supportive Programme for Community-dwelling People With Spinal Cord Injury
ClinicalTrials.gov study NCT07170969. IPD Sharing: NO. Countries: 1. Publications: 0.
CEDARS Intervention: A Coping, Emotional Development, & Stress Reduction Intervention
ClinicalTrials.gov study NCT04958694. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
Virtual Reality and Coping with Procedural Pain in Burn Patients
ClinicalTrials.gov study NCT06596837. IPD Sharing: YES. Countries: 1. Publications: 0.
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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.