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67 results for “vigor”
Products for "A warm Neptune's methane reveals core mass and vigorous atmospheric mixing"
<p>Data for Figures 1, 2, and 3 from the paper entitled "A warm Neptune’s methane reveals core mass and vigorous atmospheric mixing".</p> <p>Authors: David K. Sing, Zafar Rustamkulov, Daniel P. Thorngren, Joanna K. Barstow, Pascal Tremblin, Catarina Alves de Oliveira, Tracy L. Beck, Stephan M. Birkmann, Ryan C. Challener, Nicolas Crouzet, Nestor Espinoza, Pierre Ferruit, Giovanna Giardino, Amelie Gressier, Elspeth K. H. Lee, Nikole K. Lewis, Roberto Maiolino, Elena Manjavacas, Bernard J. Rauscher, Marco Sirianni and Jeff A. Valent</p>
Figure 2 in Nest refuse of Acromyrmex balzani (Hymenoptera: Formicidae) increases the plant vigor in Turnera subulata (Turneraceae)
Figure 2. Boxplot of attributes evaluated in T. subulata plants after thirty days between two treatments: (a) stem diameter (mm); (b) root length (cm); (c) plant height (cm), (d) the number of leaves, (e) dry aboveground biomass (g) and (f) fresh aboveground biomass (g). Horizontal lines inside each box indicate the median.
Figure 1 in Nest refuse of Acromyrmex balzani (Hymenoptera: Formicidae) increases the plant vigor in Turnera subulata (Turneraceae)
Figure 1. Detail of the studied species. (a) Turnera subulata in the study area; (b) nest mound of Acromyrmex balzani with a nest refuse pile on the right and the colony entrance, characterized by three small straw holes (left).
Figure 2 in First photographic evidence of Asian Golden Cat Catopuma temminckii (Vigors and Horsfield, 1827) from Neora valley National Park, Central Himalayas, India
Figure 2. Camera Trap photograph of Asian golden cat (Catopuma temminckii Vigors & Horsfield, 1827) captured in Neora Valley National Park, West Bengal, India.
Figure 1 in First photographic evidence of Asian Golden Cat Catopuma temminckii (Vigors and Horsfield, 1827) from Neora valley National Park, Central Himalayas, India
Figure 1. The distribution of Asian Golden Cat according to the IUCN Redlist database and the photo-capture site of the species from the present study at Neora Valley National Park, West Bengal, India.
Assessing hybrid vigor using the thermal sensitivity of physiological trade-offs in tiger salamanders
<ol> <li>Hybridization between species affects biodiversity and population sustainability in numerous ways, many of which depend on the fitness of the hybrid relative to the parental species. Hybrids can exhibit fitter phenotypes compared to the parental lineages, and this 'hybrid vigor' can then lead to the extinction of one or both parental lines.</li> <li>In this study, we analyzed the relationship between water loss and gas exchange to compare physiological performance among three tiger salamander genotypes – the native California tiger salamander (CTS), the invasive barred tiger salamanders (BTS), and CTS x BTS hybrids across multiple temperatures (13.5°C, 20.5°C, and 23.5°C). We developed a new index of performance, the water-gas exchange ratio (WGER), which we define as the ratio of gas exchange to evaporative water loss (µL VO<sub>2</sub>/µL H<sub>2</sub>O). The ratio describes the ability of an organism to support energetically costly activities with high levels of gas exchange while simultaneously limiting water loss to lower desiccation risk. We used flow-through respirometry to measure the thermal sensitivity of metabolic rate and resistance to water loss of each salamander genotype to compare indices of physiological performance.</li> <li>We found that temperature had a significant effect on metabolic rate and resistance to water loss, with both traits increasing as temperatures warmed. Across genotypes, we found that hybrids have a higher WGER than the native CTS, owing to a higher metabolic rate despite having a lower resistance to water loss.</li> <li>These results provide greater insight into the physiological mechanisms driving hybrid vigor and offer a potential explanation for the rapid spread of salamander hybrids. More broadly, our introduction of the WGER may allow for species- or lineage-wide comparisons of physiological performance across changing environmental conditions, highlighting the insight that can be gleaned from multi-trait analysis of organism performance.</li> </ol>
Assessing hybrid vigor using the thermal sensitivity of physiological trade-offs in tiger salamanders
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Eglise Saint-Vigor - Asnieres-en-Bessin
1 hour capture with DJI Mavic mini + Sigma dp0. Reconstruction with Reality Capture. Unedited. Source: Objaverse 1.0 / Sketchfab
An omnivore vigor hypothesis? Nutrient availability strengthens herbivore suppression by omnivores across 48 field sites
<ol> <li>Nutrients regulate herbivore growth from the 'bottom-up' via improved plant vigor and food quality. Nitrogen also affects 'top-down' control of herbivores by moderating attraction of predators and the rates at which they consume herbivorous prey.</li> <li>Tri-trophic consequences of nitrogen availability are more challenging to predict among omnivorous natural enemies who feed on both plants and herbivores, limiting our ability to predict net outcomes of nutrient availability in food webs.</li> <li>In a two-year field survey of insects on zucchini host plants at 48 sites, I predicted that both herbivores and foliar-feeding omnivores would increase with nutrient availability, while predators would not.</li> <li>My results revealed positive relationships between omnivores and foliar nitrogen concentrations, while predators had neutral responses to foliar N. Surprisingly, herbivores declined with increasing foliar N across the field sites.</li> <li>Greenhouse experiments reinforced these patterns, as herbivore growth inversely correlated with soil N concentrations in communities that included foliar-feeding omnivores. Conversely, herbivore growth was uncorrelated with soil N on plants with generalist predators, nor on predator-free plants.</li> <li>These results suggest that omnivores mount strong and consistent responses to nitrogen in plant tissues in a variety of ecological contexts. In environments where omnivorous arthropods can thrive, their recruitment to nitrogen-rich plants may increase predation and thereby counterbalance and stabilize 'bottom-up' increases in herbivore performance supported by enhanced foliar nutrition.</li> </ol>
Umbilical Cord Milking in Non-Vigorous Infants
ClinicalTrials.gov study NCT03631940. IPD Sharing: Not stated. Countries: 3. Publications: 1.
Echocardiography Sub-Study of the Umbilical Cord Milking in Non-Vigorous Infants Trial (MINVI)
ClinicalTrials.gov study NCT03798093. IPD Sharing: NO. Countries: 1. Publications: 1.
The VIGOR Study - Virtual Immersive Gaming to Optimize Recovery in Low Back Pain
ClinicalTrials.gov study NCT03463824. IPD Sharing: NO. Countries: 1. Publications: 1.
An omnivore vigor hypothesis? Nutrient availability strengthens herbivore suppression by omnivores across 48 field sites
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Data from: Landscape diversity and crop vigor influence biological control of the western grape leafhopper (E. elegantula Osborn) in vineyards
This study evaluated how the proportional area of natural habitat surrounding a vineyard (i.e. landscape diversity) worked in conjunction with crop vigor, cultivar and rootstock selection to influence biological control of the western grape leafhopper (Erythroneura elegantula Osborn). The key natural enemies of E. elegantula are Anagrus erythroneurae S. Trjapitzin & Chiappini and A. daanei Triapitsyn, both of which are likely impacted by changes in landscape diversity due to their reliance on non-crop habitat to successfully overwinter. Additionally, E. elegantula is sensitive to changes in host plant quality which may influence densities on specific cultivars, rootstocks and/or vines with increased vigor. From 2010–2013, data were collected on natural enemy and leafhopper densities, pest parasitism rates and vine vigor from multiple vineyards that represented a continuum of landscape diversity. Early in the season, vineyards in more diverse landscapes had higher Anagrus spp. densities and lower E. elegantula densities, which led to increased parasitism of E. elegantula. Although late season densities of E. elegantula tended to be lower in vineyards with higher early season parasitism rates and lower total petiole nitrogen content, they were also affected by rootstock and cultivar. While diverse landscapes can support higher natural enemy populations, which can lead to increased biological control, leafhopper densities also appear to be mediated by cultivar, rootstock and vine vigor.
Saint Vigor Marly le Roi (rendu partiel)
L'eglise Saint Vigor partiellement restituer par photogrammétrie. Source: Objaverse 1.0 / Sketchfab
Subspecies and Distribution. C. t. temminckii Vigors & Horsfield, 1827 — Sub-Himalayan region from Nepal, India and Bhutan S to Malaysia and Sumatra. C. t. dominicanorum Sclater, 1898 — S China. C. t. tnistis Milne-Edwards, 1872 — highlands of SW China. in Felidae
Subspecies and Distribution. C. t. temminckii Vigors & Horsfield, 1827 — Sub-Himalayan region from Nepal, India and Bhutan S to Malaysia and Sumatra. C. t. dominicanorum Sclater, 1898 — S China. C. t. tnistis Milne-Edwards, 1872 — highlands of SW China.
Data and code for Seeley and Wordsworth, "Moist convection is most vigorous at intermediate atmospheric humidity"
<p>Data and code for Seeley and Wordsworth, "Moist convection is most vigorous at intermediate atmospheric humidity"</p>
The Vitality, Independence, and Vigor in Elders Study I Clinical Trial
ClinicalTrials.gov study NCT01198886. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Vigorous Exercise for Depressed Smokers
ClinicalTrials.gov study NCT01860924. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Moderate-to-Vigorous Intensity Physical Activity and Severe Mental Illness
ClinicalTrials.gov study NCT06338917. IPD Sharing: YES. Countries: 1. Publications: 54.
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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)
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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.