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Dataset results
16 results for “Key Recovery”
MCR LTER: Coral Reef: Dead coral skeletons impair key recovery processes following coral bleaching; data for Kopecky et al., 2024 Global Change Biology
The data included in this data package were collected on the North shore of Moorea, French Polynesia, from 2015-2023 to explore how dead coral skeletons (e.g,, left after coral bleaching events) influence critical processes tied to coral reef resilience. Together, these various datasets were used for analyses in the manuscript entitled "Changing disturbance regimes, material legacies, and stabilizing feedbacks: dead coral skeletons impair key recovery processes following coral bleaching", published in Global Change Biology. These data are in support of a publication Kopecky et al. (2024) Global Change Biology, and were a part of the thesis of K. Kopecky. The manuscript title and author list are as follows: Changing disturbance regimes, material legacies, and stabilizing feedbacks: dead coral skeletons impair key recovery processes following coral bleaching. Kai Kopecky, Russell J. Schmitt, Sally J. Holbrook. This material is based upon work supported by the U.S. National Science Foundation under Grant No. OCE 22-24354 (and earlier awards) as well as a generous gift from the Gordon and Betty Moore Foundation. Research was completed under permits issued by the French Polynesian Government (Délégation à la Recherche) and the Haut-commissariat de la République en Polynésie Francaise (DTRT) (Protocole d'Accueil 2005-2024). This work represents a contribution of the Moorea Coral Reef (MCR) LTER Site.
BIKE Key-Recovery: Combining Power Consumption Analysis and Information-Set Decoding
<p>Data used in the paper: "BIKE Key-Recovery: Combining Power Consumption Analysis and Information-Set Decoding". The paper has been accepted at <a href="https://sulab-sever.u-aizu.ac.jp/ACNS2023/">ACNS-2023</a>.</p> <p>The available dataset contains a file with a few power consumption curves taken from a Cortex-M4 (STM32F4) on a CW308 board.</p> <p>The file is a numpy array stored using the np.save API.<br> The file can be directly used for running the notebooks provided in the <a href="https://github.com/benoitgerard/sca-bike">publication github</a>.</p>
Fig. 2 in Improvement in Survivorship: The Key for Population Recovery?
Fig. 2. Lateral view of the teeth eruption schedule of O. flavescens pups (extracted from Crespo 1988). Category A: milk and permanent teeth present (mi: milk incisor; mpct: milk postcanine teeth; mct: milk canine teet; pi: permanent incisor h) and the permanent canine teeth (pct) inside the alveolus; Category B: mct, pi and permanent postcanine teeth (ppct) present; Category C: mct are lost and pct remain inside the alveolus; Category D: pct erupt through the gum and become visible.
Fig. 1 in Improvement in Survivorship: The Key for Population Recovery?
Fig. 1. Detailed study area with the current distribution of Otaria flavescens colonies at northern Patagonia
Fig. 4 in Improvement in Survivorship: The Key for Population Recovery?
Fig. 4. Age-frequency distribution of female (n = 70) and male (n = 109) pups by age-class category from northern Patagonia collected between 2000-2008.
Fig. 3 in Improvement in Survivorship: The Key for Population Recovery?
Fig. 3. Age-frequency distribution of female (n = 210) and male (n = 214) South American sea lions from northern Patagonia collected between 2000-2008.
Fig. 6 in Improvement in Survivorship: The Key for Population Recovery?
Fig. 6. Survivorship curves for recent (grey) and past (white) female sea lions. Parameter values for the full model are given in table 5. Age is expressed as proportion of longevity, Ω.
Fig. 5 in Improvement in Survivorship: The Key for Population Recovery?
Fig. 5. Survivorship curves for male (black) and female (grey) sea lions from 2000-2008. Parameter values for the full model are given in table 4. Age is expressed as proportion of longevity, Ω.
Fire severity as a key determinant of aboveground and belowground biological community recovery in managed even-aged boreal forests
<p><span>Changes in fire regime of boreal forests in response to climate warming are expected to impact post-fire recovery. However, quantitative data on how managed forests sustain and recover from recent fire disturbance are limited. </span></p> <p><span>Two years after a large wildfire in managed even-aged boreal forests in Sweden,</span><span> we investigated how recovery of aboveground and belowground communities, i.e., understory vegetation and soil microbial and faunal communities, responded to variation in the severity of soil (i.e., consumption of soil organic matter) and canopy fires (i.e., tree mortality). </span></p> <p><span>While fire overall enhanced diversity of understory vegetation through colonization of fire adapted plant species, it reduced the abundance and diversity of soil biota. We observed contrasting effects of tree- and soil-related fire severity on survival and recovery of understory vegetation and soil biological communities. </span><span>Severe fires that killed overstory <em>Pinus sylvestris</em> promoted a successional stage dominated by the mosses <em>Ceratodon purpureus</em> and <em>Polytrichum juniperum</em>, but reduced regeneration of tree seedlings and disfavoured the ericaceous dwarf-shrub<em> Vaccinium vitis-idaea</em> and the grass<em> Deschampsia flexuos</em>a. Moreover, high tree mortality from fire reduced fungal biomass and changed fungal community composition, in particular that of ectomycorrhizal fungi, and reduced the fungivorous soil Oribatida. In contrast, soil-related fire severity had little impact on vegetation composition, fungal communities and soil animals. Bacterial communities responded to both tree- and soil-related fire severity. </span></p> <p><span>Synthesis: Our results two years post-fire suggest that a change in fire regime from a historically low-severity ground-fire regime, with fires that mainly burns into the soil organic layer, to a </span><span>stand-replacing </span><span>fire regime with a high degree of tree mortality, as may be expected with climate change, is likely to impact the short-term recovery of stand structure and above- and belowground species composition of even-aged <em>P. sylvestris</em> </span><span>boreal forests.</span></p>
Fire severity as a key determinant of aboveground and belowground biological community recovery in managed even-aged boreal forests
Open the record for dataset details and reuse information.
Data from: Fine-scale environmental specialization of reef- building corals might be limiting reef recovery in the Florida Keys
Despite decades of monitoring global reef decline, we are still largely unable to explain patterns of reef deterioration at local scales, which precludes the development of effective management strategies. Offshore reefs of the Florida Keys, USA, experience milder temperatures and lower nutrient loads in comparison to inshore reefs yet remain considerably more degraded than nearshore patch reefs. A year-long reciprocal transplant experiment of the mustard hill coral (Porites astreoides) involving four source and eight transplant locations reveals that corals adapt and/or acclimatize to their local habitat on a <10-km scale. Surprisingly, transplantation to putatively similar environmental types (e.g., offshore corals moved to a novel offshore site, or along-shore transplantation) resulted in greater reductions in fitness proxies, such as coral growth, than cross-channel transplantation between inshore and offshore reefs. The only abiotic factor showing significantly greater differences between along-shore sites was daily temperature range extremes (rather than the absolute high or low temperatures reached), providing a possible explanation for this pattern. Offshore-origin corals exhibited significant growth reductions at sites with greater daily temperature ranges, which explained up to 39% of the variation in their mass gain. In contrast, daily temperature range explained at most 9% of growth variation in inshore-origin corals, suggesting that inshore corals are more tolerant of high-frequency temperature fluctuations. Finally, corals incur trade-offs when specializing to their native reef. Across reef locations the coefficient of selection against coral transplants was 0.07 ± 0.02 (mean ± SE). This selection against immigrants could hinder the ability of corals to recolonize devastated reefs, whether through assisted migration efforts or natural recruitment events, providing a unifying explanation for observed patterns of coral decline in this reef system.
Supplementary dataset and source code for the paper "Using Weaker Consistency Models with Monitoring and Recovery for Improving Performance of Key-Value Stores"
<p>Supplementary dataset and source code for the paper "Using Weaker Consistency Models with Monitoring and Recovery for Improving Performance of Key-Value Stores" submitted to Journal of the Brazilian Computer Society, LADC special issue.</p>
"COMBO-KEY" - A Home Visiting and Phone Coaching Programme to Promote Stroke Survivors' Recovery
ClinicalTrials.gov study NCT03741842. IPD Sharing: NO. Countries: 1. Publications: 1.
Data from: Fine-scale environmental specialization of reef- building corals might be limiting reef recovery in the Florida Keys
Open the record for dataset details and reuse information.
Interaction Between the Brain Hemispheres - Key to Motor Recovery After Stroke
ClinicalTrials.gov study NCT06381388. IPD Sharing: NO. Countries: 1. Publications: 0.
Transcriptomic Analysis Reveals Key Molecular Signatures Across Recovery Phases of Hemorrhagic Fever with Renal Syndrome
GEO Series GSE271667. Homo sapiens. 9 samples. Type: Expression profiling by high throughput sequencing.
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OpenNeuro
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