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172 results for “Hibernation”
Supplementary material 1 from: Unterweger PA, Klammer J, Unger M, Betz O (2018) Insect hibernation on urban green land: a winter-adapted mowing regime as a management tool for insect conservation. BioRisk 13: 1-29. https://doi.org/10.3897/biorisk.13.22316
Table with all captured species / morphotypes sorted by order, family and species / morphotype. : Explanation note: Collection: University of Tübingen, Evolutionary Biology of Invertebrates, Auf der Morgenstelle 28, 72076 Tübingen, Germany. Individuals with scientific species name that were checked by a taxonomic expert were counted as taxonomic species (s); all the other determinations were counted as morphotypes (m). Morphotypes are defined by the lowest practical taxonomic level (e.g. Hanula et al. 2009; Kutschbach-Brohl et al. 2010). In some cases, the family or the morphometric body length (in mm, numbers in column C, Mini: smaller than 1 mm) was counted as a morphotype (Daly 1985). In cases for which the determination was not validated by a taxonomic expert, our species determination was checked for plausibility in terms of its geographical occurrence via the Entomofauna Germanica (http://www.colkat.de, 2017.11.06). Alternatively (if no taxonomic name could be found), a classification letter / number was assigned for a morphotype. The provided author name refers to the lowest practical taxonomic level (e.g. Hanula et al. 2009; Kutschbach-Brohl et al. 2010). Validation: name of scientific expert who checked the taxonomic determination. Management type of meadow in autumn: mown /unmown. Plant compartment: flower head, stem, tuft, leaves. All numbers represent total sums of all sample sites over the entire study period. Brown-labelled species names are thought to have hibernated in the soil. Green-labelled species names could only be found in flower heads and stems. Black-labelled species occurred in all plant compartments without any preference for a specific plant compartment.
Hibernate External Dependencies Experiment Results
<p>We ran an experiment over public projects developed using Hibernate to count correct and incorrect external depedencies. The results of our experiment are published here.</p>
Data from: A cost of being amicable in a hibernating marmot
Amicable social interactions can enhance fitness in many species, have negligible consequences for some, and reduce fitness in others. For yellow-bellied marmots (Marmota flaviventris), a facultatively social rodent species with demonstrable costs of social relationships during the active season, the effects of sociality on overwinter survival have yet to be fully investigated. Here, we explored how summer social interactions, quantified as social network attributes, influenced marmot survival during hibernation. Using social data collected from 2002 to 2012 on free-living yellow-bellied marmots, we calculated 8 social network measures (in-degree, out-degree, in-closeness, out-closeness, in-strength, out-strength, embeddedness, and clustering coefficient) for both affiliative and agonistic interactions. We performed a principal component analysis (PCA) to reduce those attributes to 3 affiliative (connectedness, strength, and clustering) and 4 agonistic (submissiveness, bullying, strength, and clustering) components. Then, we fitted a generalized linear mixed model to explain variation in overwinter survival as a function of these social components, along with body mass, sex, age, weather conditions, hibernation group size, and hibernation group composition. We found that individuals with stronger amicable relationships were more likely to die during hibernation. This suggests that social relationships, even affiliative ones, need not be beneficial; for yellow-bellied marmots, they can even be fatal.
Figure 2 in Patterns of resource use by Asiatic black bear Ursus thibetanus during pre-hibernation in Kashmir Himalaya, India
Figure 2. Boxplots showing variation of black bear scat encounter rates with respect to different habitats, percent vegetation cover and distance classes.
Figure 1 in Patterns of resource use by Asiatic black bear Ursus thibetanus during pre-hibernation in Kashmir Himalaya, India
Figure 1. Location of Dachigam National Park in Jammu & Kashmir, India, and the location of sampling trails within the national park.
Figure 3 in Patterns of resource use by Asiatic black bear Ursus thibetanus during pre-hibernation in Kashmir Himalaya, India
Figure 3. Boxplot showing the frequency of occurrence of different food types recorded in the scats of Asiatic black bear in Dachigam National Park.
Figure 3 in Hibernation and emergence pattern of Tupinambis merianae (Squamata: Teiidae) in the Taim Ecological Station, southern Brazil
Figure 3. Differences from emergence time to final seasonal activities between adult males (solid bars), adult females (open bars) and sub-adults (striped bars) from August 2005 to April 2006, at Santa Marta Base, ESEC Taim, city of Santa Vitória do Palmar, Rio Grande do Sul State, Brazil.
Figure 2 in Hibernation and emergence pattern of Tupinambis merianae (Squamata: Teiidae) in the Taim Ecological Station, southern Brazil
Figure 2. Air and soil temperature variation in the first month of each climatic season [(A) spring5September; (B) summer5December; (C) autumn5April] at Santa Marta Base, ESEC Taim, city of Santa Vitória do Palmar (State of Rio Grande do Sul), from August 2006 to April 2007. The averages correspond to measures taken four times each day of study by the researchers. Soil temperature was measured at the soil surface, and air temperature was measured 1 m above the ground at the same point.
Figure 1 in Hibernation and emergence pattern of Tupinambis merianae (Squamata: Teiidae) in the Taim Ecological Station, southern Brazil
Figure 1. Area studied: Santa Marta Base. Black dot marks the Taim Ecological Station (ESEC Taim), located in the city of Santa Vitória do Palmar, State of Rio Grande do Sul, Brazil.
FIG. 1 in How do young bats find suitable swarming and hibernation sites? Assessing the plausibility of the maternal guidance hypothesis using genetic maternity assignment for two European bat species
FIG. 1. Left — drawing of 'Brunnen Meyer'; right — photo of the western side of the 'Brunnen Meyer' well house with window where bats enter
FIG. 2 in How do young bats find suitable swarming and hibernation sites? Assessing the plausibility of the maternal guidance hypothesis using genetic maternity assignment for two European bat species
FIG. 2. Simulation (10,000 iterations) of how often mother-offspring pairs are expected to arrive on the same night by chance for M. daubentonii (top) and M. nattereri (bottom); the observed number of pairs arriving on the same night is denoted by the arrow
FIG. 3. Hibernation habitat study methods developed for a in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.
FIG. 3. Hibernation habitat study methods developed for a partially mined peatland ecosystem inhabited by a Massasauga population located in southern Ontario, Canada. Life-zone methods include a grid of groundwater wells paired with a frost tube in each study area (Mined and Not Mined). Life zone (LZ) equals the groundwater level (GWL) minus frost depth (FD). All measurements are relative to the ground surface.
No impact of cyantraniliprole on the hibernation success of bumble bees (Bombus terrestris audax) in a soil-mediated laboratory exposure study
<p>Dataset associated with the paper: "no evidence that soil-mediated exposure to cyantraniliprole alters the overwintering success of bumblebees (<em>Bombus terrestris</em> ssp. <em>audax</em>)"</p>
Hypothalamic remodeling of thyroid hormone signaling during hibernation in the arctic ground squirrel
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Data from: Gene expression profiling in the hibernating primate, Cheirogaleus Medius
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Data from: Sex-dependent phenological plasticity in an arctic hibernator
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Assessing seasonal demographic covariation to understand environmental-change impacts on a hibernating mammal
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Data from: Enhanced stability and polyadenylation of select mRNAs support rapid thermogenesis in the brown fat of a hibernator
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Similar hibernation physiology in bats across broad geographic ranges
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Data from: Effects of aging on timing of hibernation and reproduction
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