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430 results for “meadow”
Figure 3 in Distribution of the meadow lizard in Europe and its realized ecological niche model
Figure 3. Examples showing details from the forest cover (Vegetation Continuous Fields layer) and the Maxent's habitat suitability map for the meadow lizard (Darevskia praticola). The maps show two localities: (a) a part of a fragmented forest area in southern Romania where the species occurs, and (b) an area near the Danube River along the border between Serbia and Romania, which is one of the places of greater habitat suitability for this species. The maps also show the difference between the low (upper images) and high (lower images) resolution of both the VCF layer and the habitat suitability.
FIGURE 1 in Faunal study of velvet ants (Hymenoptera: Mutillidae) and their activity patterns and habitat preference at Ash Meadows National Wildlife Refuge, Nye County, Nevada, USA
FIGURE 1. Species accumulation curve (dotted-line) and the estimated species accumulation via the first order jackknife estimator (solid-line), with standard deviation (gray area), for velvet ants of Ash Meadows National Wildlife Refuge.
FIGURES 2–11. Male genitalia. 2 in Faunal study of velvet ants (Hymenoptera: Mutillidae) and their activity patterns and habitat preference at Ash Meadows National Wildlife Refuge, Nye County, Nevada, USA
FIGURES 2–11. Male genitalia. 2. Odontophotopsis acmaea: dorsal view (left) and internal view (right); 3. O. armata: dorsal view and lateral view of cuspis (inset); 4. O. bellona: dorsal view; 5. O. mamata: dorsal view and lateral view of cuspis (inset); 6. O. microdonta: dorsal view (right) and ventral view (left); 7. O. piute: dorsal view; 8. O. serca: dorsal view and lateral view of cuspis (inset); 9. Sphaeropthalma nana: internal view; 10. S. orestes: dorsal view (left) and ventral view (right); and 11. S. parkeri: dorsal view (left) and ventral view (right).
Plant community assembly of alpine meadow at different altitudes in Northeast Qinghai-Tibet Plateau
<p>Plant community assembly of alpine meadow at different altitudes in Northeast Qinghai-Tibet Plateau related raw data include 3 files: All Species Name, Calculated trait NFI, Pedigree chart. </p>
Methane emissions in seagrass meadows as a small offset to carbon sequestration
<p>Station P: Masterfile includes environmental data and CO2, CH4 and radon concentration at Station P </p> <p>Station S: Masterfile includes the environmental data and CO2, CH4 and radon concentration at Station S </p> <p>Sediment Core: Master file includes the porewater DIC and CH4 concentration</p> <p>Survey: Master file of spatial survey includes GPS location, CH4 concentration </p>
Climate warming alters the relative importance of plant root and microbial community in regulating the accumulation of soil microbial necromass carbon in a Tibetan alpine meadow
<p><span>Climate warming is predicted to considerably affect variations in soil organic carbon (SOC), especially in alpine ecosystems. Microbial necromass carbon (MNC) is an important contributor to stable soil organic carbon pools. However, accumulation and persistence of soil MNC across a gradient of warming are still poorly understood. An eight-year field experiment with four levels of warming was conducted in a Tibetan meadow</span><span>.</span> <span>We found that low-level (+0</span><span>-</span><span>1.5 ℃) warming mostly enhanced bacterial necromass carbon (BNC), fungal necromass carbon (FNC), and total MNC compared with control treatment across soil layers, while no significant effect was caused between high-level (+1.5</span><span>-</span><span>2.5 ℃) treatments and control treatments. The contributions of both MNC and BNC to soil organic carbon were not significantly affected by warming treatments across depths. Structural equation modeling analysis demonstrated that the effect of plant root traits on MNC persistence strengthened with warming intensity, while the influence of microbial community characteristics waned along with strengthened warming. Overall, our study provides novel evidence that the major determinants of MNC production and stabilization may vary with warming magnitude in alpine meadows. This finding is critical for updating our knowledge of soil carbon storage in response to climate warming.</span></p>
Fig. 4.—A Bayesian cytochrome b in A precarious future for distinctive peripheral populations of meadow voles (Microtus pennsylvanicus)
Fig. 4.—A Bayesian cytochrome b (Cytb) gene tree for 50 individuals of Microtus pennsylvanicus. Colors correspond to Cytb clades depicted in Fig. 2. Posterior probability of> 0.95 are denoted by an asterisk. Four species of Microtus were used as outgroups and are shown in black (M. longicaudus, M. townsendii, M. canicaudus, and M. montanus).
Fig. 3.—A Bayesian cytochrome b in A precarious future for distinctive peripheral populations of meadow voles (Microtus pennsylvanicus)
Fig. 3.—A Bayesian cytochrome b (Cytb) gene tree for 63 species of Microtus. Posterior probability of> 0.95 are depicted by asterisk. The inset shows M. breweri nested within M. pennsylvanicus. Two species of Chionomys were used as outgroups and are shown at the bottom of the tree (C. roberti and C. nivalis).
Fig. 2 in A precarious future for distinctive peripheral populations of meadow voles (Microtus pennsylvanicus)
Fig. 2.—Distribution of Microtus pennsylvanicus (modified from IUCN) with dots representing sampling localities of specimens in Supplementary Data SD2. Colors correspond to four well-supported cytochrome b (Cytb) clades with solid lines representing hypothesized range limits of each clade.
Fig. 1 in A precarious future for distinctive peripheral populations of meadow voles (Microtus pennsylvanicus)
Fig. 1.—Distribution of subspecies of Microtus pennsylvanicus (modified from Hoffmann and Koeppl 1985) and the insular M. breweri: 1) M. p. acadicus, 2) M. p. admiraltiae, 3) M. p. alcorni, 4) M. p. aphorodemus, 5) M. p. chihuahuensis (extinct), 6) M. p. copelandi, 7) M. p. drummondii, 8) M. p. dukecampbelli, 9) M. p. enixus, 10) M. p. finitus, 11) M. p. fontigenus, 12) M. p. funebris, 13) M. p. insperatus, 14) M. p. kincaidi, 15) M. p. labradorius, 16) M. p. magdalenensis, 17) M. p. microcephalus, 18) M. p. modestus, 19) M. p. nesophilus (extinct), 20) M. p. nigrans, 21) M. p. pennsylvanicus, 22) M. p. provectus, 23) M. p. pullatus, 24) M. p. rubidus, 25) M. p. shattucki, 26) M. p. tananaensis, 27) M. p. terraenovae, 28) M. p. uligocola, and 29) M. breweri.
Contrasting response of the water use efficiency to precipitation changes between the alpine meadow and alpine steppe over the Tibetan Plateau
<p>The file of AlpineGrassland_GrowingSeason_WUE is dataset of the growing season water use efficiency of alpine grassland over the tibetan plateau during 1982-2014.</p>
Interest of the Not Invasive Ventilation Used in Meadow and Post-operative of Cardiac Surgery
ClinicalTrials.gov study NCT02302300. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Data from: Forests do not limit bumble bee foraging movements in a montane meadow complex
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Functional structure mediates the responses of productivity to addition of three nitrogen compounds in a meadow steppe
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Data from: Earthworm activity and availability for meadow birds is restricted in intensively managed grasslands
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The impact of a native dominant plant, Euphorbia jolkinii, on plant-flower visitor networks and pollen deposition on stigmas of co-flowering species in sub-alpine meadows of Shangri-La, SW China
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Data from: Functional dissimilarity, not phylogenetic relatedness, determines interspecific interactions among plants in the Tibetan alpine meadows
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The role of sexual reproduction in the maintenance of established Zostera marina meadows
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The Little Yellow and its guild in tropical meadows
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Data from: Resource partitioning confirmed by isotopic signatures allows small mammals to share seasonally flooded meadows
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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.