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239 results for “Sierra Nevada”
Figure 4 from: Pérez-Luque AJ, Sánchez-Rojas CP, Zamora R, Pérez-Pérez R, Bonet FJ (2015) Dataset of Phenology of Mediterranean high-mountain meadows flora (Sierra Nevada, Spain). PhytoKeys 46: 89-107. https://doi.org/10.3897/phytokeys.46.9116
Figure 4 - (a) Panoramic view of the borreguil of San Juan valley. The particular zonation of this ecosystem depending on soil moisture is reflected in the different colours of the borreguil. (b) Schematic representation of the vegetal communities forming the borreguiles, including dry borreguil (4 Armerio-Agrostietum nevadensis), dense grassland (1 Nardo-Festucetum ibericae), incipient peat formations (2 Ranunculo-Caricetum intrincatae) and variants of borreguil in promontory areas (3 Ranunculo-Vaccinietum uliginosi). Modified from Losa-Quintana et al. (1986). Picture: JM Martín-Martín.
Figure 5 from: Pérez-Luque AJ, Sánchez-Rojas CP, Zamora R, Pérez-Pérez R, Bonet FJ (2015) Dataset of Phenology of Mediterranean high-mountain meadows flora (Sierra Nevada, Spain). PhytoKeys 46: 89-107. https://doi.org/10.3897/phytokeys.46.9116
Figure 5 - Schema of the sampling design. a Different sampling plots were distributed along an altitudinal gradient. For the middle-altitude locality the plots were sampled in two periods: 1988–1990 and 2009–2013. View of a sampling plot of 1 × 1 m (b) that was divided into quadrats of 25 × 25 cm to facilitate counting (c) and to record the cover-abundance and the number of individuals in flowering (d) or in fruit phenophase.
Figure 2 from: Pérez-Luque AJ, Sánchez-Rojas CP, Zamora R, Pérez-Pérez R, Bonet FJ (2015) Dataset of Phenology of Mediterranean high-mountain meadows flora (Sierra Nevada, Spain). PhytoKeys 46: 89-107. https://doi.org/10.3897/phytokeys.46.9116
Figure 2 - Taxonomic coverage. The upper bar shows the percentage of records of the dataset belonging to each phylum. The bottom bars show the percentage of total records in the dataset by order. The number of records is included above the bars. The order bars is aggregated by class.
Figure 3 from: Pérez-Luque AJ, Sánchez-Rojas CP, Zamora R, Pérez-Pérez R, Bonet FJ (2015) Dataset of Phenology of Mediterranean high-mountain meadows flora (Sierra Nevada, Spain). PhytoKeys 46: 89-107. https://doi.org/10.3897/phytokeys.46.9116
Figure 3 - Taxonomic coverage (families). Percentage of dataset records by families. The numbers indicate the records of each family.
Figure 1 from: Pérez-Luque AJ, Sánchez-Rojas CP, Zamora R, Pérez-Pérez R, Bonet FJ (2015) Dataset of Phenology of Mediterranean high-mountain meadows flora (Sierra Nevada, Spain). PhytoKeys 46: 89-107. https://doi.org/10.3897/phytokeys.46.9116
Figure 1 - Location of Sierra Nevada (southern Spain) and boundaries of the National and Natural Parks (top panels). The bottom panel shows the location of the borreguiles in the San Juan river basin with the sampling plots along an altitudinal gradient.
Figure 4 from: Pérez-Luque AJ, Barea-Azcón JM, Álvarez-Ruiz L, Bonet-García FJ, Zamora R (2016) Dataset of Passerine bird communities in a Mediterranean high mountain (Sierra Nevada, Spain). ZooKeys 552: 137-154. https://doi.org/10.3897/zookeys.552.6934
Figure 4 - Temporal coverage of the dataset. For each taxon (y-axis) the temporal coverage is shown including a point. Point size is proportional to monthly records of each taxon.
Figure 2 from: Pérez-Luque AJ, Barea-Azcón JM, Álvarez-Ruiz L, Bonet-García FJ, Zamora R (2016) Dataset of Passerine bird communities in a Mediterranean high mountain (Sierra Nevada, Spain). ZooKeys 552: 137-154. https://doi.org/10.3897/zookeys.552.6934
Figure 2 - Taxonomic families included in the dataset. The bars show the percentage of records belonging to each family.
Figure 1 from: Pérez-Luque AJ, Barea-Azcón JM, Álvarez-Ruiz L, Bonet-García FJ, Zamora R (2016) Dataset of Passerine bird communities in a Mediterranean high mountain (Sierra Nevada, Spain). ZooKeys 552: 137-154. https://doi.org/10.3897/zookeys.552.6934
Figure 1 - a Location of Sierra Nevada (southern Spain) and b distribution of transects in the Protected Natural Area of Sierra Nevada. Transect colour according to habitat type (see Methods section). A Landsat 5 Image (2001) was used as background.
Recent bark beetle outbreaks influence wildfire severity in mixed-conifer forests of the Sierra Nevada, California, USA
Open the record for dataset details and reuse information.
Wildfire severity data for Sierra Nevada-Southern Cascades from 1984–2020
Open the record for dataset details and reuse information.
Bias-corrected VIC historical runoff data (1950-2013) for the Central Sierra Nevada
Open the record for dataset details and reuse information.
Raw data acoustic indices used for four indigenous communities in the Sierra Nevada de Santa Marta
<p>Raw data acoustic indices used for four indigenous communities in the Sierra Nevada de Santa Marta</p>
Figure 3 from: Pérez-Luque AJ, Barea-Azcón JM, Álvarez-Ruiz L, Bonet-García FJ, Zamora R (2016) Dataset of Passerine bird communities in a Mediterranean high mountain (Sierra Nevada, Spain). ZooKeys 552: 137-154. https://doi.org/10.3897/zookeys.552.6934
Figure 3 - Distribution of records in the dataset according to genus.
Rock-Ice Feature Inventory for the Sierra Nevada, California, USA, Version 1
The Sierra Nevada is a tectonic uplift mountain range with a gradual gain in elevation on the west side and a steep escarpment on the east. Most of the mapped locations are east of the Sierran crest. The climate in the region is Mediterranean, with most of the precipitation in the winter months coming as snow at high elevations, but with some monsoonal precipitation in the summer, particularly in the southern end of the range. There is a very steep gradient in decreasing precipitation eastward from the Sierran crest as a result of rain-shadow orographic effects from the predominately eastward-moving Pacific frontal storms. PRISM-estimated (Daly et al. 1994) annual precipitation for the RIF locations ranged from 580 to 1880 mm; July precipitation from 5 to 33 mm. Mean annual maximum temperatures ranged from 1.8 to 15.2 oC, January from -5.7 to 6.2 oC, and July from 11 to 26.3 oC. Mean annual minima ranged from -8.1 to -0.4 oC, January from -15 to -7 oC, and July from 1.2 to 8.9 oC. The highest temperatures and lowest precipitation were largely at relict Pleistocene rock glaciers, which tended to be farthest east of the Sierran crest and lower in elevation. We mapped over 430 RIFs, based on field surveys and grouped them into six classes based on morphology and location. These categories constitute a greater range of frozen-ground features than are commonly described in rock-glacier surveys. Although granitic substrates dominate the Sierra Nevada, they do not in the eastern escarpment, so substrates in the RIF database are about equally divided between granitic and metamorphic. Ages of rock glaciers ranged from current (active) to relict (late Pleistocene). We interpreted the presence of outlet springs, basal lakes, suspended silt in outlet streams, and fringing phreatophytic vegetation, in addition to morphologic indications of current rock movement, as evidence for interstitial ice, either persistent or seasonal.<br>One comma-delimited ASCII file containing information for 430 rock-ice features is available.
Subspecies and Distribution. D.a.agilisGambel,1848—SWUSA(LosAngelesBasinandfoothillsofSanGabrielandSanBernardinoMtsofSWCalifornia). D. a. perplexus Merriam, 1907 — SW USA (S Sierra Nevada, Tehachapi, and San Gabriel Mts, N San Fernando Valley of SW California). in Heteromyidae
Subspecies and Distribution. D.a.agilisGambel,1848—SWUSA(LosAngelesBasinandfoothillsofSanGabrielandSanBernardinoMtsofSWCalifornia). D. a. perplexus Merriam, 1907 — SW USA (S Sierra Nevada, Tehachapi, and San Gabriel Mts, N San Fernando Valley of SW California).
FIG. 7 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 7. Mean predicted probability of microhabitat use by adult R. sierrae (includes subadults) for all possible values from a given predictor variable from the 1,000 bootstrapped logistic regression models at (A) Independence Creek and (B) South Fork Tributaries. Shading and bars represent 95% credible intervals. Substrate categories are silt (Slt), sand (Snd), fine gravel (FGrav), coarse gravel (CGrav), cobble (Cob), boulder (Bld), and bedrock (Bed).
FIG. 9 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 9. Mean predicted probability of microhabitat use by tadpoles of R. sierrae for all possible values from a given predictor variable from the 1,000 bootstrapped logistic regression models at (A) Independence Creek and (B) South Fork Tributaries. Shading and bars represent 95% credible intervals. Substrate categories are silt (Slt), sand (Snd), fine gravel (FGrav), coarse gravel (CGrav), cobble (Cob), boulder (Bld), and bedrock (Bed).
FIG. 1 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 1. Study site locations in the northern portion of the range of R. sierrae. One study site is located on each of Lone Rock Creek (LRC) and Independence Creek (IND), one study site is located on the mainstem South Fork Rock Creek (SFRC), and two study sites are located on tributaries to SFRC (SFT [South Fork Tributary] and SFTT [South Fork Tadpole Tributary]).
Input data: Can the Hermit Warbler serve as an old-forest indicator species in the Sierra Nevada?
<p>Input data used for occupancy modeling of Hermit Warblers across the Sierra Nevada in 2021.</p>
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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.