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622 results for “High altitude”
Text-fig. 1. Modern vegetation proxies as delivered by the Drudge 1 and 2 tools for Parschlug. Left column results from KovarEder et al. (2021) based on the floristic spectrum published by Kovar-Eder et al. (2004). The other three columns result from three variants using the enlarged floristic spectrum herein. Differences between variants 1–3 from this study are caused by differences in assignment of some taxa and morphotypes (see Appendix 1). European vegetation formations: Formation C – Subarctic, boreal and nemoral-montane open woodlands as well as subalpine and oro-Mediterranean vegetation; Formation D – Mesophytic and hygromesophytic coniferous and mixed broad-leaved-coniferous forests; Formation F – Mesophytic broadleaved deciduous and mixed broadleaved/conifer forests; Formation G – Thermophilous mixed deciduous broadleaved forests; Formation J – Mediterranean sclerophyllous forests and scrub; Formation K – Xerophytic coniferous forests, coniferous woodland and scrub. East Asian vegetation types: MCF China, Japan – Montane Coniferous Forests China, Honshu, Yakushima; BLDF N and NE Provinces, China – Broad-leaved Deciduous Forests of the Northern and Northeastern Provinces (China); BLDF Upper Yangtze, Honshu – Broad-leaved Deciduous Forest, Upper Yangtze Provinces, Mt. Emei, and Honshu; MMF China – Mixed Mesophytic Forest, Lower Yangtze Provinces; BLEF China, Japan – Broad-leaved Evergreen Forests, China, Japan; Meili Snow Mt. high altitude SCL and BLF, China – Meili Snow Mt., Sclerophyllous and broad-leaved forest zone (2,580-3,650 m alt.). (Designations of European vegetation formations follow Bohn et al. (2004) and Asian ones follow Kovar-Eder et al. (2021). in Floristic, Vegetation And Climate Assessment Of The Early/Middle Miocene Parschlug Flora Indicates A Distinctly Seasonal Climate
Text-fig. 1. Modern vegetation proxies as delivered by the Drudge 1 and 2 tools for Parschlug. Left column results from KovarEder et al. (2021) based on the floristic spectrum published by Kovar-Eder et al. (2004). The other three columns result from three variants using the enlarged floristic spectrum herein. Differences between variants 1–3 from this study are caused by differences in assignment of some taxa and morphotypes (see Appendix 1). European vegetation formations: Formation C – Subarctic, boreal and nemoral-montane open woodlands as well as subalpine and oro-Mediterranean vegetation; Formation D – Mesophytic and hygromesophytic coniferous and mixed broad-leaved-coniferous forests; Formation F – Mesophytic broadleaved deciduous and mixed broadleaved/conifer forests; Formation G – Thermophilous mixed deciduous broadleaved forests; Formation J – Mediterranean sclerophyllous forests and scrub; Formation K – Xerophytic coniferous forests, coniferous woodland and scrub. East Asian vegetation types: MCF China, Japan – Montane Coniferous Forests China, Honshu, Yakushima; BLDF N and NE Provinces, China – Broad-leaved Deciduous Forests of the Northern and Northeastern Provinces (China); BLDF Upper Yangtze, Honshu – Broad-leaved Deciduous Forest, Upper Yangtze Provinces, Mt. Emei, and Honshu; MMF China – Mixed Mesophytic Forest, Lower Yangtze Provinces; BLEF China, Japan – Broad-leaved Evergreen Forests, China, Japan; Meili Snow Mt. high altitude SCL and BLF, China – Meili Snow Mt., Sclerophyllous and broad-leaved forest zone (2,580-3,650 m alt.). (Designations of European vegetation formations follow Bohn et al. (2004) and Asian ones follow Kovar-Eder et al. (2021).
Fig 3 in First report of the high altitude cladoceran species Streblocerus serricaudatus (Fischer, 1849) S.LAT from the Western Ghats of India, Tamil Nadu
Fig 3: Google Map showing the Western Ghats of India and the collection locality Pechiparai dam in Tamil Nadu
Figures: 'Preliminary Sizing of High-Altitude Airships Featuring Atmospheric Ionic Thrusters: An Initial Feasibility Assessment'
<p><strong>Figures from the publication <em>Preliminary Sizing of High-Altitude Airships Featuring </em><em>Atmospheric Ionic Thrusters: An Initial Feasibility Assessment</em></strong></p> <p>*.fig files can be opened in <code>Matlab</code></p>
Fig. 2 in New high altitude nesting site of White Stork (Ciconia ciconia Linnaeus, 1758) in Bulgaria
Fig. 2. The nest of White Stork (Ciconia ciconia) in Yundola village, 13.07.2016. (Photograph: G. Gruychev).
Fig. 1 in New high altitude nesting site of White Stork (Ciconia ciconia Linnaeus, 1758) in Bulgaria
Fig. 1. White Stork (Ciconia ciconia) at the nest in Yundola village in 16.07.2015 (Photograph: S. Stoyanov).
Figure 6 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 6. Accumulation curve of estimated (BootStrap1) and collected (Sobs) Odonata species in the Moinhos (Mills) area (A). Jardim Botânico (Botanical Garden) (B), and Morro do Ferro (Iron Hill) (C), with a confidence level of 95% (dotted lines). / Curva de acumulación de especies estimadas (BootStrap1) y recolectadas (Sobs) de Odonata en la zona de Moinhos (Molinos) (A), Jardim Botânico (JardÍn Botánico) (B) y Morro do Ferro (Colina de Hierro) (C), con un nivel de confianza del 95% (lÍneas punteadas).
Figure 4. Land use quantification around 1200 meters from a in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 4. Land use quantification around 1200 meters from a central point at the collection sites. JB: Jardim Botânico (Botanical Garden); MO: Moinhos (Mills); MF: Morro do Ferro (Iron Hill). / Cuantificación del uso del suelo alrededor de 1200 metros desde un punto central en los sitios de recolección. JB: Jardim Botânico (JardÍn Botánico); MO: Moinhos (Molinos); MF: Morro do Ferro (Colina de Hierro).
Figure 3 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 3. Land uses in the surroundings (buffer) of 1200 meters from a central point of the three sampled sites. / Usos del suelo en los alrededores (buffer) de 1200 metros desde un punto central de
Figs. 1–2 in First high-altitude record of Bucculatrix mirnae Vargas and Moreira (Lepidoptera, Bucculatricidae) on a newly documented host plant: the importance of host plant distribution for conservation on the western slopes of the Andes mountains of northern Chile
Figs. 1–2. The habitats of Bucculatrix mirnae in the arid northern Chile. (1) The lowland Azapa Valley (type locality) located in the coastal Atacama Desert close sea level. (2) The highland neighborhood of Putre village at about 3500 m elevation on the western slopes of the Andes.
Dry perennial herbaceous community data of Castril, Santiago and Pontones high-altitude rangelands in Andalusia (Spain)
<p>Data generated from vegetation monitoring in Castril, Santiago and Pontones rangelands situated in Sierra de Segura and Sierra de Castril in North-Eastern Andalusia (Spain).</p> <p>These data and R Script are linked to the article <em>How transhumance and pastoral commons shape plant community structure and composition. </em></p> <p>The plant community sampled belongs to <em>Festuco hystricis-Ononidetea striatae</em> class, consisting of <em>Coronillo minimae-Astragaletum nummularioidis</em> and <em>Seseli granatensis-Festucetum hystricis</em> plant associations. Plant data community consists in 72 vegetation transects. For further details see the article or contact S.A. Parra (santiago.parra-bulacio@etu.univ-amu.fr).</p> <p>File “Read_me.txt” details the databases and R script published.</p>
Data from: A snow-dwelling tropical butterfly? An unprecedented discovery of a new genus of the Pedaliodes clade in an extreme, high-altitude Andean environment (Lepidoptera: Nymphalidae, Satyrinae)
<p><span><span>A new genus of satyrine butterflies, </span></span><span><span><em>Nivaliodes </em></span></span><span><span><strong>gen. nov.</strong></span></span><span><span>, is described for three species, all new – </span></span><span><span><em>N. negrobueno </em></span></span><span><span><strong>sp. nov.</strong></span></span><span><span>,</span></span><span><span><em>N. virococha</em></span></span><span> </span><span><span><strong>sp. nov.</strong></span></span><span><span> and </span></span><span><span><em>N. puriq </em></span></span><span><span><strong>sp. nov.</strong></span></span><span><span> (Lepidoptera, Nymphalidae) – with a support of molecular data and adult morphology. Target enrichment-based phylogeny indicates </span></span><span><span><em>Nivaliodes </em></span></span><span><span><strong>gen. nov.</strong></span></span><span><span> is sister to the genus </span></span><span><span><em>Pherepedaliodes</em></span></span><span><span>within an extremely diverse </span></span><span><span><em>Pedaliodes</em></span></span><span><span> clade of the predominantly Andean subtribe Pronophilina</span></span><span><span><em>. </em></span></span><span><span>Whereas an overwhelming majority of species of this group occur in tropical montane forests, </span></span><span><span><em>N. negrobueno </em></span></span><span><span><strong>sp. nov.</strong></span></span><span><span> was discovered in a central Peruvian desert puna at some 4600-4800 m asl., the highest elevation reported for any species of the Pronophilina. Individuals were observed overflying rocky slopes and resting directly on snow-covered surfaces, which is an exceptionally unusual behaviour among butterflies. The other two species of the new genus were found at lower elevations, some 3300-4200 m asl. at the timberline and in puna grassland. </span></span></p>
Linked collectors and determiners for: Qorimayus, a new genus of relictual, high-altitude harvestmen from western Argentina (Arachnida, Opiliones, Gonyleptidae) reveals trans-Andean phylogenetic links.
Natural history specimen data linked to collectors and determiners held within, "Qorimayus, a new genus of relictual, high-altitude harvestmen from western Argentina (Arachnida, Opiliones, Gonyleptidae) reveals trans-Andean phylogenetic links". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/c31e76f5-34bc-48e9-91d2-e0f225ebda09">https://bionomia.net/dataset/c31e76f5-34bc-48e9-91d2-e0f225ebda09</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/c31e76f5-34bc-48e9-91d2-e0f225ebda09">https://gbif.org/dataset/c31e76f5-34bc-48e9-91d2-e0f225ebda09</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae).
Natural history specimen data linked to collectors and determiners held within, "A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/c26ef882-a4b3-4d52-9b9a-9613c5d26680">https://bionomia.net/dataset/c26ef882-a4b3-4d52-9b9a-9613c5d26680</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/c26ef882-a4b3-4d52-9b9a-9613c5d26680">https://gbif.org/dataset/c26ef882-a4b3-4d52-9b9a-9613c5d26680</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Leaf-mining Nepticulidae (Lepidoptera) from record high altitudes: documenting an entire new fauna in the Andean páramo and puna.
Natural history specimen data linked to collectors and determiners held within, "Leaf-mining Nepticulidae (Lepidoptera) from record high altitudes: documenting an entire new fauna in the Andean páramo and puna". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/7f55813e-d9fb-47d1-ae70-4207ea726e64">https://bionomia.net/dataset/7f55813e-d9fb-47d1-ae70-4207ea726e64</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/7f55813e-d9fb-47d1-ae70-4207ea726e64">https://gbif.org/dataset/7f55813e-d9fb-47d1-ae70-4207ea726e64</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Anticyphon gen. nov., a new genus of Scirtidae (Coleoptera: Scirtoidea) inhabiting high altitude Andean cloud forests and páramo formation.
Natural history specimen data linked to collectors and determiners held within, "Anticyphon gen. nov., a new genus of Scirtidae (Coleoptera: Scirtoidea) inhabiting high altitude Andean cloud forests and páramo formation". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/55c6a2a3-cf2b-41df-bb10-ee4ba1d423c3">https://bionomia.net/dataset/55c6a2a3-cf2b-41df-bb10-ee4ba1d423c3</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/55c6a2a3-cf2b-41df-bb10-ee4ba1d423c3">https://gbif.org/dataset/55c6a2a3-cf2b-41df-bb10-ee4ba1d423c3</a>. Formatted as a Frictionless Data package.
Fig. 5 in Distribution patterns and trophic characteristics of salmonids and native species inhabiting high altitude rivers of Pampa de Achala region, Argentina
Fig. 5. Dendrogram of diet similitude of Trichomycterus corduvensis (TC), Salvelinus fontinalis (SF) and Oncorhynchus mykiss (OM) in high altitude streams in Pampa de Achala area, Córdoba.
Fig. 6 in Distribution patterns and trophic characteristics of salmonids and native species inhabiting high altitude rivers of Pampa de Achala region, Argentina
Fig. 6. Graphic representation of Tokeshi analysis. ID = mean individual feeding diversity; PD = population feeding diversity. a) Trichomycterus corduvensis, b) Salvelinus fontinalis, and c) Oncorhynchus mykiss. Numbers correspond to streams from Table 1.
Fig. 1 in Distribution patterns and trophic characteristics of salmonids and native species inhabiting high altitude rivers of Pampa de Achala region, Argentina
Fig. 1. Sampling sites and surveyed rivers in the Reserva Provincial Pampa de Achala and Quebrada del Condorito National Park.
Data and Code for figures of "Long-range transport and fate of DMS-oxidation products in the free troposphere derived from observations at the high-altitude research station Chacaltaya (5240 m a.s.l.) in the Bolivian Andes"
<p>This database includes the material to create the figures in "Measurement Report: Long-range transport and fate of DMS-oxidation products in the free troposphere derived from observations at the high-altitude research station Chacaltaya (5240 m a.s.l.) in the Bolivian Andes" and the analyzed time series of all atmospheric variables presented.</p>
HIT-UAV: A high-altitude infrared thermal dataset for Unmanned Aerial Vehicle-based object detection
<p>Add citation file.</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)
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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.