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92 results for “Andalusia”
Figure 2 from: Ros-Candeira A, Pérez-Luque AJ, Suárez-Muñoz M, Bonet-García FJ, Hódar JA, Giménez de Azcárate F, Ortega-Díaz O (2019) Dataset of occurrence and incidence of pine processionary moth in Andalusia, south Spain. ZooKeys 852: 125-136. https://doi.org/10.3897/zookeys.852.28567
Figure 2 Number of publications per year about Thaumetopoeapityocampa in Web of Science (search date 2017-10-05) since the first publication registered.
Figure 1 from: Ros-Candeira A, Pérez-Luque AJ, Suárez-Muñoz M, Bonet-García FJ, Hódar JA, Giménez de Azcárate F, Ortega-Díaz O (2019) Dataset of occurrence and incidence of pine processionary moth in Andalusia, south Spain. ZooKeys 852: 125-136. https://doi.org/10.3897/zookeys.852.28567
Figure 1 Distribution of Thaumetopoeapityocampa records from GBIF in Spain and records provided in this dataset. Records from GBIF were downloaded on 2018-03-16 using the R package "rgbif" (Chamberlain et al. 2016).
FIGURE 3 in A new taxon of Euphorbia (Euphorbiaceae) from the southern Iberian Peninsula (Andalusia, Spain)
FIGURE 3. Distribution of Euphorbia guadalhorcensis in the Iberian Peninsula.
Status of Chronic Liver Disease in Hepatitis C Virus (HCV) Patients Coinfected With Human Immunodeficiency Virus (HIV) in Andalusia
ClinicalTrials.gov study NCT02511496. IPD Sharing: Not stated. Countries: 0. Publications: 1.
Tracking and retention time data from Larus fuscus feeding at Doñana ricefields in Andalusia
<p>1. Non-frugivorous waterbirds disperse a wide variety of plants by endozoochory, providing longer dispersal distances than other mechanisms. Many waterbirds visit both agricultural and natural landscapes during their daily movements, but potential bird-mediated dispersal of weed plants within and from agricultural landscapes to other habitats is commonly overlooked. Gulls (Laridae) are expanding in numbers and increasingly exploiting anthropogenic habitats worldwide, with possible growing implications for the spread of weeds. Yet, to date there are no studies on the spatial distribution of weed dispersal by waterbirds.</p> <p>2. We developed a plant dispersal model based on movements of 19 <i>Larus fuscus</i> using ricefields, via GPS telemetry. We combined daily movements with two curves estimating the retention times (RT) of plant seeds in their guts: 1) an experimental curve based on RT in captivity for four weeds with dry fruits known to be dispersed by gulls: <i>Juncus bufonius</i>, <i>Cyperus difformis</i>, <i>Polypogon monspeliensis</i> and <i>Amaranthus retroflexus</i>; 2) a theoretical curve based on the interspecific scaling relationship between body mass and mean RT.</p> <p>3. Median dispersal distances of weed plant seeds by gulls ranged between 690-940 m, but maximum distances exceeded 100 km. The theoretical RT model showed higher median dispersal distances than the experimental RT model, but lower maxima (131 and 151 km, respectively). Spatial patterns of weed deposition were very similar between RT methods, and most strongly depended on gull movements. Variation between individual gulls had little influence on seed shadows. About 92% of all seeds (>10,000 intact seeds per day) were dispersed within the ricefield area of 370 km2. The remaining 8% of seeds were deposited beyond ricefields into other habitats, 42% of which reached moist environments (other irrigated agriculture, rivers and natural wetlands) presumably suitable for weed establishment.</p> <p>4. <i>Synthesis</i>: Gulls can disperse weed plants over long distances across a mosaic of habitats. This implies exchange of weed plant species between human-dominated and natural areas by waterbirds as dispersal vectors. This spatial study highlights the importance of non-frugivorous birds for long-distance plant dispersal, which is generally an overlooked mechanism in studies aiming to predict and manage expansion of weed plants.</p>
Assessment of MDD Management in Andalusia
ClinicalTrials.gov study NCT01510886. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Tracking and retention time data from Larus fuscus feeding at Doñana ricefields in Andalusia
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data_WEFnexus_andalusia
<p>Water-Energy-Food dataset for Andalusia (2010-2050)</p>
DIVINE: Andalusia Agroclimatic Information Network Historic Datasets - MALAGA - (June 23 - May 24)
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FIGS 38 in An investigation of the black¯y fauna of Andalusia, southern Spain (Diptera: Simuliidae)
FIGS 38± 47. Pupal discriminating characters of species of Simulium in the subgenera Obuchovia and Simulium s. str. occurring in Andalusia. (38, 39) S. (O.) galloprovinciale: pupal gill and pupa in cocoon (specimen from Site 128). (40, 41) S. (S.) bezzii: pupal gill and cocoon (specimen from Site 127). (42, 43) S. (S.) xanthinum: cocoon and pupal gill. (44, 45) S. (S.) variegatum: dorsal view of pupal exuviae showing the thoracic bosses, and anterior part of pupa showing outline of thoracic boss in pro®le (arrowed). (46, 47) S. (S.) monticola: gill base seen in pro®le and from directly above with ®lament numbering (see text) indicated (specimen from Site 118).
FIGS 14 in An investigation of the black¯y fauna of Andalusia, southern Spain (Diptera: Simuliidae)
FIGS 14±27. Discriminating characters in pupal gills of species of Simulium in the subgenera Rubzovia, Eusimulium and Nevermannia occurring in Andalusia. (14) S. (R.) lamachi. (15) S. (E.) petricolum and S. (E.) velutinum. (16±18) S. (N.) ru®corne (from three pupae in same sample, Site 71). (19, 20) S. (N.) angustitarse (specimens from Sites 64 and 101, respectively). (21, 22) S. (N.) sp. near pinhaoi (specimen from Site 119). (23) S. (N.) pinhaoi from Portugal. (24) S. (N.) cryophilum. (25) S. (N.) carthusiense. (26) S. (N.) armoricanum. (27) S. (N.) sp. near cryophilum (specimen from Site 56).
FIGURES 5. Boxplots. A in A new taxon of Euphorbia (Euphorbiaceae) from the southern Iberian Peninsula (Andalusia, Spain)
FIGURES 5. Boxplots. A. Seed length variation in Euphorbia maresii subsp. maresii, E. guadalhorcensis, E. portlandica and E. segetalis. B. Caruncle length variation in Euphorbia maresii subsp. maresii, E. guadalhorcensis, E. portlandica and E. segetalis; C. Caruncle length/ seed length variation in E. maresii subsp. maresii, E. guadalhorcensis, E. portlandica and E. segetalis.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.