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739 results for “Uruguay”
Cynolebias prognathus n in SEIS ESPECIES NUEVAS DEL GENERO Czmolebias STEINDACHNER, 1876, DE URUGUAY Y PARAGUAY (CYPRINODONTIFORMES, RIVULIDAE)
Cynolebias prognathus n. sp. Fig. 8. Holotipo macho, MNHN 2577
Fig. 4 in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 4, alotipo hembra, MNHN 2547
Fig. 6 in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 6, alotipo hembra, MNHN 2469
Fig. 9, Cynolebias chacoensis n in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 9, Cynolebias chacoensis n. sp. Alotipo hembra, MNHN 2611.
Fig. 10, Cynolebias cinereus n in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 10, Cynolebias cinereus n. sp. Paratipo macho subadulto, MNHN 2386
Cynolebias melanoorus n in SEIS ESPECIES NUEVAS DEL GENERO Czmolebias STEINDACHNER, 1876, DE URUGUAY Y PARAGUAY (CYPRINODONTIFORMES, RIVULIDAE)
Cynolebias melanoorus n. sp. Fig. 3, holotipo macho, MNHN 2545
Fig. 5 in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 5, holotipo macho, MNHN 2468 Cynolebias aƒƒinis n. sp.
Fig. 3 in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 3, holotipo macho, MNHN 2545 Cynolebias melanoorus n. sp.
Fig. 8. Holotipo macho, MNHN 2577 Oynolebias chacoensis 11 in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 8. Holotipo macho, MNHN 2577 Oynolebias chacoensis 11. sp.
Fig., holotipo macho, MNHN 2460 Cynolebias gymnoventris- n. sp. in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig., holotipo macho, MNHN 2460 Cynolebias gymnoventris- n. sp.
Fig. 8. Holotipo macho, MNHN 2577 Cynolebias prognathus n in Seis Especies Nuevas del Genero Czmolebias Steindachner, 1876, de Uruguay y Paraguay (Cyprinodontiformes, Rivulidae)
Fig. 8. Holotipo macho, MNHN 2577 Cynolebias prognathus n. sp.
Database of Soil Organic Carbon (SOC) stock up to 20 cm depth: A collection of studies from Uruguay
<p>This database comprises 667 soil organic carbon (SOC) stock measurements, collected from various studies conducted across Uruguay, with sampling depths extending up to 20 cm. The database aggregates data from 14 studies, including undergraduate and postgraduate theses and research projects, sampled between 2002 and 2024. It provides comprehensive details on the geographic location of sampling sites (latitude and longitude coordinates), the date of sample collection, the methodology employed for SOC determination, the technique used to estimate SOC stock values at the specified depths, and a description of land use at the moment of sampling.</p> <p>This data collection is particularly relevant for evaluating SOC stocks modeling exercises, as it contributes to a more comprehensive understanding of carbon dynamics across various soil types, environmental conditions, land use, and land cover types. The database is available in shapefile format and is expected to serve as a valuable resource for researchers and professionals in the field.</p> <p><strong> </strong></p> <h3>Data Table Description</h3> <p>The associated data table from this database contains the following key variables:</p> <ul> <li> <p>ID: Unique identifier for each sampling point.</p> </li> <li> <p>Latitude & Longitude: Geographic coordinates of the sampling site.</p> </li> <li> <p>SOC Stock: Soil Organic Carbon (SOC) stock calculated at a fixed depth using the equation SOC stock (MgC/ha) = C × Bd × d, where C represents carbon concentration (%C), Bd is the bulk density of the soil (g/cm³), and d is the depth (cm).</p> </li> <li> <p>Depth: Depth (cm) used for SOC stock calculation. Data were harmonized to a depth of 20 cm; however, lower values are reported for sites where the sampling scheme was conducted at depths less than 20 cm or where bedrock was encountered before reaching 20 cm.</p> </li> <li> <p>Land Use: Simplified land use classification with “grassland”, “agriculture”, or “forest” categories</p> </li> <li> <p>Land Use Extended: If available, the responsible party provides a more detailed explanation of land use.</p> </li> <li> <p>Month & Year: Month and year of sample collection.</p> </li> <li> <p>SOC Method: Methodology used for SOC determination, such as Walkley-Black or dry combustion.</p> </li> <li> <p>Published: Indicates whether the data have been published, with a URL provided if available. If not published, the data are marked as unpublished.</p> </li> <li> <p>SOC Calc: The approach used for calculating SOC stock at a fixed depth, detailed in two possible methods:</p> </li> <ul> <li> <p>Real: For sampling schemes that include a segment ending at 20 cm depth, SOC stock was calculated directly up to 20 cm. This method was also applied when the maximum soil sampling depth was less than 20 cm.</p> </li> <li> <p>Spline: When the sampling depth did not include 20 cm but extended beyond it, a spline interpolation was applied. This method employs all available cumulative values and their associated depths to estimate the SOC stock at 20 cm.</p> </li> </ul> </ul> <h3>Additional Observations</h3> <ul> <li> <p>For sites listed in rows 200-216, the GPS position represents the plot´s centroid, as no specific location was reported.</p> </li> <li> <p>For sites listed in rows 344-633, sampling was conducted at 0-7.5 cm, 7.5-15 cm, and 15-30 cm depth. In sites where the total depth was 15 cm, bulk density was measured only in the first layer (0-7.5 cm), and this value was also applied to the 7.5-15 cm layer. In sites where the total depth was 20 cm, bulk density was measured in all layers and calculated for 20 cm as a weighted average.</p> </li> <li> <p>For sites listed in rows 102-134, bulk density measurements were not taken directly. Instead, data were retrieved from the "SoilGrids" website (<a href="https://soilgrids.org/">https://soilgrids.org/</a>). Bulk density values for the 0-5 cm and 5-15 cm layers were downloaded, and a weighted average was calculated before determining the SOC stock.</p> </li> </ul> <h3> </h3> <h3>Funding:</h3> <p>Funded were provided by ANII (FSDA_1_2018_1_154817, Procesos Inductivos para generación de buenas prácticas agropecuarias: Compilación y análisis de bases de datos a nivel predial; FSA_1_2022_1_175272, Evaluación multiescalar del desempeño ambiental de sistemas agropecuarios con diferente nivel de intensificación a partir de indicadores derivados de sensores remotos); INIA (FPTA-515, Indicadores de sostenibilidad ambiental para el sector agropecuario de Uruguay basados en información derivada de sensores remotos y modelos biofísicos); and IDB (URUGUAY/UR-T1277, Adopción de prácticas Agroecológicas y Huella de Carbono en la Agricultura Uruguaya).</p> <p> </p>
Organic matter properties of the Rincon del Bonete and Palmar sediment cores (Uruguay)
<p>This database presents the results of organic matter measurements performed on cores collected in the Rincon del Bonete and Palmar reservoirs (Uruguay)</p> <p>IRMS analyses were conducted on dry sediment for determining organic matter properties, including elemental concentrations (Total Organic Carbon – TOC, Total Nitrogen –TN, both expressed in %) and stable isotope measurements (δ<sup>13</sup>C and δ<sup>15</sup>N, expressed in ‰). These measurements were performed with a continuous flow Elementar® VarioPyro cube analyzer coupled to a Micromass® Isoprime IRMS available at the Alysés platform of the Institut de Recherche pour le Développement (Bondy, France)</p> <p>Sediment cores were collected on 2019/09/01 in the Palmar (PA-02) and Rincon del Bonete (RDB-01) reservoirs (Uruguay).</p> <p>Corresponding authors: anthony.foucher@lsce.ipsl.fr</p>
Results of fallout radionuclides in the Rincon del Bonete and Palmar sediment cores (Uruguay)
<p>This database presents the results of fallout radionuclides performed on cores collected in the Rincon del Bonete and Palmar reservoirs (Uruguay) the 2019/09/01. Link to the publication https://www.nature.com/articles/s41893-023-01074-z</p> <p>Gamma spectrometry measurements were obtained using coaxial N- and P- type HPGe detectors (Canberra/Ortec) available at the Laboratoire des Sciences du Climat et de l’Environnement (Gif-sur-Yvette, France) . All activities were decay-corrected to 2020/06/01</p> <p>Corresponding authors: anthony.foucher@lsce.ipsl.fr</p> <p> </p>
Unraveling the local and regional determinants of the high plant diversity at marine rocky outcrops in Uruguay
<p>This repository includes the data (environmental and species by plot) and codes associated to our work which analized <span><span>the high plant diversity reported in </span></span><span><span>Atlantic rocky outcrops of Uruguay. In this study we analyzed the local determinants and regional processes that could determine this high plant diversity. </span><span>Specifically, we evaluated the potential ro</span><span>le of the regional species pool diversity (through the presence of different species assemblages according to their preferential environment or vegetation type), and the local determinants of plant diversity in the coast-inland gradient of stress and disturbance.</span></span></p>
Figure 3 in First record of Pyrgotidae (Diptera, Tephritoidea) from Uruguay with two new synonyms in the genus Leptopyrgota Hendel
Figure 3. Holotype female of Leptopyrgota liae Bernardi,1991 (= L. albitarsis), habitus lateral view. Scale: 1.0 mm.
Figure 2 in First record of Pyrgotidae (Diptera, Tephritoidea) from Uruguay with two new synonyms in the genus Leptopyrgota Hendel
Figure 2. Holotype male of Leptopyrgota definienda Bernardi, 1991 (= L. albitarsis), habitus lateral view. Scale: 1.0 mm.
Figure 1 in First record of Pyrgotidae (Diptera, Tephritoidea) from Uruguay with two new synonyms in the genus Leptopyrgota Hendel
Figure 1. Holotype male of Leptopyrgota albitarsis Aczél, 1956, habitus lateral view. Scale: 1.0 mm. Modified from Mello (2011b).
AREA Webinars 2018: Universidad de la República - 10 años promoviendo la Educación Abierta en Uruguay y Latinoamérica
<p>Serie de webinars “Los desafíos de la Educación Abierta en Latinoamérica” de 2018</p> <p>Invitada Virginia Rodes (Universidad de la República, Uruguay).</p> <p>Organiza: A-REA y Aprender 3C. Apoyan: OKFN edu, ABGRA, UMET, RENABI.ar y Conocimiento GyF.</p>
CARACTERES MERISTICOS DEL HOLOTIPO in UN NUEVO GEKKONIDAE DEL URUGUAY
<p>CARACTERES MERISTICOS DEL HOLOTIPO</p><table><tbody><tr><th>Placas labiales superiores desde rostral hasta zona. do menor espesor labial</th><th>7 izquierda</th></tr><tr><th>8 derecha</th></tr></tbody><tbody><tr><th>Placas labiales inferiores desde sinfisal hasta borde masetero</th><td>6 izq.</td></tr><tr><td>5 der.</td></tr><tr><th>Gránulos dispuestos a lo ancho del área vertebral (fig. LA). (Planos próximos de 3 mm. al oquidistante a, ambos pàrvs de miembros)</th><td>4 máximo</td></tr><tr><td>mínimo</td></tr><tr><th>Número de filas de escamas carenadas (fig. 1, I -II -III -IV) separadas por gránulos</th><td>4 izq.</td></tr><tr><td>3 der.</td></tr><tr><th>Número de zonas de gránulos (fig. 1, A-B-C-D-E) separadas por filas de escamas carenadas</th><td>5</td></tr><tr><th>Recuento transversal zona B</th><td>2 máx.</td></tr><tr><td>1 mín.</td></tr><tr><th>Recuento transversal zona C</th><td>máx.</td></tr><tr><td>2 min.</td></tr><tr><td>1 máx.</td></tr><tr><th>Recuento transversal zona D</th><td>0 mín.</td></tr><tr><td>1 máx.</td></tr><tr><th>Recuento transversal zona E</th><td>0 mín.</td></tr><tr><th>Recuento transversal escamas carenadas lados cuerpo (fig. l, Y)</th><td>9 máx.</td></tr><tr><td>8 mín.</td></tr><tr><th>Recuento longitudinal escamas fila paramediana</th><td>46 (6+40)</td></tr><tr><td>19 máx.</td></tr><tr><th>Filas escamas ventrales</th><td>18 mín.</td></tr><tr><th>Láminas 4.° dedo pie izquierdo</th><td>15</td></tr></tbody></table>
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.