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555 results for “Rio de Janeiro”
Meteorological warnings issued by INMET for the Brazilian cities of Belém, Belo Horizonte, Porto Alegre, Rio de Janeiro, and São Paulo between 2021 and 2022
<p>The Brazilian National Institute of Meteorology (INMET, from the Portuguese "Instituto Nacional de Meteorologia'') is the Brazilian government agency responsible for monitoring, analysing and forecasting weather and climate. It provides meteorological warnings to be used by the local-level municipal authorities. </p> <p><strong>Data Content</strong></p> <p>INMET periodically publishes data on its website and provides them via XML RSS Feed. This dataset was collected from the RSS feeds mentioning the Brazilian cities of Belém located in the state of Pará, Belo Horizonte in Minas Gerais state, Porto Alegre in Rio Grande do Sul state, Rio de Janeiro in Rio de Janeiro state and São Paulo in São Paulo state from July/2021 to July/2022.</p> <p><strong>Data Structure</strong></p> <p>The description of columns collected from INMET warnings and stored in the warnings file (<em>inmet-meteorological-warnings-1658070001.csv</em>) is presented below. The warnings issued by INMET follow the Common Alerting Protocol (CAP). CAP provides an open, non-proprietary digital message format for all types of alerts and notifications [<em>Standard, OASIS (2010). Common Alerting Protocol Version 1.2. Jul, 1, pp. 1-47. <a href="http://docs.oasis-open.org/emergency/cap/v1.2/CAP-v1.2-os.html">http://docs.oasis-open.org/emergency/cap/v1.2/CAP-v1.2-os.html</a> </em>]. </p> <p>Columns:</p> <ul> <li><em>CITY</em>: Name of the city for which the warning was issued.</li> <li><em>STATE</em>: The Brazilian acronym for the state in which the city is located, for example, MG for Minas Gerais.</li> <li><em>CITYCODE</em>: Unique numeric code for the city for which the warning was issued.</li> <li><em>IDENTIFIER:</em> Unique identifier to INMET warning. </li> <li><em>RESPONSETYPE</em>: Reaction to the warning.</li> <li><em>URGENCY</em>: Urgency for taking action. For example, “Prepare”.</li> <li><em>SEVERITY</em>: Severity of the meteorological event. For example, “Future”</li> <li><em>CERTAINTY</em>: How likely is the event to happen? For example, “Observed” - Determined to have occurred or to be ongoing; “Likely” - (p > ~50%); “Possible” - Possible but not likely (p <= ~50%).</li> <li><em>WARNING</em>: Standardized type of warning. For example, "Aviso de Acumulado de Chuva", "Aviso de Tempestade", "Aviso de Declínio de Temperatura".</li> <li><em>TIMESTAMPDATEONSE</em>: Unix timestamp of the minimum time at which the event is expected to start.</li> <li><em>TIMESTAMPDATEEXPIRES</em>: Unix timestamp of the maximum at which the event is expected to occur or the warning expires.</li> <li><em>COLORRISK</em>: Event colour in hexadecimal following the INMET nomenclature, with yellow meaning potential danger, orange indicating danger, and red indicating great danger.</li> <li><em>BASESOURCE</em>: INMET RSS XML file from which the warning was extracted.</li> </ul>
A comprehensive floristic knowledge of the largest Atlantic Forest fragment of the Fluminense Paraíba do Sul River Valley, Rio de Janeiro, Brazil
<p>The “<em>Serra da Concórdia</em>” is part of the Atlantic Forest phytogeographical domain in the Brazilian state of Rio de Janeiro and it has a predominant phytophysiognomy of Semideciduous Seasonal Forest. This region underwent intense habitat loss and fragmentation during the 19<sup>th</sup> century, due to coffee plantations and later pastures. With the decline of these activities, the areas were abandoned, triggering secondary succession. In 2002, the “<em>Parque Estadual da Serra da Concórdia</em>” was established in this region to preserve the remaining forest fragments. The updated list of vascular plants recorded in this protected area, published in the “<em>Catálogo de Plantas das Unidades de Conservação do Brasil</em>”, is presented here, along with information on richness, endemism, and conservation status.</p>
The virus and socioeconomic inequality: An agent-based model to simulate and assess the impact of interventions to reduce the spread of COVID-19 in Rio de Janeiro, Brazil
<p>This video shows de simulation of scenarios presented in the article "The virus and socioeconomic inequality: An agent-based model to simulate and assess the impact of interventions to reduce the spread of COVID-19 in Rio de Janeiro, Brazil"</p>
Figure 1 in First record of Corydalus diasi Navás, 1915 (Megaloptera: Corydalidae) from Rio de Janeiro state, Brazil
Figure 1. Corydalus diasi Navás, 1915 from Itatiaia municipality, Rio de Janeiro. A-C. Dorsal view of the male. B-D. Dorsal view of the female. Scale: 10 mm. / Figura 1. Corydalus diasi Navás, 1915 del municipio de Itatiaia, Río de Janeiro. A-C. Vista dorsal del macho. B-D. Vista dorsal de la hembra. Escala: 10 mm.
Figure 3 in First record of Corydalus diasi Navás, 1915 (Megaloptera: Corydalidae) from Rio de Janeiro state, Brazil
Figure 3. Distributional map of Corydalus diasi Navás, 1915 from Rio de Janeiro state. / Figura 3. Mapa de distribución de Corydalus diasi Navás, 1915 en el estado de Río de Janeiro.
Figure 2 in First record of Corydalus diasi Navás, 1915 (Megaloptera: Corydalidae) from Rio de Janeiro state, Brazil
Figure 2. Corydalus diasi Navás, 1915 genital structures. A-D. Itatiaia male genitalia. A. Dorsal view. B. Ventral view. C. Lateral view. D. Gonostylus 10. E. Female genitalia. F. Nova Iguaçu's male genitalia, ventral view. Abbreviations: ect, ectoproct; Gst9, gonostylus 9; Gcx9-Gcx10, gonocoxites 9 and 10, Gst10, gonostylus 10; S8-9, sternites 8-9; T8-9, tergites 8-9. Scale: 1 mm. / Figura 2. Estructuras genitales de Corydalus diasi Navás, 1915. A-D. Genitalia del macho de Itatiaia. A. Vista dorsal. B. Vista ventral. C. Vista lateral. D. Gonostilo 10. E. Genitalia de la hembra. F. Genitalia del macho de Nova Iguaçu, vista ventral. Abreviaturas: ect, ectoprocto; Gst9, gonostilo 9; Gxt9, gonocoxito 9, Gst10, gonostilo 10; S8-9, esternitos 8-9; T8-9, terguitos 8-9. Escala: 1 mm.
Fig. 2 in A new species of Sinningia Nees (Gesneriaceae) from Espírito Santo and Rio de Janeiro states, Brazil
Fig. 2. – Living plant in situ of Sinningia bragae Chautems, M. Peixoto & Rossini. [Photo: J. M. A. Braga]
Fig. 3 in A new species of Sinningia Nees (Gesneriaceae) from Espírito Santo and Rio de Janeiro states, Brazil
Fig. 3. – Geographic distribution of Sinningia bragae Chautems, M. Peixoto et Rossini in Rio de Janeiro (RJ) and S. aghensis Chautems.
Fig. 1 in A new species of Sinningia Nees (Gesneriaceae) from Espírito Santo and Rio de Janeiro states, Brazil
Fig. 1. – Sinningia bragae Chautems, M. Peixoto & Rossini. A. Habit; B. Detail of the insertion of the peduncles; C. Flower (side view); D. Flower (front view); E. Insertion of stamens in the corolla; F. Anthers on the dorsal and ventral surface; G. Ovary and ventral nectary glands with corolla and two ventral lobes of the sepals removed; H. Dorsal gland nectary; I. Cross-section of the nectary glands. [Couto 963, MBML] [Drawn by Josiene Rossini]
Figs 1-4 in Report of the nest of Megachile (Moureapis) benigna (Hymenoptera: Megachilidae) from an urban environment, Rio de Janeiro, Brazil
Figs 1-4. Megachile (Moureapis) benigna Mitchell, 1930: 1, female spawned from the nest (habitus, lateral view); 2, nest collected in the trap-nest; 3, brood cell and round-shaped fragments of leaf forming the cell opercula; 4, different shapes of leaf fragments employed by the female foundress for nest building.
Figs 5, 6 in Report of the nest of Megachile (Moureapis) benigna (Hymenoptera: Megachilidae) from an urban environment, Rio de Janeiro, Brazil
Figs 5, 6. Pollen grains found in the pollen slides analysed from the nest: 5, Cyrtocymura sp. (Asteraceae); 6, Type Fabaceae pollen grain. Pollen grains magnified 40X. Scale bars = 10 µm.
Floristic survey of vascular plants of the Parque Estadual da Pedra Selada, Rio de Janeiro, Brazil
<p>The Atlantic Forest is one of the most diverse and threatened phytogeographical domains of the world. Despite that, it includes regions of poor floristic knowledge, even in protected areas. Although the importance of protected areas in conserving the Atlantic Forest hotspot is undisputed, it is necessary to recognize the floristic richness of these areas to propose effective conservation actions. In this sense, online databases have proved to be a promising tool for compiling species lists with relevant biodiversity information. This study is based on the list of vascular plants of the “Parque Estadual da Pedra Selada”, published in the “Catálogo de Plantas das Unidades de Conservação do Brasil’. It summarizes species richness, endemism, and conservation status of this protected area.</p>
Fig. 1–3 in A new species of Eimeria Schneider, 1875 from the Serra dos Órgãos National Park, Rio de Janeiro, Brazil, with notes on its endogenous development in the montane grass mouse, Akodon montensis Thomas, 1913 (Rodentia: Sigmodontinae)
Fig. 1–3 Nomarski interference-contrast photomicrographs of Eimeria akodonensis n. sp. from the montane grass mouse, Akodon montensis. Presence of oocyst residuum (Or) and highly refractile polar granule (Pg); Sporocyst residuum (Sr); wall (Ow); Stieda body (Sb); sporozoite (Sp). Scale bar = 10 μm
Fig. 5–12 in A new species of Eimeria Schneider, 1875 from the Serra dos Órgãos National Park, Rio de Janeiro, Brazil, with notes on its endogenous development in the montane grass mouse, Akodon montensis Thomas, 1913 (Rodentia: Sigmodontinae)
Fig. 5–12 Light micrographs of the endogenous stages of Eimeria akodonensis n. sp. observed in the lamina propria of the small intestine of Akodon montensis, showing the microgamonts (Mi) and the parasitophorous vacuole in the host cell (Vp); microgametes (Mi); macrogamonts (Ma); nucleus (N) and the zygote (Zy) with wallforming bodies arranged around its periphery (Ow); oocyst (Oo). Scale bar = 10 μm
Fig. 4 in A new species of Eimeria Schneider, 1875 from the Serra dos Órgãos National Park, Rio de Janeiro, Brazil, with notes on its endogenous development in the montane grass mouse, Akodon montensis Thomas, 1913 (Rodentia: Sigmodontinae)
Fig. 4 Composite line drawing of the sporulated oocyst of Eimeria akodonensis n. sp. Scale bar = 10 μm
Figure 1 in Monitoring the feeding and parental care behavior of a pair of free-living owls (Tyto furcata) in the nest during the reproductive period in Rio de Janeiro, Brazil
Figure 1. Couple of Tyto furcata image captured by the security camera positioned opposite from the nest.Campos dos Goytacazes, RJ.
Figure 5 in Monitoring the feeding and parental care behavior of a pair of free-living owls (Tyto furcata) in the nest during the reproductive period in Rio de Janeiro, Brazil
Figure 5. Day frequency that the Tyto furcata family brought food to the nest. Campos dos Goytacazes, RJ.
Figure 4 in Monitoring the feeding and parental care behavior of a pair of free-living owls (Tyto furcata) in the nest during the reproductive period in Rio de Janeiro, Brazil
Figure 4. Frequency that the Tyto furcata parents bring the chicks near themselves (July and August, 2017). Campos dos Goytacazes, RJ.
Figure 6 in Monitoring the feeding and parental care behavior of a pair of free-living owls (Tyto furcata) in the nest during the reproductive period in Rio de Janeiro, Brazil
Figure 6. Day frequency that the Tyto furcata family brought food to the nest, from laying the eggs until the chicks left the nest. Campos dos Goytacazes, RJ.
Figure 3 in Monitoring the feeding and parental care behavior of a pair of free-living owls (Tyto furcata) in the nest during the reproductive period in Rio de Janeiro, Brazil
Figure 3. Observation of the Tyto furcata family in the nest. (A) Female sitting on eggs in the artificial nest; (B) 25-day-old chicks; (C) Adult owl bringing food to the chicks; (D) Chicks feeding alone in the nest. Campos dos Goytacazes, RJ.
ScienceDex guides
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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.