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Figure 6 in New distributional records of family Vespidae (Insecta: Hymenoptera) from Great Nicobar Biosphere Reserve, Andaman and Nicobar Islands, India
Figure 6. Polistes (Polistella) stigma sauensis Peterson, ♂. Material examined: India: Andaman and Nicobar Island, Nicobar Watch Tower, 1♂, 8.xi.2018, Coll. K.C. Gopi and Party, NZC Regd. No. 25172/H3. Distribution: India: Andaman and Nicobar Islands (Das and Gupta, 1989).
Fig. 4 in Dry psammophytic non-forest vegetation of the TĜeboĖsko Biosphere Reserve (Czech Republic)
Fig. 4. Acidophilous grassland dominated by Festuca ovina (Jasiono montanae-Festucetum ovinae) with Scleranthus perennis, Lychnis viscaria and Teesdalia nudicalis on the slope of a Quarternary gravel-sand terrace NE of the Tušť village. The stand is spontaneously invaded by Betula pendula, Pinus sylvestris, and Quercus robur (May 21, 2005, photo by K. Boublík).
Fig. 1 in Dry psammophytic non-forest vegetation of the TĜeboĖsko Biosphere Reserve (Czech Republic)
Fig. 1. Location of the study area in the Czech Republic. The TřeboĖsko Biosphere Reserve is shaded.
Fig. 3 in Dry psammophytic non-forest vegetation of the TĜeboĖsko Biosphere Reserve (Czech Republic)
Fig. 3. Box-and-whisker plots of the mean site Ellenberg indicator values for light, temperature, continentality, moisture, soil calcium, and macronutrients for each of the distinguished vegetation groups (numbers 1–10, see text and table 1). Species richness of the particular vegetation groups expressed as the Shannon-Weaner index of diversity is also shown. Boxes represent mean values ± SD, whiskers are non-outlier min-max values. Significance test using Tukey HSD test for comparison of vegetation groups was performed and it proved significant differences between markedly shifted groups (p <0.05). Results are not shown due to overflow of graphs with letters.
Fig. 2 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 2. (A) A downward vertical view (in situ) of Aechmea zebrina (foreground center left, and at lower elevation in upper right and center right) and a cluster of Aechmea tessmannii (center, with one in bloom) bromeliads in the tree canopy from ~34 m. (B) A community of A. zebrina bromeliads at ~38 m (in situ). (C) An A. zebrina bromeliad (ex situ) inside screen tent being measured and prepared for dismantling, collected from ~44 m in the canopy. Notice the more upright leaves and reddish color because of increased sun exposure due to high canopy location.
Fig. 5 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 5. Box plots of recorded habitat variables for Aechmea zebrina bromeliads collected from all trees, bromeliads with ≥1 metamorphosed anuran, and bromeliads absent of anurans. Asterisks represent the mean, open circles are outliers, horizontal line inside box is the median, top and bottom lines of the rectangle are the 3rd and 1st quartiles (Q3 and Q1), respectively, and the top and bottom whiskers are maximum and minimum values excluding outliers, respectfully.
Fig. 1 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 1. (A) Map of South America with Ecuador (shaded light blue) and Yasuní National Park (solid dark green) highlighted. The Amazon ecoregion is outlined with light green line. (B) Northeastern section of Yasuní National Park (light gray line) and surrounding region where trees were sampled for Aechmea zebrina bromeliads within the vicinity of the Tiputini Biodiversity Station – Universidad San Francisco de Quito (TBS) and the Yasuní Research Station – Pontificia Universidad Católica del Ecuador (YRS). (C) Detail of TBS where trees were sampled for A. zebrina bromeliads. Note: Map is modified from Figure 2 in McCracken and Forstner (2014) and used under the Creative Commons Attribution license.
Fig. 4 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 4. The Banded cat-eyed snake, Leptodeira annulata, collected in an Aechmea zebrina bromeliad at 43.5 m above the forest floor.
Fig. 3. A in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 3. A collection of anurans collected from Aechmea zebrina bromeliads. (A) Pristimantis aureolineatus hiding in leaf axil, and (B) on a leaf of A. zebrina. (C) Pristimantis waoranii emerging from leaf axil, and (D) on a leaf of A. zebrina. (E) Ranitomeya ventrimaculata and (F) Scinax ruber collected from A. zebrina bromeliads.
Linked collectors and determiners for: Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia.
Natural history specimen data linked to collectors and determiners held within, "Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/2f313cb8-d57b-43ac-a1d5-f6cefc2c1ce2">https://bionomia.net/dataset/2f313cb8-d57b-43ac-a1d5-f6cefc2c1ce2</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/2f313cb8-d57b-43ac-a1d5-f6cefc2c1ce2">https://gbif.org/dataset/2f313cb8-d57b-43ac-a1d5-f6cefc2c1ce2</a>. Formatted as a Frictionless Data package.
Figure 1 in Faunal diversity of rotifers (Rotifera: Eurotatoria) of Nokrek Biosphere Reserve, Meghalaya, India
Figure 1. District map of Meghalaya showing location of Nokrek (inset map of India showing locationof Meghalaya State)
Figure 1 in Description of two new species of the genus Fimbristylis Vahl. (Cyperaceae) from Velliangiri Hills, Nilgiri Biosphere Reserve, India
Figure 1. Fimbristylis matthewii sp. nov. A - habitat; B - spikelet; C,D - glume; E,F - pistil; G - nut
Movement data from a Malayan krait (Bungarus candidus) tracked in the Sakaerat Biosphere Reserve, Nakhon Ratchasima province, Thailand
<p>Movement data gained through radio-telemetry of a single adult male Malayan krait (<em>Bungarus candidus</em>) among a protected forest of the Sakaerat Biosphere Reserve in Nakhon Ratchasima province, Thailand for a period of 103 days (with 90 location fixes/datapoints).</p> <p> </p> <p>BUCA40_movement_data.csv file column headings:</p> <p>track_ID: number corresponding to the location check datapoint</p> <p>animal_ID: <em>B. candidus</em> identifier number from the Sakaerat tracking project</p> <p>datetime: Date and time when the snake was located (mm/dd/yyyy hh:mm)</p> <p>easting: UTM easting (UTM Zone 47N; Datum WGS84)</p> <p>northing: UTM northing (UTM Zone 47N; Datum WGS84)</p> <p>utm_zone: Universal Transverse Mercator zone (47N World Geodetic System 84)</p> <p>GPS_accuracy: GPS location accuracy in meters (m)</p> <p>behavior: The animal’s behavior observed during the location check (e.g. sheltering, foraging, moving, or feeding)</p> <p>shelter_type: Identified selected shelter type</p> <p>habitat_type: Land-use type where the snake was located </p>
Fig. 2 in Aquatic food webs in mangrove and seagrass habitats of Centla Wetland, a Biosphere Reserve in Southeastern Mexico
Fig. 2. Mean (± S.D.) δ13C and δ15N values of consumers (fishes, crustaceans and mollusks) and primary producers in Polo Stream and San Pedrito Lagoon. Species identities are in Table 1.
Fig. 1 in Aquatic food webs in mangrove and seagrass habitats of Centla Wetland, a Biosphere Reserve in Southeastern Mexico
Fig. 1. Map depicting the location and extent of Centla Wetland Biosphere Reserve (CWBR) in Southern Mexico. The detailed study area map illustrates locations of field collections at Polo Stream and San Pedrito Lagoon along the Grijalva and Usumacinta Rivers in Tabasco, Mexico.
Zoning of UNESCO Biosphere Reserves in Europe
<p>UNESCO biosphere reserves are committed to a unique concept of sustainable land use deploying gradients of land use intensity from strict nature conservation in core zones to socio-culturally sustainable activity in transition areas. Cross-regional research on benefits and trade-offs that may arise from the management of biosphere reserves is one important goal of the UNESCO Man and the Biosphere programme. So far such research has been challenging due to the lack of a comprehensive spatial dataset covering the different zones reflecting different management restrictions of biosphere reserves. As aimed for in the Lima action plan, analyses of biosphere reserves as functioning models for working landscapes, can give relevant insights into their potential to balance biodiversity and ecosystem service provision. To fill this gap, we present a spatial dataset of European biosphere reserves (BRs) including their zones. The dataset can serve as a basis for analysing the effect of the zoning concept in order to fulfill the different functions that are specified by the Man and Biosphere programme. The dataset was compiled by integrating spatial data from various sources into one uniform dataset with standardised attributes.</p> <p><strong>List of data and content</strong></p> <ul> <li>BR_list_details: list of BRs as text file (*.csv)</li> <li>Vector_Data: boundaries of BRs incl. zonation as vector files (*.shp, *.geojson)</li> <li>LICENSE: details on the license as text file (*.txt)</li> </ul> <p><strong>License</strong><br> This work is licensed under the <a href="https://creativecommons.org/licenses/by-nc/4.0/">Creative Commons Attribution-NonCommercial 4.0 International License</a> (CC BY-NC 4.0).</p> <p><strong>Spatial reference</strong><br> Vector data is projected in Lambert azimuthal equal-area projection (<a href="https://spatialreference.org/ref/epsg/3035/">EPSG:3035</a>)</p> <p><strong>Data sources and processing</strong><br> For details on underlying data sources and on data processing please refer to the csv file and the linked publication.</p> <p><strong>Acknowledgments</strong><br> We thank UNESCO-MAB and UNEP-WCMC for advice on zoning data collection. We thank all national agencies, organisations and reserve administrations for providing data.</p> <p><strong>Related publication</strong><br> Palliwoda, J., Büermann, A., Fischer, J., Kraemer, R., Schröter, M (2021). Zoning of UNESCO Biosphere Reserves: a comprehensive set of geodata for Europe. Front. Ecol. Evol. doi: <a href="https://www.frontiersin.org/articles/10.3389/fevo.2021.736358/full">10.3389/fevo.2021.736358</a>.</p>
Curculionoidea of the MaB Monte Grappa Biosphere Reserve
<p>The present database represent the most updated recollection of faunistic and distribution data for the Cuculionoidea beetles recorded in the Man and Biosphere (MaB) Monte Grappa Biosphere Reserve.</p>
Fig. 12 in Species of Russula subgenera Archaeae, Compactae and Brevipedum (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 12. Basidiospores under scanning electron microscope of Russula japonica Hongo. A–C. GDGM79699. D. GDGM79704. E–F. GDGM79706. Scale bars = 1 µm.
Fig. 7. Russula reticulofolia Y in Species of Russula subgenera Archaeae, Compactae and Brevipedum (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 7. Russula reticulofolia Y.Song sp. nov., holotype (GDGM79559) (A–B, E–F), GDGM79560 (C– D). A–D. Fruiting bodies. E–F. Basidiospores under scanning electron microscope. Scale bars: A–D = 1 cm; E–F = 2 µm.
Fig. 6. Russula lacteocarpa Y in Species of Russula subgenera Archaeae, Compactae and Brevipedum (Russulaceae, Basidiomycota) from Dinghushan Biosphere Reserve
Fig. 6. Russula lacteocarpa Y.Song sp. nov., holotype (GDGM79555). A. Basidia. B. Pleurocystidia. C. Cheilocystidia. D. Terminal cells and incrustations. E. Caulocystidia. F. Pileocystidia. Scale bars = 10 µm.
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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.