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92 results for “Fauna surveys”

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edi48/100

Count data of air-breathing fauna from visual transect surveys including water temperature, time, sea and weather conditions in Shark Bay Marine Park, Western Australia from February 2008 to July 2014

This dataset provides information on the relative abundances of air breathing fauna (dugongs, dolphins, sea snakes, marine birds, and sea turtles) in the study area of the Eastern Gulf of Shark Bay, Western Australia. The dataset comprises transects that quantify animal abundances in three microhabitats (shallow seagrass banks, seagrass bank edges, and deep sandy channels). These microhabitats vary in their food supply as well as their potential to facilitate or inhibit detection and escape from predators, mainly the tiger shark (Galeocerdo cuvier). As a result these data have been used to examine risk-specific habitat use behaviors of these fauna, in addition to general abundance estimates.

openCC (other)Dec 2019View details →
edi44/100

Biodiversity - Fauna - Bird Survey (Reformatted to the ecocomDP Design Pattern)

This data package is formatted as an ecocomDP (Ecological Community Data Pattern). For more information on ecocomDP see https://github.com/EDIorg/ecocomDP. This Level 1 data package was derived from the Level 0 data package found here: https://pasta.lternet.edu/package/metadata/eml/knb-lter-bes/543/170. The abstract below was extracted from the Level 0 data package and is included for context: This dataset is associated with BES Bird Monitoring Bird Monitoring Project: ================= The BES Bird Monitoring Project is a breeding bird survey designed to find out what birds are found in the breeding season in Baltimore and where. Our monitoring efforts will show associations among block group socioeconomic variables, land cover, land use, and habitat features with breeding bird abundance, to provide information for land managers on possible consequences of land use changes on bird communities. A distinguishing feature of the bird monitoring at BES LTER, relative to other urban bird work, is the capacity for long-term monitoring of features at multiple scales through links to other parts of the project. Different processes influence habitat for birds at different scales, e.g. ongoing household level human decision-making at lot scale vs. block or neighborhood scale abandonment/re-development. Our project seeks to understand how these processes impact bird occurrence, abundance, and composition differ at the lot, block and neighborhood scale. The database consists of four tables. Sites, Surveys, Taxalist, and Birds. Sites records thje sites and their characteristics. Surveys describe the actual outings or sampling sessions. They describe the weather, the temperature, the sites visited. Taxalist provides the integration of speciaies abbreviations and common names, and Birds describes the actual sightings, linking to the other three tables. Attribute information: The tables form a set. Here are the fields and relationship information: Surveys: site_id FK->Sites[site_id

openCustomAug 2021View details →
zenodo40/100

FIG. 16 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 16. — Rarefaction curve on Dolichopodidae identified to (morpho)species level collected by combined various methods at Mitaraka.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 15 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 15. — Photos of selected Mitaraka Dolichopodidae: A, Medetera sp. GF-005, ♂; B, Tachytrechus sp. GF-005, ♂; C, Thrypticus sp. GF-004, ♂; D, species sp. GF-001 of Achalcinae new genus, ♂; E, species sp. GF-001 of incertae sedis, ♂; F, species sp. GF-002 of Peloropeodinae new genus, ♂. Photos: Florence Trus, except for E, Camille Locatelli.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 3 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 3. — Tropical lowland rainforest in Mitaraka area: A, hilly aspect of Mitaraka lowland rainforest, viewed from top of inselberg; B, hill top (site MIT-C-TOP); C, river bank forest / palm swamp (site MIT-C-RBF); D, river bank forest / palm swamp (site MIT-C-RBF2); E, bank of river Alama near drop zone (site nr MIT-DZ- RBF). Photos: Marc Pollet, except for A, Xavier Desmier.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 9 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 9. — Total number of Dolichopodidae (Diptera) specimens per collecting method at Mitaraka. For explanation of collecting method abbreviations, see Table 1.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 5 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 5. — Sampling methods for Diptera employed at Mitaraka: A, quadrate Malaise trap (SLAM) in operation on drop zone; B, 6 m long Malaise trap installed over Alama River; C, flight Intercept Trap (FIT) in rain forest at Mitaraka; D, coloured pan traps in river bed forest (MIT-A-RBF); E, yellow pan trap at hill top (MIT-C-TOP) with yield of 6 days; F, senior author during pan trap servicing procedure. Photos: A, D, E, Marc Pollet; B, C, Julien Touroult; F, Xavier Desmier.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 14 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 14. — Photos of selected Mitaraka Dolichopodidae: A, Chrysotus sp. GF-010, ♂; B, Chrysotus sp. GF-021, ♂; C, Cheiromyia pennaticornis (Parent, 1931), ♂; D, Paraclius sp. GF-005, ♂; E, Pelastoneurus sp. GF-002, ♂; F, Medetera sp. GF-001, ♂. Photos: Florence Trus.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 2 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 2. — Minor and major rocky outcrops in Mitaraka area: A, 'savane roche' with Pitcairnia sp. vegetation (site MIT-E-savane roche 2); B, Dr Rémy Pignoux on 'savane roche' with wet rocks (site MIT-C-savane roche); C, inselberg Sommet-en-Cloche; D, inselberg Sommet-en-Cloche, wet rocks; E, inselberg Borne 1, general view; F, inselberg Borne 1, with permanent seeps. Photos: Marc Pollet, except for C, Xavier Desmier.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 8 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 8. — Total number of Dolichopodidae (Diptera) species per collecting method at Mitaraka. For explanation of collecting method abbreviations, see Table 1. Unique species refer to species that were collected with one single method.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 1 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 1. — Map of French Guiana with Mitaraka region indicated by white box in southwesternmost corner of this part of South America.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 12 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 12. — Distribution pattern of Dolichopodidae (Diptera) species over Mitaraka habitat types. Habitat types: RB, river bank; RBF, river bank forest; SL, slope; TOP, hill top; DZ + BC, drop zone + base camp; SAV, 'savane roche'; INS, inselberg. Unique species refer to species that were only collected in one single habitat type; other species were found in at least two habitat types.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 17 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 17. — Rarefaction curves on Dolichopodidae identified to (morpho)species level collected by various collecting methods at Mitaraka.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 10 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 10. — Comparison of Dolichopodidae (Diptera) yields among pan trap types across seven different sites at Mitaraka. Abbreviations: BPT, blue; WPT, white; YPT, yellow pan traps.

opencc-zeroOct 2018View details →
zenodo40/100

FIG. 6 in Dipterological survey in Mitaraka Massif (French Guiana) reveals megadiverse dolichopodid fauna with an unprecedented species richness in Paraclius Loew, 1864 (Diptera: Dolichopodidae)

FIG. 6. — Diptera pan trap and sweep net sampling sites at Mitaraka. Yellow line marks the approximate border between French Guiana (north) and Brazil (south). Brown areas are rocky outcrops ('savanes roches' and inselbergs). For explation of sampling site codes, see Text and Tables 2, 3.

opencc-zeroOct 2018View details →
zenodo40/100

Camera trap fauna survey in Talissieu (France) 2016-2018

<p>Mammals and birds presence identified from a camera trap survey in a mixed forest and fields environment in the Lavours marsh (France). This dataset gathers observations from April 2016 to November 2018 (with some missing days) from a single camera trap (2 successive models) placed in different locations in Talissieu (Ain, France).</p> <p>See <a href="https://doi.org/10.5281/zenodo.2533381">doi:10.5281/zenodo.2533381</a> for more information.</p> <p>location : 5.7211 45.8625 (WGS84)</p> <p>fields :</p> <pre>id_obs &lt;int&gt; identifier date_heure &lt;dttm&gt; UTC date time of observation (%Y-%m-%dT%H:%M:%SZ) cd_nom_taxref &lt;int&gt; TAXREF taxon identifier see https://inpn.mnhn.fr/programme/referentiel-taxonomique-taxref taxref_cd_ref &lt;int&gt; TAXREF valid taxon identifier taxon &lt;chr&gt; taxon name (binomial) espece &lt;chr&gt; taxon name (vernacular, french) nom_complet &lt;chr&gt; taxon name (binomial with author) nom_complet_html &lt;chr&gt; taxon name (binomial italicized, with author) classe &lt;chr&gt; class ordre &lt;chr&gt; order famille &lt;chr&gt; family rang &lt;chr&gt; rank (ES : species, GN : genus, FM : family, OR : order, CL : class) effectif &lt;int&gt; number of individuals sexe &lt;chr&gt; sex type &lt;chr&gt; V: visual direction &lt;chr&gt; direction of travel (mostly blank) temperature &lt;int&gt; ambiant temperature (&deg;C) duree_estimee_min &lt;int&gt; duration in frame (min) rem_obs &lt;chr&gt; observation note id_session &lt;int&gt; session identifier debut_session &lt;dttm&gt; session date time start UTC (%Y-%m-%dT%H:%M:%SZ) fin_session &lt;dttm&gt; session date time end UTC (%Y-%m-%dT%H:%M:%SZ) duree_session_h &lt;int&gt; session duration (h) rem_session &lt;chr&gt; session note id_localisation &lt;int&gt; camera trap location identifier lieu &lt;chr&gt; camera trap location name x_wgs84 &lt;dbl&gt; camera trap longitude (decimal degrees WGS84) y_wgs84 &lt;dbl&gt; camera trap latitude (decimal degrees WGS84) alti &lt;int&gt; camera trap altitude (m, NGF) azimuth &lt;int&gt; camera trap azimuth (&deg;) habitat &lt;chr&gt; habitat type environnement &lt;chr&gt; local environment type cible &lt;chr&gt; target camera &lt;chr&gt; camera model id_etude &lt;int&gt; study identifier nom_etude &lt;chr&gt; study name date &lt;date&gt; observation date (%Y-%m-%d) heure &lt;dbl&gt; observation hour (%I, UTC)</pre> <p>&nbsp;</p>

openodc-odblJan 2019View details →
zenodo40/100

Text-fig. 5. The generic composition of the rodent faunas on the family and subfamily level. The black line sets apart subfamilies of the Muridae (right side) from other rodents (left). The proportion of murid genera increases over time. in Generically Speaking, A Survey On Neogene Rodent Diversity At The Genus Level In The Now Database

Text-fig. 5. The generic composition of the rodent faunas on the family and subfamily level. The black line sets apart subfamilies of the Muridae (right side) from other rodents (left). The proportion of murid genera increases over time.

opencc-by-4.0Nov 2020View details →
zenodo40/100

Figure 3 in Fish fauna survey on the Upper Maroni (French Guyana) between 2000 and 2002 with some ecological considerations

Figure 3. – Water level at Antecume Pata (A. Cognat data) with sampling assignments indicated 51 – M5).

opencc-by-4.0Mar 2018View details →
zenodo40/100

Figure 1 in Fish fauna survey on the Upper Maroni (French Guyana) between 2000 and 2002 with some ecological considerations

Figure 1. – Maps of the region of Antecume Pata and location of the 3 sites around Antecume Pata and the site upstream (Pilikisoula), from left to right: location of the sites on a geographical map, on the hydrographical map, and detail on the location of the sites at Antécume Pata (© Google – Image Landat / Copernicus).

opencc-by-4.0Mar 2018View details →
edi40/100

Biodiversity - Fauna - Bird Survey (Reformatted to a Darwin Core Archive)

This data package is formatted as a Darwin Core Archive (DwC-A, event core). For more information on Darwin Core see https://www.tdwg.org/standards/dwc/. This Level 2 data package was derived from the Level 1 data package found here: https://pasta.lternet.edu/package/metadata/eml/edi/191/4, which was derived from the Level 0 data package found here: https://pasta.lternet.edu/package/metadata/eml/knb-lter-bes/543/170. The abstract below was extracted from the Level 0 data package and is included for context: This dataset is associated with BES Bird Monitoring Bird Monitoring Project: ================= The BES Bird Monitoring Project is a breeding bird survey designed to find out what birds are found in the breeding season in Baltimore and where. Our monitoring efforts will show associations among block group socioeconomic variables, land cover, land use, and habitat features with breeding bird abundance, to provide information for land managers on possible consequences of land use changes on bird communities. A distinguishing feature of the bird monitoring at BES LTER, relative to other urban bird work, is the capacity for long-term monitoring of features at multiple scales through links to other parts of the project. Different processes influence habitat for birds at different scales, e.g. ongoing household level human decision-making at lot scale vs. block or neighborhood scale abandonment/re-development. Our project seeks to understand how these processes impact bird occurrence, abundance, and composition differ at the lot, block and neighborhood scale. The database consists of four tables. Sites, Surveys, Taxalist, and Birds. Sites records thje sites and their characteristics. Surveys describe the actual outings or sampling sessions. They describe the weather, the temperature, the sites visited. Taxalist provides the integration of speciaies abbreviations and common names, and Birds describes the actual sightings, linking to the other three tables. Attribute info

openCustomAug 2021View details →

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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.

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Last verified 2026-04-29Open record