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Fig. 6 in Herpetofauna of Marechal Newton Cavalcanti Instruction Center, a hotspot Atlantic Forest fragment in Pernambuco, north-eastern Brazil

Fig. 6. Snakes species found in the Marechal Newton Cavalcanti Instruction Center Atlantic Forest fragment. (A) Boa constrictor (Linneaus, 1758); (B) Epicrates cenchria (Linneaus, 1758); (C) Chironius flavolineatus (Jan, 1863); (D) Dendrophidion atlantica (Freire, Caramaschi, and Gonçalves, 2010); (E) Spilotes pullatus (Linneaus, 1758); (F) Tantilla melanocephala (Linneaus, 1758); (G) Erythrolamprus almadensis (Wagler, 1824); (H) Erythrolamprus poecilogyrus (Wied-Neuwied, 1825); (I) Erythrolamprus viridis (Wagler, 1824); (J) Helicops angulatus (Linneaus, 1758); (K) Oxybelis aeneus (Wagler, 1824); (L) Oxyrhopus petolarius (Linneaus, 1758); (M) Oxyrhopus trigeminus (Duméril, Bibron, and Dumeril, 1854); (N) Philodryas olferssi (Lichtenstein, 1823); (O) Philodryas patagoniensis (Girard, 1825); (P) Sibynomorphus neuwiedi (Ihering, 1911); (Q) Siphlophis compressus (Daundin, 1803); (R) Xenodon merremii (Wagler, 1824); (S) Thamnodynastes pallidus (Linneaus, 1758); (T) Micrurus leminiscatus (Linneaus, 1758); (U) Micrurus ibiboboca (Merrem, 1820); (V) Amerotyphlops brongersmianus (Vanzolini, 1976); (W) Crotalus durissus (Linneaus, 1758); (X) Lachesis muta (Linneaus, 1766). Photos: M.A. Freitas.

opencc-by-4.0Aug 2021View details →
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Fig. 5 in Herpetofauna of Marechal Newton Cavalcanti Instruction Center, a hotspot Atlantic Forest fragment in Pernambuco, north-eastern Brazil

Fig. 5. Lacertid species found in the Marechal Newton Cavalcanti Instruction Center Atlantic Forest fragment. (A) Enyalius catenatus (Wied-Neuwied, 1821); (B) Gymnodactylus aff. darwinii (Gray, 1845); (C) Norops fuscoauratus (D'Orbigny, 1837); (D) Tropidurus hispidus (Spix, 1825); (E) Tropidurus semitaeniatus (Spix, 1825); (F) Ameiva ameiva (Linneaus, 1758); (G) Ameivula ocellifera (Spix, 1825); (H) Salvator merianae (Dumeril and Bíbron, 1839); (I) Kentropyx calcarata (Spix, 1825); (J) Cercosaura ocellata (Weagler, 1830); (K) Hemidactylus mabouia (Moreau de Jonnés, 1818); (L) Iguana iguana (Linneaus, 1758); (M) Coleodactylus meridionalis (Boulenger, 1888); (N) Polychrus marmoratus (Linneaus, 1758); (O) Strobilurus torquatus (Wiegmann, 1834). Photos: M.A. Freitas.

opencc-by-4.0Aug 2021View details →
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Figure 2 in First record of Polymixia nobilis Lowe, 1836 (Polymixiidae) for Eastern Central Atlantic, São Tomé Island

Figure 2. – Polymixia nobilis Lowe, 1836 (MB06-005744) (SL = 291 mm) captured on 01 Oct. 1955 with bottom line off the north-eastern coast of S. Tomé Island, close to Gamboa Beach, by local fishermen. Photo by L.F. Lopes.

opencc-by-4.0Jul 2017View details →
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Figure 1 in First record of Polymixia nobilis Lowe, 1836 (Polymixiidae) for Eastern Central Atlantic, São Tomé Island

Figure 1. – Map of São Tomé Island (Gulf of Guinea, Atlantic Ocean) showing the capture site (*) of Polymixia nobilis at Gamboa Beach (0°22'47.17"N; 06°43'11.99"E).

opencc-by-4.0Jul 2017View details →
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Planetary Boundary Layer Height Retrievals from the Cloud-Aerosol Transport System (CATS) around the US Southern Great Plains and the Eastern North Atlantic

<p>Planetary Boundary Layer Height (PBLH) retrievals in kilometers from the Cloud-Aerosol Transport System (CATS) around the DOE ARM US Southern Great Plains (SGP) and the Eastern North Atlantic (ENA), using a modified version of the Different Thermo-Dynamics Stability (DTDS) &nbsp;algorithm. Quality control Flags are included as follows:</p> <ul> <li>0 = 'Good Quality'</li> <li>1 = 'Mediate Quality'</li> <li>2 = 'Bad Quality'</li> </ul> <p>In addition, -999 values in the dataset represent no data.&nbsp;<br>The PBLH for daytime denoised CATS photon counts at SGP is named: "daytime-denoised-dtds-pblh-sgp.csv"<br>The PBLH for the original daytime and nighttime data at SGP and ENA, without denoising the data, are named: "original-cats-dtds-pblh-daytime-nighttime-sgp.csv" and "original-cats-dtds-pblh-daytime-nighttime-ena.csv"</p> <p>References:&nbsp;</p> <p>Rold&aacute;n-Henao, N., Yorks, J., Su, T., Selmer, P., &amp; Li, Z. (2024). Statistically Resolved Planetary Boundary Layer Height Diurnal Variability Using Spaceborne Lidar Data. <em>Remote Sensing.&nbsp;</em></p> <p>Su, T., Li, Z., &amp; Kahn, R. (2020). A new method to retrieve the diurnal variability of planetary boundary layer height from lidar under different thermodynamic stability conditions.&nbsp;<em>Remote Sensing of Environment</em>,&nbsp;<em>237</em>, 111519.</p>

opencc-by-4.0Aug 2024View details →
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Figure 2. - Trachinus pellegrini. A in On the presence of Trachinus pellegrini (Trachinidae) in the Canary and Cape Verde Islands (north-eastern Atlantic)

Figure 2. - Trachinus pellegrini. A: Juvenile from the Canary Islands (TFMC-VP/1947, 68.0 mm TL, 59.6 mm SL); B: Subadult from the Cape Verde Islands (MMF42285, 119 mm TL, 101 mm SL). Scale bars = 25 mm.

opencc-by-4.0Jun 2016View details →
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Figure 2 in New and rare records of teleost fishes from the Cape Verde Islands (eastern-central Atlantic Ocean)

Figure 2. ‑ First records of teleost fishes from the Cape Verde Islands. A: Gnathophis mystax, SL 365 mm, MMF39446; B: Nezumia africana, PAL 65.2 mm, MMF43121; C: Nezumia duodecim, PAL 72.8 mm, MMF39286; D: Ectreposebastes imus, SL 91 mm, MMF48816; E: Paraliparis sp., SL 251 mm, TFMC‑VP/01377; F: Lappanella fasciata, SL 140 mm, MMF42284. Scale bars = 20 mm.

opencc-by-4.0Dec 2014View details →
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Figure 1 in New and rare records of teleost fishes from the Cape Verde Islands (eastern-central Atlantic Ocean)

Figure 1. ‑ Collection locations for the first records of teleost fishes from the Cape Verde Islands: (Ì) 1: Gnathophis mystax; 2: Nezumia africana; 3: Nezumia duodecim; 4: Ectreposebastes imus; 5: Paraliparis sp.; 6: Lappanella fasciata.

opencc-by-4.0Dec 2014View details →
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Figure 3. - Collection locations for the new records from the Canaries. 1 in New records of non-indigenous fishes (Perciformes and Tetraodontiformes) from the Canary Islands (north-eastern Atlantic)

Figure 3. - Collection locations for the new records from the Canaries. 1: Holocentrus adscensionis, 2: Cephalopholis taeniops, 3: Paranthias furcifer, 4: Prognathodes marcellae, 5: Abudefduf saxatilis, 6: Abudefduf hoefleri, 7: Acanthurus bahianus, 8: Acanthurus coeruleus, 9: Acanthurus chirurgus, 10: Acanthurus monroviae, 11: Cantherhines pullus.

opencc-by-4.0Sep 2015View details →
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Figure 2 in New records of non-indigenous fishes (Perciformes and Tetraodontiformes) from the Canary Islands (north-eastern Atlantic)

Figure 2. - Non-native species introduced to the Canaries. A: Holocentrus adscensionis; B: Cephalopholis taeniops; C: Paranthias furcifer; D: Prognathodes marcellae; E: Abudefduf saxatilis; F: Abudefduf hoefleri; G: Acanthurus bahianus; H: Acanthurus coeruleus; I: Acanthurus chirurgus; J: Acanthurus monroviae; K: Cantherhines pullus. Scale bars = 5 cm.

opencc-by-4.0Sep 2015View details →
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Figure 9 in Diet of the barracuda Sphyraena guachancho in Côte d'Ivoire (Equatorial Eastern Atlantic Ocean)

Figure 9. - Fork length at first sexual maturity (L50) for Sphyraena guachancho caught in Côte d'Ivoire littoral from June 2010 to July 2011.

opencc-by-4.0Oct 2013View details →
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Figure 6 in Diet of the barracuda Sphyraena guachancho in Côte d'Ivoire (Equatorial Eastern Atlantic Ocean)

Figure 6. - Percentage of index of relative importance (IRI) for each prey of Sphyraeguachancho according to size classes.

opencc-by-4.0Oct 2013View details →
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Figure 7 in Diet of the barracuda Sphyraena guachancho in Côte d'Ivoire (Equatorial Eastern Atlantic Ocean)

Figure 7. - Hierarchical cluster analysis (Ward method) obtained from the matrix of percentages of IRI by items in the eight size classes.

opencc-by-4.0Oct 2013View details →
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Figure 5 in Diet of the barracuda Sphyraena guachancho in Côte d'Ivoire (Equatorial Eastern Atlantic Ocean)

Figure 5. - Percentage of index of relative importance (IRI) for each prey of Sphyraena guachancho according to seasons. GCS = Great Cold Season, GDS = Great Dry Season, LCS = Low Cold Season, LDS = Low Dry Season.

opencc-by-4.0Oct 2013View details →
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Figure 4 in Diet of the barracuda Sphyraena guachancho in Côte d'Ivoire (Equatorial Eastern Atlantic Ocean)

Figure 4. - Vacuity index percentage by size-classes of five centi- metres. Length is fork length (cm). The number above each histogram correspond to the number of stomachs examined. Figure 3. - Vacuity index by seasons; in Great Cold Season (GCS), Low Cold Season (LCS), Great Dry Season (GDS) and Low Dry Season (LDS). The number above each histogram correspond to General profile of the diet the number of stomachs examined. A total of 12 families of teleost fish and invertebrates were found in the stomachs of Sphyraena guachancho The mean vacuity index was 59.7% but varied with season (Tab. I). Prey families were divided mainly into teleost fish (Fig. 3). It was significantly higher in GCS (71.3%) than in (9), cephalopods (2) and Malacostraca (1). It was noted LCS (48.9%; χ2 = 4.2896; df = 1, p = 0.038). In the GDS that these categories are ingested in different proportions and LDS, the vacuity percentages were similar (respec- throughout the size class and marine seasons. The main tively 53.7% and 54.9%). All size classes had close vacuity prey of S. guachancho were the clupeids Sardinella spp. index values ranging from 55 to 72.1%, with the exception (IRI = 22.5%) and Ethmalosa fimbriata (IRI = 18.8%) and of 49-54 cm size class which had the lowest index (33.3%; the cephalopod Teuthida spp. (IRI = 14.0%). Secondary prey Fig. 4). were the shrimp Penaeus spp. (IRI = 12.4%) and the carangid Trachurus trecae (IRI = 9.2%). Table I. - List of prey found in the stomachs of Sphyraena guachancho caught along the coast Sphyraena guachancho were also of Ivory Coast from June 2010 to July 2011 with their occurrence percentage (F%), numerical a substantial prey item through canpercentage (N%), weight percentage (W%), and index of relative importance (IRI%). nibalism (IRI = 7.8%).

opencc-by-4.0Oct 2013View details →
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Figure 2 in Diet of the barracuda Sphyraena guachancho in Côte d'Ivoire (Equatorial Eastern Atlantic Ocean)

Figure 2. - Individuals percentage sampled by size classes in Great Cold Season (A), Great Dry Season (B), Low Dry Season (C), Low Cold Season (D). The number above each histogram correspond to the number of individuals.

opencc-by-4.0Oct 2013View details →
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Figure 8 in Diet of the barracuda Sphyraena guachancho in Côte d'Ivoire (Equatorial Eastern Atlantic Ocean)

Figure 8. - Evolution of percentage of Sphyraena guachancho maturity stages by seasons. GCS = Great Cold Season, GDS = Great Dry Season, LCS = Low Cold Season, LDS = Low Dry Season.

opencc-by-4.0Oct 2013View details →
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Linked collectors and determiners for: Setaphyes elenae sp. nov., a new species of mud dragon (Kinorhyncha: Allomalorhagida) from Skagerrak (north-eastern Atlantic Ocean).

Natural history specimen data linked to collectors and determiners held within, "Setaphyes elenae sp. nov., a new species of mud dragon (Kinorhyncha: Allomalorhagida) from Skagerrak (north-eastern Atlantic Ocean)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/daf51a6a-153a-4906-a478-da4df86eee11">https://bionomia.net/dataset/daf51a6a-153a-4906-a478-da4df86eee11</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/daf51a6a-153a-4906-a478-da4df86eee11">https://gbif.org/dataset/daf51a6a-153a-4906-a478-da4df86eee11</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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FIG. 8 in An assessment of the genus Columbella Lamarck, 1799 (Gastropoda: Columbellidae) from eastern Atlantic

FIG. 8. — Protoconchs of Columbella spp.: A, Columbella adansoni Menke, 1853, Tenerife Is., Canary Islands; B, Columbella xiphitella Duclos, 1840, Miemia, Ghana; C, Columbella rustica (Linnaeus, 1758), San Domino Is., Italy. Arrows indicate the protoconch-teleoconch boundary. Scale bars: 100 µm.

opencc-zeroJun 2017View details →
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FIG. 6 in An assessment of the genus Columbella Lamarck, 1799 (Gastropoda: Columbellidae) from eastern Atlantic

FIG. 6. — Columbella spp. types: A, B, Columbella rustica (Linnaeus, 1758), syntype of Voluta rustica (LSL.348), Mediterranean (permission of The Linnean Society of London); C, D, Columbela adansoni Menke, 1853, lectotype SMF, Cape Verde (after Moolenbeek &amp; Hoenselaar 1991, figs 1, 2); E-G, Columbella xiphitella Duclos, 1840, lectotype (F, G) and paralectotypes (E) from lot MNHN-IM-2000-9599, Gabon; H-L, Columbella xiphitella, lectotype (H, J, K) and paralectotypes (I, L) of C. nucleus Kiener, 1841 from lot MHNG-MOLL-95502. Symbols:, the selected lectotypes;, the paralectotype with close-up of the protoconch (L).

opencc-zeroJun 2017View 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

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Last verified 2026-04-29Open record