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165 results for “assemblage composition”
Figure 4 from: Costa-Campos CE, Freire EMX (2019) Richness and composition of anuran assemblages from an Amazonian savanna. ZooKeys 843: 149-169. https://doi.org/10.3897/zookeys.843.33365
Figure 4 The species accumulation curves sampled in the savanna area from the Experimental Field of the Brazilian Agricultural Research Corporation – EMBRAPA, municipality of Macapá, Amapá State, northern Brazil, for each of the sampled physiognomies: A grassland savanna B scrub grassland savanna C parkland savanna D open woodland savanna, based on the number of individuals representing the observed (Sobs) and estimated species richness (Jackknife 1).
Figure 1 from: Costa-Campos CE, Freire EMX (2019) Richness and composition of anuran assemblages from an Amazonian savanna. ZooKeys 843: 149-169. https://doi.org/10.3897/zookeys.843.33365
Figure 1 Maps showing the Amapá state and sampling sites in the Experimental Field of the Brazilian Agricultural Research Corporation – EMBRAPA, municipality of Macapá, Amapá State, northern Brazil.
Figure 3 from: Costa-Campos CE, Freire EMX (2019) Richness and composition of anuran assemblages from an Amazonian savanna. ZooKeys 843: 149-169. https://doi.org/10.3897/zookeys.843.33365
Figure 3 Anurans recorded in the savanna area from the Experimental Field of the Brazilian Agricultural Research Corporation – EMBRAPA, municipality of Macapá, Amapá State, northern Brazil: ARhinellamajorBRhinella sp. CR.marinaDBoanamultifasciataEB.punctataFB.ranicepsGDendropsophuscf.walfordiHOsteocephalustaurinusIScinaxfuscomarginatusJS.nebulosusKS.ruberLS.x-signatusMTrachycephalustyphoniusNPseudopaludicolabolivianaOAdenomerahylaedactylaPLeptodactylusfuscusQL.macrosternumRL.pentadactylusSL.podicipinusTPithecopushypochondrialis, and UElachistocleishelianneae.
Figure 6 from: Costa-Campos CE, Freire EMX (2019) Richness and composition of anuran assemblages from an Amazonian savanna. ZooKeys 843: 149-169. https://doi.org/10.3897/zookeys.843.33365
Figure 6 Order by MDS of physiognomies in the savanna area physiognomies, sampled in the Experimental Field of the Brazilian Agricultural Research Corporation – EMBRAPA, municipality of Macapá, Amapá State generated from the Bray-Curtis similarity matrix. Grassland savanna (GS); scrub grassland savanna (SG); parkland savanna (PS); open woodland savanna (OW).
Fig. 2 in The invasive white ginger lily (Hedichium coronarium) simplifies the trait composition of an insect assemblage in the littoral zone of a Savanna reservoir
Fig. 2. The average values of FD indices of aquatic insect assemblages in invaded and non-invaded bank by white ginger lily of a reservoir in Brazilian Savanna (Cerrado Biome). A – FDis, B – FEve, C – FDiv. FD, Functional Diversity; FDis, Functional Dispersion; FEve, Functional Evenness; FDiv, Functional Divergence.
Linked collectors and determiners for: Land-use and climate drive shifts in Bombus assemblage composition.
Natural history specimen data linked to collectors and determiners held within, "Land-use and climate drive shifts in Bombus assemblage composition". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/c6fdb7c6-9597-44e2-8b82-32714bb7133c">https://bionomia.net/dataset/c6fdb7c6-9597-44e2-8b82-32714bb7133c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/c6fdb7c6-9597-44e2-8b82-32714bb7133c">https://gbif.org/dataset/c6fdb7c6-9597-44e2-8b82-32714bb7133c</a>. Formatted as a Frictionless Data package.
Fig. 11 in Taxonomic Composition And Systematics Of Late Cretaceous Lizard Assemblages From Ukhaa Tolgod And Adjacent Localities, Mongolian Gobi Desert
Fig. 11. Phrynosomimus asper: A, B, IGM 3/81, nearly complete skull with mandibles (articulated with several vertebrae and partial pectoral girdle), dorsal and ventral views.
Fig. 3 in Taxonomic Composition And Systematics Of Late Cretaceous Lizard Assemblages From Ukhaa Tolgod And Adjacent Localities, Mongolian Gobi Desert
Fig. 3. Ctenomastax parva, new genus and species: A, B, IGM 3/61 (holotype), incomplete skull with mandibles from Zos, ventral and dorsal views.
Figure 1 from: Vilisics F, Bogyó D, Sattler T, Moretti M (2012) Occurrence and assemblage composition of millipedes (Myriapoda, Diplopoda) and terrestrial isopods (Crustacea, Isopoda, Oniscidea) in urban areas of Switzerland. ZooKeys 176: 199-214. https://doi.org/10.3897/zookeys.176.2153
Figure 1 - Abundances of isopods and millipedes in Zurich, Lucerne and Lugano in logarithmic scale. Dashed line separates isopods (on the left) from millipedes. Black bars represent abundances, white circles show the species' incidences per all sites per city.
Figure 7 from: Marques R, Mebert K, Fonseca É, Rödder D, Solé M, Tinôco MS (2016) Composition and natural history notes of the coastal snake assemblage from Northern Bahia, Brazil. ZooKeys 611: 93-142. https://doi.org/10.3897/zookeys.611.9529
Figure 7 - Strongly marked polymorphism of Bothrops lutzi from São Desidério, Bahia (A) and Grande Sertão Veredas National Park, Minas Gerais (B) (Photos A by R. Gaiga; B by M. Sacramento).
Figure 6 from: Marques R, Mebert K, Fonseca É, Rödder D, Solé M, Tinôco MS (2016) Composition and natural history notes of the coastal snake assemblage from Northern Bahia, Brazil. ZooKeys 611: 93-142. https://doi.org/10.3897/zookeys.611.9529
Figure 6 - Dipsadids, elapids and viperids from north coast of Bahia: A Erythrolamprus miliaris merremi B Erythrolamprus poeilogyrus schotti (juvenile with a Erythrolamprus poeilogyrus poecilogyrus-like pattern) C Erythrolamprus poecilogyrus schotti (adult) D Erythrolamprus reginae semilineatus, E Erythrolamprus taeniogaster F Erythrolamprus viridis viridis G Xenodon merremii H Xenodon rhabdocephalus rhabdocephalus I Micrurus corallinus J Micrurus ibiboboca K Bothrops erythromelas L Bothrops leucurus M Bothrops lutzi N Crotalus durissus cascavella O Lachesis muta rhombeata (Photos F, G, K by M.L.O. Travassos; O by W. Pessoa).
Figure 5 from: Marques R, Mebert K, Fonseca É, Rödder D, Solé M, Tinôco MS (2016) Composition and natural history notes of the coastal snake assemblage from Northern Bahia, Brazil. ZooKeys 611: 93-142. https://doi.org/10.3897/zookeys.611.9529
Figure 5 - Dipsadids from the northern coast of Bahia: A Sibynomorphus neuwiedi B Imantodes cenchoa cenchoa C Leptodeira annulata annulata D Taeniophallus occipitalis E Helicops angulatus F Helicops leopardinus G Philodryas nattereri H Philodryas olfersii herbeus I Philodryas patagoniensis J Clelia plumbea K Oxyrhopus petolarius digitalis L Oxyrhopus trigeminus M Phimophis guerini N Pseudoboa nigra O Siphlophis compressus P Thamnodynastes pallidus Q Erythrolamprus aesculapii venustissimus R Erythrolamprus almadensis.
Figure 4 from: Marques R, Mebert K, Fonseca É, Rödder D, Solé M, Tinôco MS (2016) Composition and natural history notes of the coastal snake assemblage from Northern Bahia, Brazil. ZooKeys 611: 93-142. https://doi.org/10.3897/zookeys.611.9529
Figure 4 - Typhlopid, boids and colubrids from the northern coast of Bahia: A Amerotyphlops brongersmianus B Boa constrictor constrictor C Corallus hortulanus D Epicrates assisi E Eunectes murinus F Chironius bicarinatus G Chironius carinatus H Chironius exoletus I Chironius flavolineatus J Drymarchon corais K Drymoluber dichrous (juvenile) L Leptophis ahaetulla liocercus M Mastigodryas bifossatus N Oxybelis aeneus O Pantherophis guttatus P Pseustes sulphureus sulphureus Q Spilotes pullatus pullatus R Tantilla melanocephala. (Photo F by M. A. Passos; D by W. Pessoa; J, K by M. L. O. Travassos).
Figure 2 from: Marques R, Mebert K, Fonseca É, Rödder D, Solé M, Tinôco MS (2016) Composition and natural history notes of the coastal snake assemblage from Northern Bahia, Brazil. ZooKeys 611: 93-142. https://doi.org/10.3897/zookeys.611.9529
Figure 2 - Variation of temperature, maximum (red) and minimum (blue), precipitation as bars. Data from January 2010 and December 2013 (Source: INMET).
Figure 1 from: Marques R, Mebert K, Fonseca É, Rödder D, Solé M, Tinôco MS (2016) Composition and natural history notes of the coastal snake assemblage from Northern Bahia, Brazil. ZooKeys 611: 93-142. https://doi.org/10.3897/zookeys.611.9529
Figure 1 - The northern coast of Bahia and municipalities of the study: 1 Lauro de Freitas 2 Simões Filho 3 Camaçari 4 Dias D'Ávila 5 Mata de São João 6 Itanagra 7 Pojuca 8 Catu 9 Araçás 10 Entre Rios 11 Cardeal da Silva 12 Esplanada 13 Acajutiba 14 Conde 15 Rio Real 16 Jandaíra.
Data from: Cryptic temporal changes in stock composition explain the decline of a flounder (Platichthys spp.) assemblage
Open the record for dataset details and reuse information.
Figure 3 from: Marques R, Mebert K, Fonseca É, Rödder D, Solé M, Tinôco MS (2016) Composition and natural history notes of the coastal snake assemblage from Northern Bahia, Brazil. ZooKeys 611: 93-142. https://doi.org/10.3897/zookeys.611.9529
Figure 3 - Activity of snakes recorded during the day.
FIGURE 2 in Checklist, assemblage composition, and biogeographic assessment of Recent benthic foraminifera (Protista, Rhizaria) from São Vincente, Cape Verdes
FIGURE 2. Species in common with source regions in the tropical to temperate North Atlantic. See Appendix Table 2 for references.
FIGURE 1 in Checklist, assemblage composition, and biogeographic assessment of Recent benthic foraminifera (Protista, Rhizaria) from São Vincente, Cape Verdes
FIGURE 1. Map with location of (a) the Cape Verde Archipelago and (b) sampling sites on São Vincente. CC: Canary Current, CUC: Canary Upwelling Current, CVC: Cape Verde Current, CVFZ: Cape Verde Frontal Zone, GD: Guinea Dome, NEC: North Equatorial Current, NECC: North Equatorial Counter Current (modified after Fiedler, 2012; Fernandes et al. 2015; Pelegrí & Peña-Izquierdo, 2015). Depth contours in (a) were given for the continental margin only. Colours and symbols in (b): light grey: volcanic or volcanoclastic rocks, yellow: sedimentary deposits (redrawn after Ancochea et al. 2010), orange: beach sands, dark grey and circles: urban areas and villages (after satellite images and observations during the geological excursion), arrows: sampling sites. The geographical coordinates are given in Appendix Table 1.
Figure 7 in Multi-scale patterns in the host specificity of plant-dwelling arthropods: the influence of host plant and temporal variation on species richness and assemblage composition of true bugs (Hemiptera)
Figure 7. The percentage of singleton and doubleton species from the sampling period spring 2001 that are common in other locations (ground fauna, introduced species, another habitat), or during another sampling period (season, previous spring). Unknown fauna cannot be allocated an origin because they are never abundant in the total dataset (>29,000 specimens).
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International Brain Laboratory public data
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OpenNeuro
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