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FIGURE 11. Rintoulia pectinata 1. LX1029 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 11. Rintoulia pectinata 1. LX1029, Little Bay-03; 2. LX1021, Little Bay-03; 3. LX669, Owaka. All scale bars equal 10 mm.
FIGURE 17. Elatocladus spp. 1 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 17. Elatocladus spp. 1. Elatocladus sp. A, LX1054, Little Bay-01; 2. Elatocladus sp. A, LX1061, Little Bay-01; 3. Elatocladus sp. A, LX1131, Little Bay-01; 4. Elatocladus sp. A, LX1159, Little Bay-01; 5. Elatocladus sp. B, LX2077, Blue Cod Bay. All scale bars equal 10 mm.
FIGURE 15. Taeniopteris spatulata details. 1. LX1218 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 15. Taeniopteris spatulata details. 1. LX1218, Curio Bay; 2. LX1097, Curio Bay; 3. LX1277, Curio Bay; 4. LX1241, Curio Bay. All scale bars equal 10 mm.
FIGURE 3 in The effects of lithification on fossil assemblage biodiversity and composition: An experimental test
FIGURE 3. Classical (A) and coverage-based (B) rarefaction of the Fort Thompson Formation samples. In each panel, the red curve marks the lithified sample, and the blue curve marks the corresponding unlithified replicate sample. The gray curves mark other unlithified samples taken from different horizons of the same formation at the same outcrop. The red and blue bands mark 95% confidence intervals.
FIGURE 7 in The effects of lithification on fossil assemblage biodiversity and composition: An experimental test
FIGURE 7. Relative abundances of the ten most abundant species in the overall dataset. Relative abundance is plotted on a square-root scale so that low values can be more easily distinguished. A. Bermont Formation. B. Fort Thompson Formation.
FIGURE 6. Principal coordinates analysis. The eigenvalues for the first two axes accounted for 72 in The effects of lithification on fossil assemblage biodiversity and composition: An experimental test
FIGURE 6. Principal coordinates analysis. The eigenvalues for the first two axes accounted for 72% of the variation in the data.
FIGURE 17 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf
FIGURE 17. Global range in sea level (Bintanja and van de Wal, 2008) since 3 Ma in relation to the foraminiferal and mollusc assemblages preserved in sediments of the study area. MPT = Mid-Pleistocene transition.
FIGURE 16 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf
FIGURE 16. Infaunal-epifaunal abundances expressed as relative abundances (%) and in number of species.
FIGURE 9 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf
FIGURE 9. Mean relative abundances of mollusc shells (bivalves on the left and gastropods on the right) in the northern Namibian cores.
FIGURE 5 in The effects of lithification on fossil assemblage biodiversity and composition: An experimental test
FIGURE 5. Percentage of individuals in each sample belonging to small-shelled species, defined as less than 15 mm. A. Bermont Formation. B. Fort Thompson Formation.
FIGURE 6. Dendrogram from a in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf
FIGURE 6. Dendrogram from a hierarchical cluster analysis (Ward's method) based on Euclidean distance as similarity index to determine sub-assemblages. The sample number refers to the core and core depth (in cm). A = core 1307; B = core 1441; C = core 1401; D = core 1479; E = core 1406
FIGURE 7 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf
FIGURE 7. Mean relative abundances of mollusc (bivalves on the left and gastropods on the right) shells in the Walvis Bay-Lüderitz cores.
FIGURE 5 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf
FIGURE 5. Relative abundances (%) of benthic foraminifera in the shelly sandy units 1-3. Mean relative abundances of the major taxa in each unit over all the cores in which the foraminifera species counted are indicated upper right.
FIGURE 1 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf
FIGURE 1. Outline of Namibia and South Africa with the location of the cores studied. The intervals for the bathymetric lines in the upper left map are 100 m (based on maps provided by Minemakers Australia Pty. Ltd.).
FIGURE 1 in When roads cross streams: fish assemblage responses to fluvial fragmentation in lowland Amazonian streams
FIGURE 1 | Sampled streams location in northeastern Pará, Brazil. Circle: Igarapé Buiuna; Diamond: Igarapé Laranjal; Square: Igarapé São João; Star: Igarapé Pirapema; Triangle: Igarapé Timboteua.
FIGURE 2 in When roads cross streams: fish assemblage responses to fluvial fragmentation in lowland Amazonian streams
FIGURE 2 | ANOVA results for environmental significant differences among stream reach groups. A. Depth; B. Water flow. D: Downstream reaches from impoundments; I: Impounded reaches; U: Upstream reaches from impoundments.
FIGURE 3 in When roads cross streams: fish assemblage responses to fluvial fragmentation in lowland Amazonian streams
FIGURE 3 | NMDS results for fish assemblage composition in northeastern Amazonian streams. A. Taxonomic composition. Fitted variables: Dep: average depth; Mac: macrophytes; Sdiv: substrate diversity; Vis: visibility; WF: average water flow. B. Functional composition. Fitted variables: CoL: coarse litter; Dep: average depth; Mac: macrophytes; MaxT: maximum temperature; San: sand; WF: average water flow. Dot-dashed polygon: Upstream reaches (U); Dotted polygon: Downstream reaches (D); Dashed polygon: Impounded reaches (I). For species and functional groups codes, see Tab. S1.
FIGURE 4 in Short-term response of fish assemblages to instream habitat restoration in heavily impacted streams
FIGURE 4 | Changes in environmental parameters (mean ± sd) depth, flow and structural diversity in pre and post-restoration conditions. C= Control treatment, W= Wood treatment, WL= Wood/leaf treatment, *= p-values <0,05.
FIGURE 1 in Short-term response of fish assemblages to instream habitat restoration in heavily impacted streams
FIGURE 1 | Map of the study area, highlighting the state of São Paulo and the location of the streams within the watersheds: Tietê River (streams P1, P2, P6 and P7), São José dos Dourados River (P3 and P4), and Turvo River (P5 and P8).
Fig. 3 in Fish assemblages along a morphodynamic continuum on three tropical beaches
Fig. 3. Variation in the mean number of individuals (CPUE average ±SE), biomass (±SE) and number of species (±SE) at Mamanguape River estuary in Brazil.
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International Brain Laboratory public data
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OpenNeuro
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