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18 results for “Eulalia”

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zenodo32/100

Fig. 4 in Revealing the diversity of the green Eulalia (Annelida, Phyllodocidae) species complex along the European coast, with description of three new species

Fig. 4 Haplotypes networks based on ITS (a) and 28S (b) for all MOTUs and outgroups, except MOTU GB1. Each haplotype is represented by a circle and number of haplotypes are according to the displayed scale. Colors indicate the geographic location of the haplo-

opennotspecifiedJan 2023View details →
zenodo32/100

Figure 7 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 7. The numbers of Eulalia viridis recorded from the eastern side of the Mewsbrook Groyne (and the western side in September 2010) on the occasions when they were observed to be moving over the rock surfaces.

opennotspecifiedOct 2011View details →
zenodo32/100

Figure 6 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 6. An experimentally derived plot of the relationship between Carcinus maenas carapace widths and the shell lengths of their chosen Mytilus galloprovincialis prey items attacked by marginal chipping. Open circles represent failed attempts; closed circles represent successful attacks.

opennotspecifiedOct 2011View details →
zenodo32/100

Figure 8. A in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 8. A diagrammatic outline of the shell of Mytilus galloprovincialis divided into the four quadrants identified by Morton (2010) and showing the positions of the 17 series of chip marks (♦) and 18 drill holes (open circles represent successful attacks; closed circles represent failed attempts) made by experimentally held individuals of Carcinus maenas and Nucella lapillus, respectively.

opennotspecifiedOct 2011View details →
zenodo32/100

Figure 5 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 5. Scanning electrom micrographs of the posterior margins of Mytilus galloprovincialis shells that have been accessed by Carcinus maenas in an experimental situation by (A) Chelal insertion and breaking and by (B) mandibular chipping.

opennotspecifiedOct 2011View details →
zenodo32/100

Figure 4 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 4. An experimentally derived three-dimensional regression plot of the relationship between Nucella lapillus shell height (y-axis), the shell lengths of their chosen Mytilus galloprovincialis prey (z-axis) and the time spent atop each prey item (x-axis).

opennotspecifiedOct 2011View details →
zenodo32/100

Figure 3 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 3. The relationship between the time Nucella lapillus spent atop its Mytilus galloprovincialis prey in laboratory experiments.

opennotspecifiedOct 2011View details →
zenodo32/100

Figure 9 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 9. The relationship between the log-transformed numbers of Nucella lapillus recorded from the eastern side of the Mewsbrook Groyne (and the western side in September 2010) and the similarly log-transformed numbers of Eulalia viridis recorded on the occasions when they were observed to be moving over the rock surfaces

opennotspecifiedOct 2011View details →
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Figure 10 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 10. Plots showing, as a proportion of 100%, all the causes of death of individuals of Mytilus galloprovincialis collected from the Mewsbrook Groyne over the course of the 25-month period from September 2006 until September 2008.

opennotspecifiedOct 2011View details →
zenodo32/100

Figure 1 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 1. The numbers of Nucella lapillus recorded from the Mewsbrook Groyne over the period from May 2004 to late August 2010. The first and last three open histograms represent counts from both sides of the groyne in May 2004 (25 individuals) and September 2009 (551 individuals), March 2010 (458 individuals) and late August 2010 (1241 individuals), the closed histograms represent numbers from the east side only.

opennotspecifiedOct 2011View details →
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Figure 2 in Predator-prey-scavenging interactions between Nucella lapillus, Carcinus maenas and Eulalia viridis all exploiting Mytilus galloprovincialis on a rocky shore recovering from tributyl-tin (TBT) pollution

Figure 2. The relationship between the shell heights of Nucella lapillus and the shell lengths of its Mytilus galloprovincialis prey on the Mewsbrook Groyne from May 2004 to August 2008.

opennotspecifiedOct 2011View details →
zenodo24/100

Santa Eulalia en Tañabueyes (Burgos)

la iglesia de Santa Eulalia en Tañabueyes https://goo.gl/maps/yBpjEga7iKSuzZfT9 Source: Objaverse 1.0 / Sketchfab

opencc-byFeb 2022View details →
zenodo24/100

Portada Iglesia de Santa Eulalia de BERDÚN

La iglesia de Santa Eulalia de Berdún es fruto de sucesivos impulsos constructivos. El primero debe fecharse a finales del siglo XV y principios del siglo XVI, caundo se levanta la iglesia primitiva, de la que subsisten dos portadas; una cegada, el la zona de los pies y otra abierta en el lado sur, gótica, en arco ligeramente apuntado con arquivoltas, que descansan en delgadas columnillas coronadas con capiteles y flanqueada por dos pináculos. Source: Objaverse 1.0 / Sketchfab

opencc-bySep 2022View details →
zenodo20/100

Fig. 2 in Revealing the diversity of the green Eulalia (Annelida, Phyllodocidae) species complex along the European coast, with description of three new species

Fig. 2 Scheme of the morphotype of Eulalia clavigera, showing the morphometric measurements used for analysis. a Anterior end. b Parapodia. Abbreviations: CLL, length of chaetigerous lobes; CLH, height of chaetigerous lobes; AL, length of antennae; PL, length of palps; MAL, length of middle antenna; DTL, length of dorsal tentac-

opennotspecifiedJan 2023View details →
zenodo20/100

Fig. 6 in Revealing the diversity of the green Eulalia (Annelida, Phyllodocidae) species complex along the European coast, with description of three new species

Fig. 6 Live, relaxed specimens of Eulalia (WL: worm length). a Eulalia feliciae sp. nov., specimen DBUA0002478.01.v07, dorsal view, greenish coloration. b Eulalia madeirensis sp. nov., specimen DBUA0002479.01. v03, dorsal view, faint yellowish/light green coloration. c Eulalia xanthomucosa sp. nov., specimen from the Natural History Museum, London (left) and specimen BI-2014/15–077 (right), dorsal view, bright yellow coloration

opennotspecifiedJan 2023View details →
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Fig. 3 in Revealing the diversity of the green Eulalia (Annelida, Phyllodocidae) species complex along the European coast, with description of three new species

Fig. 3 Phylogenetic tree and respective COI haplotypes and MOTU locations. a Phylogenetic tree reconstructed using Bayesian inference based on concatenated COI, ITS regions and 28S sequences, with information regarding the different MOTU delineation methods. BINs were used only for COI. MOTU GB1 only have COI sequences and was not present in BOLD systems preventing BIN analysis. Only the bootstrap support over 0.85 BI and 85 ML is shown. Each different consensus MOTU is represented by the respective number, with the different colors corresponding to the respective geographic

opennotspecifiedJan 2023View details →
zenodo20/100

Fig. 7 Live, relaxed specimens from E in Revealing the diversity of the green Eulalia (Annelida, Phyllodocidae) species complex along the European coast, with description of three new species

Fig. 7 Live, relaxed specimens from E. xanthomucosa sp. nov. exhibiting yellow coloration and high prevalence of yellowish mucus. a Mucus present in the posterior end of the body (specimen from David Fenwick's private collection). b Mucus present in the median part of the body (specimen from David Fenwick's private collection)

opennotspecifiedJan 2023View details →
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Fig. 1 in Revealing the diversity of the green Eulalia (Annelida, Phyllodocidae) species complex along the European coast, with description of three new species

Fig. 1 Sampling sites. Abbreviations as in Table 1

opennotspecifiedJan 2023View details →

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