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1,338 results for “Iberian Peninsula.”
FIGURE 7 in Two new species of the Suborder Senticaudata (Crustacea: Amphipoda) from the upper continental slope off Galicia (NW Iberian Peninsula)
FIGURE 7. Photis guerrai sp. nov., Holotype, MHNUSC 10068. A, habitus, lateral view; B, antenna 1; C, antenna 2. Scales: 0.5 mm.
FIGURE 4 in Two new species of the Suborder Senticaudata (Crustacea: Amphipoda) from the upper continental slope off Galicia (NW Iberian Peninsula)
FIGURE 4. Pareurystheus vitucoi sp. nov., Holotype, MHNUSC 10065. A, pereopod 5. Allotype, MHNUSC 10066. B, pereopod 5. Scales: 0.1 mm.
FIGURE 3 in Two new species of the Suborder Senticaudata (Crustacea: Amphipoda) from the upper continental slope off Galicia (NW Iberian Peninsula)
FIGURE 3. Pareurystheus vitucoi sp. nov., Holotype, MHNUSC 10065. A, gnathopod 1; B, gnathopod 1, setae along palmar margin; C, gnathopod 1, dactylus (detail); D, gnathopod 2; E, pereopod 3; F, pereopod 4. Scales: 0.1 mm.
FIGURE 11 in Two new species of the Suborder Senticaudata (Crustacea: Amphipoda) from the upper continental slope off Galicia (NW Iberian Peninsula)
FIGURE 11. Photis guerrai sp. nov., Holotype, MHNUSC 10068. A, pereopod 6; B, pereopod 6, accessory stout seta on dactylus; C, pereopod 7; D, uropod 1; E, uropod 2; F, uropod 3 and telson; G, telson (dorsal view). Scales: 0.1 mm.
FIGURE 4. Necrocarcinus woodwardii Bell, 1863 in New records of Palaeocorystoidea from the Iberian Peninsula and remarks on the taxonomic significance of the posterior margin of Cenomanocarcinus Van Straelen, 1936 and Hasaracancer Jux, 1971 (Decapoda; Brachyura; Cenomanocarcinidae)
FIGURE 4. Necrocarcinus woodwardii Bell, 1863. From dispar Biozone of Xixona Formation (late Albian), Orxeta (Alacant, Spain). A–C MGB 78175. A: dorsal view; B: left lateral view; C: frontal view; C´: close-up of fronto-orbital margin. Scale bar equal to 10 mm.
FIGURE 5 in New records of Palaeocorystoidea from the Iberian Peninsula and remarks on the taxonomic significance of the posterior margin of Cenomanocarcinus Van Straelen, 1936 and Hasaracancer Jux, 1971 (Decapoda; Brachyura; Cenomanocarcinidae)
FIGURE 5. Cenomanocarcinus boedekeri Ossó, Jackson & Vega, 2015 from the Woodbine Formation (middle Cenomanian), Dallas Co. (Texas, USA), holotype NPL 70606, A: dorsal view; A´: close-up of posterolateral corner. Cenomanocarcinus cookseyi Ossó, Jackson & Vega, 2015 from the Walnut Formation (Albian), Georgetown. (Texas, USA), holotype NPL 70604, B: dorsal view; B´: close-up of posterolateral corner. Hasaracancer merijaensis Ossó-Morales, Artal & Vega, 2011, from the Calcaires à slumps de Taghit Formation (late Campanian), Merija (Morocco); Holotype MGSB 75.427, C: dorsal view; C´: close-up of posterolateral and posterior margin. Paratype MGSB 75.428b, D: dorsal view; D´: close-up of posterolateral and posterior margin. AO C448/2, E: dorsal view; E´: close-up of posterolateral and posterior margin. AO C448/1, F: dorsal view; F´: close-up of posterolateral and posterior margin. Hasaracancer cristatus Jux, 1971, from upper Campanian, Afghanistan; holotype GIK 538, G: dorsal view; G´: close-up of posterolateral and posterior margin; G´´: close-up of left lateral margin. Arrows on the close-up pictures (´) showing the rounded posterolateral corner, and the space between the last spines of the ridges and the posterior margin. Scale bar equal to 10 mm. (Photographs of H. cristatus courtesy of Barry Van Bakel).
FIGURE 3 in New records of Palaeocorystoidea from the Iberian Peninsula and remarks on the taxonomic significance of the posterior margin of Cenomanocarcinus Van Straelen, 1936 and Hasaracancer Jux, 1971 (Decapoda; Brachyura; Cenomanocarcinidae)
FIGURE 3. Cenomanocarcinus sp. (sp. 2). From kallesi Biozone, middle Turonian. Trasvía (Cantabria, Spain). A, B: MMC- BIO-CE011240, A: dorsal view of carapace; B: left lateral view of carapace. C: MMC-BIO-CE011241, C: dorsal view of carapace. D, E: MMC-BIO-CE011242, D: inner side of left chela; E: outer side of left chela. F, G: MMC-BIO-CE011243, F: outer side of right chela; G: view of upper margin of right chela. H: MMC-BIO-CE011244, H: outer side of merus. Abbreviations: ebs= epibranchial spines; pebs= post-epibranchial spine; pls= posterolateral spines. Scale bar equal to 10 mm.
FIGURE 2 in New records of Palaeocorystoidea from the Iberian Peninsula and remarks on the taxonomic significance of the posterior margin of Cenomanocarcinus Van Straelen, 1936 and Hasaracancer Jux, 1971 (Decapoda; Brachyura; Cenomanocarcinidae)
FIGURE 2. Cenomanocarcinus sp. (sp. 1), From tardefurcata Biozone of Escucha Formation, early Albian. Traiguera (Castelló, Spain). MGB 78174, dorsal view of carapace. Abbreviations: ebs, epibranchial spines; pebs, post-epibranchial spine. Scale bar equal to 10 mm.
FIGURE 1. Location map. A in New records of Palaeocorystoidea from the Iberian Peninsula and remarks on the taxonomic significance of the posterior margin of Cenomanocarcinus Van Straelen, 1936 and Hasaracancer Jux, 1971 (Decapoda; Brachyura; Cenomanocarcinidae)
FIGURE 1. Location map. A: Cenomanocarcinus (sp. 1) locality, Traiguera (Castelló, Spain). B: Cenomanocarcinus (sp. 2) locality, Trasvía (Cantabria, Spain). C: Necrocarcinus woodwardii Bell, 1863 locality, Orxeta (Alacant, Spain).
FIGURE 1 in DNA barcoding confirms the presence of Hydria cervinalis (Scopoli, 1763) in the Iberian Peninsula (Lepidoptera: Geometridae: Larentiinae)
FIGURE 1. Female genitalia of Hydria cervinalis (Scopoli) with minor differences noted. Genital prep. Slide G760.
Figs. 1–10. Cryptophagus aurelii. 1 in A New Species of Cryptophagus Herbst (Coleoptera: Cryptophagidae) from the Iberian Peninsula
Figs. 1–10. Cryptophagus aurelii. 1) Head, pronotum, and base of elytra; 2) Lateral margin of pronotum; 3) Antenna; 4) Size and shape of ocular facets; 5–7) Comparison of the punctation on the head, pronotum, and elytra, respectively; 8) Dorsal view of aedeagus; 9) Sclerotized rods; 10) Dorsal view of paramere.
Fig. 1 in Clarification of the Status ofTrechus comasiHernando (Coleoptera: Carabidae: Trechini) from the Iberian Peninsula and Its Taxonomic Position
Fig. 1. Male genitalia (median lobe and parameres in left lateral view): a) Trechus schaufussi comasi; b) Trechus schaufussi vivesi from Puerto de Piqueras (Logroño); c) Trechus schaufussi pandellei from Peña La Cabra (Madrid); d) Trechus schaufussi schaufussi from Cueva A Cova, Bermun (Lugo). Scale bar = 0.2 mm.
Fig. 4 in Integrative Taxonomy Reveals a New Melitaea (Lepidoptera: Nymphalidae) Species Widely Distributed in the Iberian Peninsula
Fig. 4. Pictures of the northern and southern forms of Melitaea pseudornata stat. nov. and of Melitaea phoebe. An approximate distribution of M. pseudornata based on the sequenced specimens is given; populations in eastern and southern Iberia are apparently more scattered and restricted to mountain ranges.
Fig. 2. A in Integrative Taxonomy Reveals a New Melitaea (Lepidoptera: Nymphalidae) Species Widely Distributed in the Iberian Peninsula
Fig. 2. A. Haplotype network of the Melitaea phoebe species group based on the barcode fragment of the COI gene.The area of the circles is proportional to the number of sequences they represent. B. European distribution of the three haplogroups of Melitaea pseudornata stat. nov., M. phoebe and Melitaea ornata. C. Bayesian inference phylogeny obtained using a partitioned alignment of the nuclear genes EF-1ɑ, MDH, wg and RPS5. Posterior probabilities at species-level and for higher relationships are indicated, and scale units are presented in substitutions per site.
Fig. 1 in Integrative Taxonomy Reveals a New Melitaea (Lepidoptera: Nymphalidae) Species Widely Distributed in the Iberian Peninsula
Fig. 1. Iberian sampling sites of Melitaea pseudornata stat. nov. and Melitaea phoebe. The relationship between flight time and altitude is depicted. All identifications are based, at least, on the sequencing of the wg gene.
Fig. 3. A in Integrative Taxonomy Reveals a New Melitaea (Lepidoptera: Nymphalidae) Species Widely Distributed in the Iberian Peninsula
Fig. 3. A. Landmarks on the processus posterior of a Melitaea phoebe male genitalia. B. Typical processus posterior shapes of Melitaea pseudornata stat. nov., M. phoebe and Melitaea ornata. C. PCA built using the mean shapes of all the studied species. Species mean shapes are shown. D. Linear discriminant analysis (LDA) scatterplot for the studied taxa. Group centroids are shown. All the groups had equal prior probability independently from the sample size of the group.
Fig. 10 in Messor erwini sp. n., a hitherto cryptic harvester ant in the Iberian Peninsula
Fig. 10. Messor capitatus major (A, C, E, G, H; collection code #19646) and minor (B, D, F, I, J; collection code #19643) workers. Lateral view of body (A, B); dorsal view of body (C, D); head in full-face view (E, F); frontal triangle in larger magnification (G, I); lateral view of petiole in larger magnification (H, J).
Fig. 7 in Messor erwini sp. n., a hitherto cryptic harvester ant in the Iberian Peninsula
Fig. 7. Dendrogram solution for the morphometric data of Iberian Messor species. Sample information in the dendrogram given as follows: final species hypothesis followed by a five-digit sample code applied by the genetic lab separated by a hyphen. Two columns of rectangles represent results of the partitioning algorithms 'hclust' and 'kmeans'. Different colors distinguish species. Messor barbarus: black, M. erwini sp. n.: green, M. capitatus: blue, M. bouvieri: red.
Fig. 5 in Messor erwini sp. n., a hitherto cryptic harvester ant in the Iberian Peninsula
Fig. 5. Phylogenetic analysis based on COI of Messor barbarus, M. bouvieri, M. capitatus, and the hitherto unidentified M. erwini sp. n. with Aphaenogaster iberica, M. lobognathus, and M. chamberlini as outgroups, using the Neighbor-Joining method based on Kimura 2-parameter. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches. The analysis was conducted in MEGA 7.0.26 (Felsenstein 1985; Saitou and Nei 1987; Nei and Kumar 2000; Kumar et al., 2016).
Fig. 1 in Messor erwini sp. n., a hitherto cryptic harvester ant in the Iberian Peninsula
Fig. 1. Sampling sites. (A) Iberian peninsula; (B) Catalonia. Occurrences of Messor barbarus (yellow, subclades 1 and 2 as defined by Romiguier et al., 2017), M. bouvieri (red), M. capitatus (blue), and the hitherto unidentified M. erwini sp. n. (green) depicted; at the focal study area Castellbell i el Vilar, M. barbarus, M. bouvieri, and the unidentified Messor co-occur (Google Earth Pro 2019, Data SIO, NOAA, U.S. Navy, NGA, GEBCO, Image Landsat/Copernicus).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.