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1,338 results for “Iberian Peninsula.”
Atlas of the vascular flora of the Iberian Peninsula biodiversity hotspot (AFLIBER)
<p><u>Motivation</u>: We accessed published and unpublished floristic sources to compile a comprehensive species list of the Iberian-Balearic terrestrial vascular flora and generate AFLIBER, an accurate floristic database of georeferenced plant occurrence records.</p> <p><u>Main type of variable contained</u>: Species distribution data totaling 1,824,549 plant occurrence records corresponding to 6,456 species and subspecies.</p> <p><u>Spatial location and grain</u>: The western Mediterranean, including inland territories of Spain, Portugal and Andorra and the adjacent archipelagos of Berlengas, Columbretes, and Balearic Islands, covered by 6,316 UTM quadrangular grid-cells of 10-km resolution.</p> <p><u>Time period:</u> All distributional trustable records were considered to create the AFLIBER database, most of them dating from the 1960s onwards.</p> <p><u>Major taxa and level of measurement</u>: Terrestrial vascular plant species and subspecies.</p> <p><u>Software format</u>: Data are supplied as comma‐separated text files (csv).</p>
Fig. 2. A–C in The genus Eluma in the Iberian Peninsula, with the description of a new terrestrial isopod: Eluma matae sp. nov. (Oniscidea, Armadillidiidae, Eluminae)
Fig. 2. A–C. Eluma caelata (Miers, 1877). A. Habitus, lateral view (INV16000). B. Pereopod 7 male, ischium (JC56). C. Exopod I male (JC56). – D–F. E. tuberculata Cruz, 1991. D. Habitus, lateral view (JC605). E. Pereopod 7 male, ischium (INV16031). F. Exopod I male (INV16013). Scale bars: A, D = 1 mm; B–C, E–F = 0.1 mm.
Fig. 1 in The genus Eluma in the Iberian Peninsula, with the description of a new terrestrial isopod: Eluma matae sp. nov. (Oniscidea, Armadillidiidae, Eluminae)
Fig. 1. Map of location of the Iberian Peninsula and maps with the geographic distribution of the species of Eluma (bibliographical references with red triangle; material studied with blue triangle). A. E. caelata (Miers, 1877). B. E. matae sp. nov. C. E. tuberculata Cruz, 1991.
Fig. 4 in The genus Eluma in the Iberian Peninsula, with the description of a new terrestrial isopod: Eluma matae sp. nov. (Oniscidea, Armadillidiidae, Eluminae)
Fig. 4. Eluma matae sp. nov. A–F, I, K–Q. Paratype, ♂ (INV16006). J. Paratype, ♀ (INV16007). A–F. Scale setae. G. E. caelata (Miers, 1877), ♂ (CCZ-UGR852), scale setae. H. E. tuberculata Cruz, 1991, ♀ (INV16004), scale setae. I. Cephalon and first pereonite, frontal view. J. Antennule.K. Antenna. L. Pereopod 1. M. Pereopod 7. N. Endopod I. O. Exopod I. P. Endopod II. Q. Endopod II.
Fig. 3 in The genus Eluma in the Iberian Peninsula, with the description of a new terrestrial isopod: Eluma matae sp. nov. (Oniscidea, Armadillidiidae, Eluminae)
Fig. 3. Eluma matae sp. nov., paratype, ♂ (INV16006). A. Habitus, side view. B. Cephalon and first pereonite, frontal view. C. First pereonite, side view. D. Pleon, telson and uropods. E. Dorsal tegument and scale-setae. F. Scale-setae, detail. G. Carpus of the pereopod 1. H. Carpus of the pereopod 1, setae. I. Pereopod 7, ischium. J. Tip of endopod I. K. Exopod I. L. Exopod II. Scale bars: A = 1 mm; B–D = 0,5 mm; E, F, H = 0.05 mm; G, I–L = 0.1 mm.
FIG. 5 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 5. — Tetra/bisporangial conceptacles of Lithophyllum artabricum V.Peña, sp. nov.: A, B, chambers dumbbell-shaped, empty; C, canal pore conical, tapering from the bottom to the roof surface; D, central calcified columella; E, buried conceptacles within the thallus; F, buried conceptacle with inorganic infilling. A, SANT-Algae 7046; B-D, E, holotype SANT-Algae 33667; F, SANT-Algae 15005. Scale bars: A, B, D, 100 µm; C, 50 µm; E, 500 µm; F, 200 µm.
FIG. 3 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 3. — Phylogenetic tree inferred from maximum likelihood (ML) and Bayesian inference of psbA sequences included in the present study. In bold Lithophyllum species reported for the European coasts. Bootstrap ML values>60% and posterior probabilities>0.60 from Bayesian inference shown for each node. Scale bar: 0.03 substitutions per site.
FIG. 2 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 2. — Maximum Likelihood (ML) tree of COI-5P sequences included in the present sudy. In bold Lithophyllum species reported for the European coasts. Bootstrap ML values>60% shown for each node. Scale bar: 0.03 substitutions per site.
FIG. 4 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 4. — Morpho-anatomy of Lithophyllum artabricum V.Peña, sp. nov.: A, B, vertical section of the thallus showing a monomerous thallus construction with non-coaxial medulla; C, vertical section of the thallus showing cortical cells disposed in filaments laterally aligned; D, vertical section of the thallus showing a monomerous thallus construction with coaxial medulla, and a tetra/bisporangial uniporate conceptacle empty and buried; E, F, Vertical section of the thallus showing secondary pit-connections between contiguous filaments of cortical cells (arrows) and epithallial cells flattened disposed in 1-2 layers (arrowheads), G, surface view of the thallus showing polygonal epithallial cells; H, I, surface view of two different development stages of tetra/bisporangial uniporate conceptacles showing the pore flush with thallus surface (arrows). A, H, SANT-Algae 11671; B, C, holotype SANT-Algae 33667; D, E, SANT-Algae 26900; F, SANT-Algae 7046; G, SANT-Algae 11683; I, SANT-Algae 15006. Scale bars: A, B, D, 200 µm; C, G-I, 50 µm; E, F, 20 µm.
APPENDIX 2 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
APPENDIX 2. — Lithophyllum stictiforme (Areschoug) Hauck in Algarve, South Portugal (SANT-Algae 27308): A, habitat of the specimen collected on bedrock at 17 m depth; B, vertical section of the thallus showing a monomerous thallus construction. Scale bar: 500 µm.
FIG. 1 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 1. — Habitat and habit of Lithophyllum artabricum V.Peña, sp. nov.: A-D, characteristic habitat of this species growing in subtidal bedrock, sometimes sciophilous, in the type locality (A), and other Galician localities (B-D, Cedeira, Cambre and Sisargas, respectively); E, F, gross morphology consisted on foliose lamellae or fan-like thallus, single or superimposed (arrow) observed in the specimen SANT-Algae 15006 (E) and in the holotype (F, SANT-33667); G, lower surface of the specimen showing concentric lines, particularly visible at the margins as the remaining surface is covered by sessile invertebrates (SANT-Algae 11666). Scale bars: E, 2 cm; F, G, 1 cm.
BELL BEAKER DATA BASE FOR THE IBERIAN PENINSULA EASTERN FACADE
<p>This database is one of the data packagaes used in the making of the PhD dissertation "Connecting with the past: social networks in recent Prehistory".</p> <p>It contains information from all the Bell-Beaker vessels known, from a wide area (provinces of Valencia, Alicante, Castellón, Teruel, Almería y Murcia).</p> <p>It was made using Filemaker format, and is linked to a database with all the material culture present for the same area.</p>
Linking up Bell beakers in the Iberian Peninsula: Supplementary Material
<p>Many studies in complexity theory employ agent-based models whose interactions can be expressed as networks. In such models, the pattern of interactions between actors is crucial, and the network topology that emerges from the raw data can be characterized through many metrics. There is one tool that has been previously employed in Archaeology studies and has the potential to deal with networks in social contexts at different scales of analysis: social network analysis (SNA). This discipline has been applied successfully in wide range of archaeological problems, providing valuable insights and a different perspective. It also could be useful to provide quantification to concepts associated with social complexity, such as robustness, resilience, and edge-of-chaos threshold. In this work, we will propose some methodologic possibilities to approximate some of these concepts through SNA. In order to illustrate the process, we will present a case study from the Copper Age in the Iberian Peninsula: Bell beaker phase.</p>
FIG. 5 in Polydesmid millipedes in the MSS of the northern Iberian Peninsula (Diplopoda, Polydesmida, Polydesmidae)
FIG. 5. — Gonopods of two of the six species collected: A-C, right (A, C) and left (B) gonopods of Polydesmus asturiensis Djursvoll, 2019 from Llobango (LLO) in mesal (A), lateral (B) and ventro-anteromesal (C) view; D-F, left (D) and right (E-F) gonopods of Polydesmus racovitzai BrÖlemann, 1910 from Sierra del Mencilla (MEF) in lateral (D) and mesal (E-F) view. Scale bars: A-C, 0.1 mm; D, 0.2 mm; E, 0.1 mm; F, 0.2 mm.
FIG. 4 in Polydesmid millipedes in the MSS of the northern Iberian Peninsula (Diplopoda, Polydesmida, Polydesmidae)
FIG. 4. — Gonopods of four of the six species collected: A, left gonopod of Archipolydesmus osellai Ceuca, 1968 from the Sierra de Mencilla (MEF) in lateral view; B, right gonopod of Polydesmus angustus Latzel, 1884 from the Sierra Mediana (PES) in mesal view; C, left gonopod of Polydesmus coriaceus Porat, 1870 from the Sierra de Santo Domingo (SDF) in lateral view; D, left gonopod of Propolydesmus dismilus (Berlese, 1891) from the Sierra de Luesia (SL1) in lateral view. Scale bars: 0.5 mm.
FIG. 2 in Polydesmid millipedes in the MSS of the northern Iberian Peninsula (Diplopoda, Polydesmida, Polydesmidae)
FIG. 2. — Examples of sampled landscapes: A, scree in the glacier circus of Mencilla (MEB); B, beech forest over scree in Moncayo mountain (MOF); C, forested scree in the Sierra de Santo Domingo (SDF); D, alluvial debris in the Arba de Luesia river (SL2); E, scree in the Piedras Luengas Pass (PLB); F, scree in Calar de San Martino (CMA).
FIG. 1 in Polydesmid millipedes in the MSS of the northern Iberian Peninsula (Diplopoda, Polydesmida, Polydesmidae)
FIG. 1. — Location of sampling sites and installation of subterranean sampling devices (SSDs): A, physical map of the northern Iberian Peninsula with sampling points marked in green (Cantabrian Range), yellow (Iberian System) and blue (Pyrenees); codes as in Table 1; B, hole digging in a scree; C, multiperforated tube (1 m) placed in the hole; D, buried tube with open top and pitfall trap about to be installed inside; E, fully installed SSD and covered with stones.
Fig. 5 in Calling songs of sympatric and allopatric populations of Cicada barbara and C. orni (Hemiptera: Cicadidae) on the Iberian Peninsula
Fig. 5. Scores of the first two PCA components extracted from a data matrix, which was composed of 9 acoustic variables measured for 158 individuals of Cicada barbara (Cb) and C. orni (Co) occurring allopatrically (allop) and sympatrically (symp).
Fig. 2 in Calling songs of sympatric and allopatric populations of Cicada barbara and C. orni (Hemiptera: Cicadidae) on the Iberian Peninsula
Fig. 2. Oscillograms (amplitude vs. time) and sonagrams (frequency vs. time) of the calling songs of Cicada barbara and C. orni.
Fig. 4 in Calling songs of sympatric and allopatric populations of Cicada barbara and C. orni (Hemiptera: Cicadidae) on the Iberian Peninsula
Fig. 4. Scatterplots of the number of syllables per second relative to temperature in Cicada barbara and C. orni and of both echeme duration and inter-echeme interval relative to temperature in C. orni.
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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.