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1,338 results for “Iberian Peninsula.”
Figure 2 from: Acedo C, Llamas F (2019) A new species of perennial Bromus (Bromeae, Poaceae) from the Iberian Peninsula. PhytoKeys 121: 1-12. https://doi.org/10.3897/phytokeys.121.32588
Figure 2 Distribution map representing all the known locations of Bromuspicoeuropeanus.
Canopy Height Models of Iberian Peninsula 2018-2021 at 10 m resolution
<p>Forest canopy height model for study areas distribuited along Spain (GALICIA/ EXTREMADURA/ANDALUCIA/LEON Regions, Rodeno, Guara (ARAGON), Cabañeros (CASTILLA Y LA MANCHA)), Portugal (7 study areas) using airborne Lidar data (ALS) collected in 2018, 2019, 2020 and 2021. The maps were produced by at the resolution of 10 m. The raw point cloud data information could be obtained:</p> <p>https://pnoa.ign.es/web/portal/pnoa-lidar/segunda-cobertura</p> <p>GAL,EXT,AND,CYL,ARA,CYM</p> <p>https://geocatalogo.icnf.pt/geovisualizador/agil/</p> <p>MAFRA,MONSANTO, OLEIROS, POMBAL, SINTRA, VILA POUÇA DE AGUIAR, SERRA DA LOUSA</p> <p>The CHM’s generation procedure is composed by four steps. It starts by the creation of 500m x 500m tiles using a 50m buffer, resorting to the lastile function, followed by the lasheight function that is used to compute the elevation of each point above the ground. Then, the lastile function is used again to remove the buffer from the normalised point clouds. These first three steps resort to the LASTools software. The fourth, and final step, consists in the generation of the CHM with a 10 m resolution resorting to the pit-free algorithm implemented in the rasterize_canopy function from the lidR package.</p> <p>The file is a GeoTIFF Portugal EPSG: 3763, Spain EPSG:25830</p> <p>Use of these data requires citation of this dataset </p>
Figure 3 from: Camacho A, Dorda B, Rey I (2014) Iberian Peninsula and Balearic Island Bathynellacea (Crustacea, Syncarida) database. ZooKeys 386: 1-20. https://doi.org/10.3897/zookeys.386.6296
Figure 3 - Distribution of records in the dataset by regions (Autonomous Communities).
Figure 6 from: Camacho A, Dorda B, Rey I (2014) Iberian Peninsula and Balearic Island Bathynellacea (Crustacea, Syncarida) database. ZooKeys 386: 1-20. https://doi.org/10.3897/zookeys.386.6296
Figure 6 - Distribution of records in the dataset by years.
Figure 4 from: Camacho A, Dorda B, Rey I (2014) Iberian Peninsula and Balearic Island Bathynellacea (Crustacea, Syncarida) database. ZooKeys 386: 1-20. https://doi.org/10.3897/zookeys.386.6296
Figure 4 - Distribution of records in the dataset by habitat sampled.
Fig. 3 in New records of the exotic black little ant Monomorium carbonarium in the Iberian Peninsula and discovery of the ergatoid queen (Hymenoptera: Formicidae)
Fig. 3 – Queen of M. carbonarium.
FIGURES 5–6 in Prionotropis xausi, a new species of Thrinchinae (Orthoptera: Pamphagidae) from Catalonia (northeast of the Iberian Peninsula)
FIGURES 5–6. Dorsal (5) and Lateral (6) view of phallic complex of Prionotropis xausi n. sp. (Holotype).
FIGURES 9–10 in Prionotropis xausi, a new species of Thrinchinae (Orthoptera: Pamphagidae) from Catalonia (northeast of the Iberian Peninsula)
FIGURES 9–10. Lateral view of spines of abdominal tergites of female Paratypus of Prionotropis xausi sp. (9) and P. ancosae (10).
FIGURES 2–4 in Prionotropis xausi, a new species of Thrinchinae (Orthoptera: Pamphagidae) from Catalonia (northeast of the Iberian Peninsula)
FIGURES 2–4. Lateral view of male of Prionotropis xausi n. sp. (2) with the other two species presents in Catalonia, P. ancosae (3) and P. flexuosa (4).
FIGURE 8 in Prionotropis xausi, a new species of Thrinchinae (Orthoptera: Pamphagidae) from Catalonia (northeast of the Iberian Peninsula)
FIGURE 8. Mesosternum of female of Prionotropis xausi n. sp. with mesosternal lobes (a) and mesosternal interspace (b). Prosternal process (c).
FIGURE 7 in A new species of Cypris (Crustacea: Ostracoda) from the Iberian Peninsula and the Balearic Islands, with comments on the first ostracod named using the Linnean system
FIGURE 7. Details of the maxillula (Mx), maxillular branchial plate (Mx bp), 5th limb (L5; maxilliped), 6th limb (L6; walking leg), 7th limb (L7; cleaning leg) and its pincer and caudal ramus (Cr), together with the female genital organ of C. pretusi sp. nov. All drawings from individual MUVHNZY0005, except branchial plates of Mx and L5, detail of the tip of L7 (MUVH- NZY0006) and female genital organ (MUVHNZY0007).
FIGURE 8 in A new species of Cypris (Crustacea: Ostracoda) from the Iberian Peninsula and the Balearic Islands, with comments on the first ostracod named using the Linnean system
FIGURE 8. Maximum Likelihood tree inferred using the Hasegawa-Kishino-Yano model on the COX1 alignment data. Bootstrap support values (percentage of trees in which the associated taxa clustered together) larger than 80 are shown next to the branches. The tree is drawn to scale, with branch lengths measured in the number of substitutions per site. Pictures: C. pubera, SEM figure of RV (inner view) from R. Ebo (Zamora et al. 2005b); C. triaculeata, photograph of individual BOLD:SAOST070- 08.COI-5P (Genbank code MG310480); C. pretusi sp. nov., individual from Bejís (sampled 15th of March 2019; Table 1); C. bispinosa, individual from Benirrama pond (mud culture, June 2019).
FIGURE 5 in A new species of Cypris (Crustacea: Ostracoda) from the Iberian Peninsula and the Balearic Islands, with comments on the first ostracod named using the Linnean system
FIGURE 5. Scanning electron micrographs (A-K) and drawings (L–N) of shells and valves of Cypris pretusi sp. nov. A–B: dorsal (A) and ventral (B) view of whole specimens from R. Palància (A: MUVHNZY0000, B: MUVHNZY0001). C: dorsal view of a specimen from Minorca (MUVHNZY0002). D–E: Inner view of left (D) and right (E) valves of specimen MUVHNZY0005 from R. Palància. F–G: Inner views of left (F) and right (G) valves of a specimen MUVHNZY0003 from Minorca. H–I: Outer views of right (H) and left (I) valves of a specimen MUVHNZY0004 from Minorca. J: detail of anteroventral part of a female (MUVHNZY0001). K: detail of postero-ventral part of a female (MUVHNZY0001) showing the apparent denticles, larger and less numerous in the right valve. L–N: drawings of left (L) and right (M) valve, and detail of the posterior edge of right valve (N) of a specimen (MUVHNZY0008) from Minorca. Small scale below M=500 µm for A–I, L and M, larger scale=500 µm for N. Scale for J–K indicated as=100 µm.
FIGURE 6 in A new species of Cypris (Crustacea: Ostracoda) from the Iberian Peninsula and the Balearic Islands, with comments on the first ostracod named using the Linnean system
FIGURE 6. Details of the antennula (An1), antenna (An2), and mandibula (Md) of C. pretusi sp. nov. All drawings from individual MUVHNZY0005, except branchial plate of Md and Ro (MUVHNZY0006).
FIGURE 4. Page 198 in A new species of Cypris (Crustacea: Ostracoda) from the Iberian Peninsula and the Balearic Islands, with comments on the first ostracod named using the Linnean system
FIGURE 4. Page 198 of Müller (1776), where he introduces the ostracod species name Cypris pubera for the first time and synonymizes it with Linnaeus' Monoculus conchaceus.
FIGURE 3 in A new species of Cypris (Crustacea: Ostracoda) from the Iberian Peninsula and the Balearic Islands, with comments on the first ostracod named using the Linnean system
FIGURE 3. Top part of page 635 of Linnaeus' (1758) Systema naturae, where he replaces the ostracod name Monoculus concha pedata by the new Monoculus conchaceus, referring to his Fauna svecica code Fn Svec. 1185 (see Figs. 1–2)
FIGURE 2 in A new species of Cypris (Crustacea: Ostracoda) from the Iberian Peninsula and the Balearic Islands, with comments on the first ostracod named using the Linnean system
FIGURE 2. Top of page 68 of Linnaeus' (1748) Systema naturae, naming the first ostracod Monoculus concha pedata, and referring to his Fauna svecica code Fn. 1185 (see Fig. 1)
Subspecies and Distribution. R f. ferrumequinum Schreber, 1774 - S Europe from Iberian Peninsula and France E to Romania, Bulgaria, and Greece including SW Great Britain, S Germany, S Poland, and Crimea, also on most Mediterranean Is (Balearics, Corsica, Sardinia, Sicily, Malta, Crete, Cyprus, etc.), Turkey (Anatolia), NW Africa (N Morocco, N Algeria, N Tunisia, and NW Libya), and Levant region. R f. proximus K. Andersen, 1905 - Transcaucasia, Mesopotamia, S Turkmenistan, N, W & S Iran, Afghanistan, Tajikistan, Kyrgyzstan, Pakistan, and N India (Kashmir). in Rhinolophidae
Subspecies and Distribution. R f. ferrumequinum Schreber, 1774 - S Europe from Iberian Peninsula and France E to Romania, Bulgaria, and Greece including SW Great Britain, S Germany, S Poland, and Crimea, also on most Mediterranean Is (Balearics, Corsica, Sardinia, Sicily, Malta, Crete, Cyprus, etc.), Turkey (Anatolia), NW Africa (N Morocco, N Algeria, N Tunisia, and NW Libya), and Levant region. R f. proximus K. Andersen, 1905 - Transcaucasia, Mesopotamia, S Turkmenistan, N, W & S Iran, Afghanistan, Tajikistan, Kyrgyzstan, Pakistan, and N India (Kashmir).
Subspecies and Distribution. R. h. hipposideros Borkhausen, 1797 — continental Europe E to S Ukraine and Romania. R. h. escaleraeK. Andersen, 1918 — N Morocco, N Algeria, and N Tunisia. R. h. majori K. Andersen, 1918 — Corsica. R. h. midas K Andersen, 1905 — SW Russia, Georgia, Azerbaijan, Armenia, N Iraq, N, W & S Iran (including Qeshm I), SW Turkmenistan, S Kazakhstan, E Uzbekistan, WKyrgyzstan, Tajikistan, N & E Afghanistan, NE Pakistan, and NW India (Kashmir). R. h. minimus Heuglin, 1862 - Mediterranean Europe from Iberian Peninsula E to Greece, Turkey, N & W Syria, Lebanon, Israel, Palestine, WJordan, NE Egypt (Sinai), and W Saudi Arabia, with isolated records in E Africa, from SW Sudan, C Eritrea, Djibouti, and C Ethiopia; also on a number of Mediterranean Is, including Balearic Is, Sardinia, Sicily, Pantelleria, Malta, Ionian Is (Corfu and Kefalonia), Aegean Is (Thasos, Euboea, Skyros, Lesbos, Chios, Kos, and Rhodes), Crete, and Cyprus. R h. minutus Montagu, 1808 — W Ireland and SW Britain. in Rhinolophidae
Subspecies and Distribution. R. h. hipposideros Borkhausen, 1797 — continental Europe E to S Ukraine and Romania. R. h. escaleraeK. Andersen, 1918 — N Morocco, N Algeria, and N Tunisia. R. h. majori K. Andersen, 1918 — Corsica. R. h. midas K Andersen, 1905 — SW Russia, Georgia, Azerbaijan, Armenia, N Iraq, N, W & S Iran (including Qeshm I), SW Turkmenistan, S Kazakhstan, E Uzbekistan, WKyrgyzstan, Tajikistan, N & E Afghanistan, NE Pakistan, and NW India (Kashmir). R. h. minimus Heuglin, 1862 - Mediterranean Europe from Iberian Peninsula E to Greece, Turkey, N & W Syria, Lebanon, Israel, Palestine, WJordan, NE Egypt (Sinai), and W Saudi Arabia, with isolated records in E Africa, from SW Sudan, C Eritrea, Djibouti, and C Ethiopia; also on a number of Mediterranean Is, including Balearic Is, Sardinia, Sicily, Pantelleria, Malta, Ionian Is (Corfu and Kefalonia), Aegean Is (Thasos, Euboea, Skyros, Lesbos, Chios, Kos, and Rhodes), Crete, and Cyprus. R h. minutus Montagu, 1808 — W Ireland and SW Britain.
FIGURE 1. Athroolopha latimargo Rothschild. A in Redescription and DNA barcoding of diurnal moth Athroolopha latimargo Rothschild, 1914 bona sp., stat. rev. from the southern Iberian Peninsula (Lepidoptera: Geometridae: Ennominae)
FIGURE 1. Athroolopha latimargo Rothschild. A. Male adult; B. Female adult; C. Male genitalia; D. Habitat preference known as herrizas; E. Erica umbellata Loefl.
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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.