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1,338 results for “Iberian Peninsula.”
MLuqe algorithm outputs for two unplanned hydroacoustic transects in Zóñar Lake nature reserve (southern Iberian Peninsula).
<p>The outputs generated by the MLuqe algorithm (Gutiérrez-Estrada and Pulido Calvo, 2024; DOI: 10.5281/zenodo.13919472) are organised in two Excel files, one for each hydroacoustic transect. Each file is structured as follows:<br>1. Each file contains a total of 15 sheets, with each sheet corresponding to a set of theoretical fish density (FDS).<br>2. Column A presents details of each simulation. Cell A3 indicates the minimum Hamming similarity between the real and simulated data. Cells A5 and A7 show the simulation configuration and repetition with the minimum Euclidean distance. Cell A11 displays the maximum target density.<br>3. Each cell represents the Euclidean distance between the actual densities observed in the echograms for each transect and the densities simulated by MLuqe.</p> <p>Further details of the MLuqe algorithm and the results obtained can be found in the paper entitled 'Abundance estimation of introduced Goldfish in a protected lake from unplanned hydroacoustic transects' by Gutiérrez-Estrada, J.C., Pulido-Calvo, I., de la Cruz, J., Sánchez-Polaina, F.</p>
FIGURE 5 in Description of Idaea josephinae sp. n. from the Iberian Peninsula (Lepidoptera Geometridae)
FIGURE 5. Habitat preferences: A and B. Xerothermophilous and riparian habitats; C. Riverside vegetation area next to the Segura river.
FIGURE 2 in Description of Idaea josephinae sp. n. from the Iberian Peninsula (Lepidoptera Geometridae)
FIGURE 2. Idaea lobaria (Chrétien, 1909). A. Male: Morocco, High Atlas, Tiseldei, 1600 m, south of Tizi-n-Tichka, 29.05.2017, leg. and gen. prep. Rolf Bläsius; B. Male: Morocco, Anti-Atlas, 30 km northeast of Igherm, 1500 m, 30.05.2010, leg. Rolf Bläsius; C and D. Male genitalia and detailed aedeagus from specimen A. (Pictures courtesy of Harald Lahm in Lepiforum.de)
FIGURE 4 in Description of Idaea josephinae sp. n. from the Iberian Peninsula (Lepidoptera Geometridae)
FIGURE 4. Neighbour-Joining tree (K2P; constructed with MEGA6; COI 5'> 600 bp) including 14 sequences of selected Idaea species, rooted with Idaea infirmaria as outgroup. The depth of each branch shows divergence between lineages. The scale bar represents 0.003 genetic difference.
FIGURE 7 in A case of allopatric speciation in the Central System (Iberian Peninsula): Leistus elpis sp. nov., a sibling species of Leistus constrictus (Coleoptera Carabidae)
FIGURE 7. Leistus (Leistus) constrictus from Sierra de Guadarrama, details of male genitalia from Canchal del Arroyo Najarra: a) median lobe in left lateral view; b) apex of the median lobe in anterior view; c) median lobe in dorsal view; d) left paramere; e) right paramere; f) ring sclerite. Median lobe in dorsal view: g) from Majada Conejo; i) from Canchal El Paredón. Scale bars: 0.5 mm.
FIGURE 6 in A case of allopatric speciation in the Central System (Iberian Peninsula): Leistus elpis sp. nov., a sibling species of Leistus constrictus (Coleoptera Carabidae)
FIGURE 6. Canonical Discriminant Analysis (CDA) plot of the biometrical characteristics of Leistus (Leistus) constrictus from Sierra de Guadarrama and Leistus (Leistus) elpis sp. nov. from Sierra de Ayllón. A square inside each dispersion polygon represents the centroid; i.e., the hypothetical middle individual of each sample.
FIGURE 1 in A case of allopatric speciation in the Central System (Iberian Peninsula): Leistus elpis sp. nov., a sibling species of Leistus constrictus (Coleoptera Carabidae)
FIGURE 1. Map of the distribution of Leistus (Leistus) constrictus and Leistus (Leistus) elpis sp. nov. Names of the localities and numbers of sampled specimens by location mentioned in this paper.
FIGURE 5 in A case of allopatric speciation in the Central System (Iberian Peninsula): Leistus elpis sp. nov., a sibling species of Leistus constrictus (Coleoptera Carabidae)
FIGURE 5. Female genitalia. Leistus (Leistus) elpis sp. nov. from Las Aleguillas-Cerro Gordo, Martín Muñoz de Ayllón: a) genital shield and spermathecal complex in dorsal view; b) spermathecal complex in left lateral view; c) genital shield in ventral view; d) gonocoxite and gonosubcoxite in internal side view. Leistus (Leistus) constrictus from Puerto de Navacerrada: e) spermathecal complex in dorsal view. Abbreviation: bur, bursa copulatrix; du, spermathecal duct; gcox, IX gonocoxite; gsub, IX gonosubcoxite; lat, IX laterotergite; ov, odd oviduct; scl.h, sclerite helmintoide; spm, spermatheca; va, vagina.
FIGURES 8–13 in Redescription of the last instar larva of Stenophylax fissus (McLachlan 1875) and the DNA barcode of Stenophylax crossotus McLachlan 1884 (Trichoptera Limnephilidae) with an updated diagnostic matrix of the known larvae of Stenophylax species of the Iberian Peninsula
FIGURES 8–13. Larva of Stenophylax fissus (McLachlan 1875). (8) Thorax and abdominal segment I, dorsal; pronotal setae, white circle; metanotal setae between sa2 sclerites, blue circle. (9) Right legs, posterior faces. (10) Right legs, anterior faces; spines of ventral edge of meso- and metathoracic femora, blue circles; (11) right foreleg and midleg, posterior faces; dorsoproximal and dorsodistal setae of forefemur, black arrows, and of mesothoracic femur, red arrows. (12) Habitus, right lateral; start and end of lateral fringe, red and black arrows, respectively. (13) Terminal abdominal segments, right lateral; end of lateral fringe, black arrow. All figures scale: 1 mm.
FIGURES 2–7 in Redescription of the last instar larva of Stenophylax fissus (McLachlan 1875) and the DNA barcode of Stenophylax crossotus McLachlan 1884 (Trichoptera Limnephilidae) with an updated diagnostic matrix of the known larvae of Stenophylax species of the Iberian Peninsula
FIGURES 2–7. Larva of Stenophylax fissus (McLachlan 1875). (2) Head capsule, dorsal; spinules, blue circle; antenna, red arrow. (3) Labrum and anterior part of head capsule, dorsal; spinules, blue circle; antenna, red arrow. (4) head capsule, right lateral; spinules, blue circles; antenna, red arrow. (5) Left mandible, ventral. (6) head capsule, ventral. (7) Head, thorax, abdominal segments I and II, right lateral. All figures scale: 1 mm, except (5) scale: 0.5 mm.
FIGURES 20–22 in Redescription of the last instar larva of Stenophylax fissus (McLachlan 1875) and the DNA barcode of Stenophylax crossotus McLachlan 1884 (Trichoptera Limnephilidae) with an updated diagnostic matrix of the known larvae of Stenophylax species of the Iberian Peninsula
FIGURES 20–22. Larva of Stenophylax fissus (McLachlan 1875). (20) Tip of abdomen, caudoventral; sternum IX setae, red arrows; right anal claw and its accessory hook, black arrow. (21, 22) Larval cases: (21) case of earlier instar; (22) case of later instar. All figures scale: 1 mm.
FIGURE 1 in Redescription of the last instar larva of Stenophylax fissus (McLachlan 1875) and the DNA barcode of Stenophylax crossotus McLachlan 1884 (Trichoptera Limnephilidae) with an updated diagnostic matrix of the known larvae of Stenophylax species of the Iberian Peninsula
FIGURE 1. Map showing the location of the Stenophylax populations of the Iberian Peninsula studied in this work.
FIGURES 14–19 in Redescription of the last instar larva of Stenophylax fissus (McLachlan 1875) and the DNA barcode of Stenophylax crossotus McLachlan 1884 (Trichoptera Limnephilidae) with an updated diagnostic matrix of the known larvae of Stenophylax species of the Iberian Peninsula
FIGURES 14–19. Larva of Stenophylax fissus (McLachlan 1875). (14) Abdominal segment I, dorsal. (15) Lower parts of abdominal segments I and II, left lateral; left lateral hump with 2 sclerites, white circle. (16) Abdominal sternum I, ventral. (17) Setae on abdominal dorsum VIII, dorsal. (18) Setae on abdominal tergum IX, dorsal; long, A setae, white arrows; long setae and C setae, black arrows; posterolateral setae, red arrows. (19) Setae on abdominal tergum IX, right lateral; A and C setae, black arrows. All figures scale: 1 mm.
FIGURE 2 in Centaurea stuessyi (Compositae: Cardueae), a new species from the eastern Iberian Peninsula
FIGURE 2. Distribution ranges of Centaurea antennata (subsp. antennata and subsp. meridionalis), C. linifolia and C. stuessyi.
FIGURE 11–15 in New species of Pseudosinella (Collembola: Entomobryidae) from Iberian Peninsula
FIGURE 11–15. Pseudosinella jordanai sp. nov.: 11, unguis III; 12, eyes; 13, chaetotaxy of Abd. IV; 14, labium; 15, chaetotaxy of Abd. II.
FIGURES 1–5 in New species of Pseudosinella (Collembola: Entomobryidae) from Iberian Peninsula
FIGURES 1–5. Pseudosinella zaragozana Arbea: 1, unguis III; 2, labium; 3, chaetotaxy of Abd. IV; 4, eyes; 5,chaetotaxy of Abd. II.
FIGURE 6–10 in New species of Pseudosinella (Collembola: Entomobryidae) from Iberian Peninsula
FIGURE 6–10. Pseudosinella luenganensis sp. nov.: 6, labium; 7, eyes; 8, chaetotaxy of Abd. IV; 9, unguis III; 10, chaetotaxy of Abd. II.
FIGURE 5. A in Morphometric characterization of Eryngium viviparum (Umbelliferae): description of a new subspecies from the Iberian Peninsula
FIGURE 5. A) Eryngium viviparum subsp. viviparum. A, B drawn from voucher P00271721 of Paris Herbarium [A, branches with basal leaves and inflorescences (capitula); B. bracteole detail]. Eryngium viviparum subsp. bariegoi. C, D drawn from SANT Herbarium, SANT 60809 [C, branches and D, bbracteole]. Drawing by Luis Gómez-Orellana.
FIGURE 4 in Morphometric characterization of Eryngium viviparum (Umbelliferae): description of a new subspecies from the Iberian Peninsula
FIGURE 4. Probability density functions of the means (n = 10) of the ratio between bracteole length and width for the three subpopulations. Solid line: Brittany, dashed line: Galicia, dash-dot line: Castile-León. Each distribution was estimated by resampling the data for the corresponding subpopulation.
FIGURE 3. Bivariate probability density plot for the variables bracteole length and bracteole width. The isolines are 0.2 in Morphometric characterization of Eryngium viviparum (Umbelliferae): description of a new subspecies from the Iberian Peninsula
FIGURE 3. Bivariate probability density plot for the variables bracteole length and bracteole width. The isolines are 0.2 probability units apart, and those with a thicker line are the 1.0 and 2.0 levels. Note that although the three modes are clearly distinguishable, there is a large overlap between the Galician and French subpopulations.
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Allen Brain Atlas
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