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129 results for “Pyrenees”

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zenodo32/100

FIGURES 15–16. Baronniesia delioti gen. n in Baronniesia delioti gen. n. sp. n., a new subterranean Leptodirini from the French Pyrenees (Coleoptera: Leiodidae: Cholevinae)

FIGURES 15–16. Baronniesia delioti gen. n. sp. n. 15—urite VIII of female; 16—female genital segment with spermathecal complex.

opennotspecifiedDec 2009View details →
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FIGURE 6 in A new species of blind Trechinae from the Pyrenees of Huesca, and its position within Aphaenops (sensu stricto) (Coleoptera: Carabidae: Trechini)

FIGURE 6. Phylogram obtained with RAxML and the combined mitochondrial and nuclear data. Above nodes, bootstrap support values when superior to 65. See Table 1 for the localities of the specimens.

opennotspecifiedDec 2010View details →
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FIGURES 3–4 in A new species of blind Trechinae from the Pyrenees of Huesca, and its position within Aphaenops (sensu stricto) (Coleoptera: Carabidae: Trechini)

FIGURES 3–4. Aedeagus in lateral view. 3―holotype of Aphaenops parvulus sp. n.; 4―A. eskualduna Coiffait.

opennotspecifiedDec 2010View details →
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FIGURE 5 in A new species of blind Trechinae from the Pyrenees of Huesca, and its position within Aphaenops (sensu stricto) (Coleoptera: Carabidae: Trechini)

FIGURE 5. Map of Pyrenees showing the distribution of Aphaenops parvulus sp. n. (red circle), A. eskualduna Coiffait (green circles) and the general distribution of the Aphaenops (sensu stricto) clade (yellow line).

opennotspecifiedDec 2010View details →
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FIGURE 6 in Discovery of a new blind ground beetle in western French Pyrenees, and its relevance to the phylogeny of Pyrenean hypogean Trechini

FIGURE 6. Phylogram obtained with RAxML of the combined mitochondrial and nuclear data. Blue: Species currently include in the genus Geotrechus, red: Aphaenops sensu stricto, green: Aphaenops (Hydraphaenops), orange: A. (Cerbaphaenops), brown: A. (Simaphaenops) Quéinnec et Ollivier, 2011. Above nodes, bootstrap support values when>75. See Table 1 for the localities of the specimens.

opennotspecifiedDec 2013View details →
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FIGURE 5 in Discovery of a new blind ground beetle in western French Pyrenees, and its relevance to the phylogeny of Pyrenean hypogean Trechini

FIGURE 5. Map of Pyrenees showing the distribution of Geotrechus sarpedon sp. n. (red circle), A. (Hydraphaenops) vasconicus Jeannel (blue circles) and A. (Hydraphaenops) galani Español (green circles).

opennotspecifiedDec 2013View details →
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FIGURE 7 in Discovery of a new blind ground beetle in western French Pyrenees, and its relevance to the phylogeny of Pyrenean hypogean Trechini

FIGURE 7. Cave survey of the type locality, the Grotte d'Oxibar inférieure (modified from Laffite, 1967). Location where the new species was found is indicated by a red dot.

opennotspecifiedDec 2013View details →
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FIGURES 2–4 in Discovery of a new blind ground beetle in western French Pyrenees, and its relevance to the phylogeny of Pyrenean hypogean Trechini

FIGURES 2–4. Geotrechus sarpedon sp. n.; male genitalia. 2―aedeagus in lateral view (scale: 0.2 mm); 3―detail of the inner sac. 4― detail of the humeral group of umbilicate punctures.

opennotspecifiedDec 2013View details →
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FIGURE 7 in New species of Limnephilidae (Insecta: Trichoptera) from Europe: Alps and Pyrenees as harbours of unknown biodiversity

FIGURE 7. Larval characters of A. waringeri sp. nov. A, pronotum, dorsal; B, left lateral protuberance, left lateral (dotted circle indicating setal area sa3, arrow indicating associated sclerite); C, abdominal sternum I, with the separated setal areas 1 (sa1) marked with a dotted circle; D, left side of abdominal segments IX and X and left anal proleg and claw, left lateral (upper arrow indicating posterolateral setae of abdominal dorsum IX, lower arrow indicating long stout seta on abdominal venter IX); E. larval case of A. waringeri sp. nov.

opennotspecifiedDec 2015View details →
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FIGURE 6 in New species of Limnephilidae (Insecta: Trichoptera) from Europe: Alps and Pyrenees as harbours of unknown biodiversity

FIGURE 6. Larval characters of A. waringeri sp. nov. and A. difformis. A, A. waringeri sp. nov. head, left lateral; B, A. waringeri sp. nov. head, frontal; C, A. difformis pronotum, left lateral; D, A. waringeri sp. nov. pronotum, left lateral; E, A. difformis pronotum, right lateral (arrows indicating row of pale yellow setae); F, A. waringeri sp. nov. pronotum, right lateral (arrows indicating row of all-dark setae).

opennotspecifiedDec 2015View details →
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FIGURE 5 in New species of Limnephilidae (Insecta: Trichoptera) from Europe: Alps and Pyrenees as harbours of unknown biodiversity

FIGURE 5. Larva of A. waringeri sp. nov. A, thorax and abdominal dorsum I, with the usual position of a dorsal protuberance marked with a dotted triangle; B, right prothoracic leg, anterior; C, right mesothoracic leg, anterior; D, right metathoracic leg, anterior.

opennotspecifiedDec 2015View details →
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FIGURE 4 in New species of Limnephilidae (Insecta: Trichoptera) from Europe: Alps and Pyrenees as harbours of unknown biodiversity

FIGURE 4. Male genitalia of Anisogamus species. A–D, A. waringeri sp. nov.: A, left lateral; B, phallic apparatus, left lateral (upper) and, dorsal; C, dorsal; and D, caudal. E–H, A. difformis: E, left lateral; F, phallic apparatus, left lateral (upper) and dorsal; G, dorsal; and H, caudal. Abbreviations as in Fig. 1.

opennotspecifiedDec 2015View details →
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FIGURE 1 in New species of Limnephilidae (Insecta: Trichoptera) from Europe: Alps and Pyrenees as harbours of unknown biodiversity

FIGURE 1. Male genitalia of Consorophylax vinconi sp. nov. A, left lateral; B, phallic apparatus, left lateral (upper) and dorsal; C, dorsal; D, caudal. Abbreviations: VIII = abdomen VIII; IX = abdomen IX; X = segment X; X-sa = lateral process of segment X ('superior appendage'); X-mp = median process of segment X ('intermediate appendage'); X-pp = posterior process of segment X; ia = inferior appendage; p = paramere; a = aedeagus.

opennotspecifiedDec 2015View details →
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FIGURE 3 in New species of Limnephilidae (Insecta: Trichoptera) from Europe: Alps and Pyrenees as harbours of unknown biodiversity

FIGURE 3. Habitus images and known distributions of Anisogamus species. A, male A. waringeri sp. nov., right lateral; B, male A. difformis, right lateral; C, shorter-winged female of A. waringeri, right lateral; D, map of the known geographical distributions of Anisogamus species. Records of Anisogamus sp. from the Pyrenees are those of Décamps (1967). Anisogamus waringeri sp. nov. was recorded from the Pyrenees by Menéndez & González (2009) as A. difformis (pers. comm. M. A. González).

opennotspecifiedDec 2015View details →
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FIGURE 7 in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status

FIGURE 7. Distribution (in meters) range of the bumblebee species and subspecies observed in contemporary samplings (grey rectangles) in the Pyrenees compared with the known altitude distribution (black bars) from historical data.

opennotspecifiedDec 2017View details →
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FIGURE 2 in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status

FIGURE 2. Map showing historical locations (●) and recent records (*) of Bombus cullumanus cullumanus.

opennotspecifiedDec 2017View details →
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FIGURE 1 in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status

FIGURE 1. Map of the Spanish Pyrenees indicating the locations visited during the contemporary samplings where bumblebees were collected. Numbers refer to those in Table 1.

opennotspecifiedDec 2017View details →
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FIGURE 3 in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status

FIGURE 3. Map showing historical locations (●) and recent records (*) of Bombus mendax latofasciatus.

opennotspecifiedDec 2017View details →
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FIGURE 8. a in Updated list of bumblebees (Hymenoptera: Apidae) from the Spanish Pyrenees with notes on their decline and conservation status

FIGURE 8. a) Alpine grassland in Spanish Pyrenees (Lleida, Baños de Tredós, 1743 m.); b) Pyrenean coniferous forest of Pinus uncinata (National Park Aigüestortes and St. Maurici lake, 2035 m.). Photos by C. Ornosa.

opennotspecifiedDec 2017View details →
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The deglaciation of the Pyrenees through the 47 ka record of Pllan d'Están paleolake (Ésera valley)

<p>The last deglaciation in the Pyrenees was a complex period with several&nbsp;glacier advances associated with rapid climate changes which differ in terms of timing and&nbsp;intensity. The 46.7 ka lacustrine sequence of Pllan d&rsquo;Est&aacute;n paleolake (1,840 m a.s.l.)&nbsp;provides new information&nbsp;about that deglaciation period for the first time in the &Eacute;sera valley. The multiproxy analysis (sedimentological, geochemical and biological indicators) constrained&nbsp;with a robust chronological model, enabled the longest reconstruction of the glacier evolution, climate and&nbsp;environmental change made in the Pyrenees to date. This lacustrine sedimentary sequence (4.9 m) is composed of banded to finely laminated silts with few intercalations&nbsp;of massive sections where carbonatic, siliciclastic and organic facies appear from the&nbsp;bottom to the top characterizing environmental changes from a subglacial/proglacial lake&nbsp;to the current peatbog. A cold and glacier-dominated period from 46.7 to 15.9 ka BP was&nbsp;interrupted by a warmer period spanning from 38.2 to 34.8 ka. The vegetation succession&nbsp;determined by the palynological analyses is similar to other Pyrenean valleys but dates&nbsp;the onset of mesophyte expansion at 13.8 ka BP during the Aller&oslash;d, pointing to a&nbsp;difference with other European sequences where temperate forest development took place&nbsp;earlier, associated with the B&oslash;lling period. The colder conditions of the Younger Dryas (13-34 11.7 ka) have been detected from cold tolerant diatom taxa that preceded a peatbog&nbsp;development during the Holocene (11.7 ka BP &ndash; present-day). These results, together with&nbsp;previously studied Pyrenean sequences, allow characterizing past environmental changes&nbsp;during last deglaciation phases in southern Europe.</p>

openOct 2023View details →

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International Brain Laboratory public data

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Last verified 2026-04-29Open record