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765 results for “alps”
FIGURE 25 in Taraxacum sect. Erythrocarpa in Europe in the Alps and eastwards: A revision of a precursor group of relicts
FIGURE 25. Taraxacum jailae. Outer phyllaries and achenes. Scale bar = 1 mm.
Supplementary material 1 from: Jaun A, Wymann H-P, Lucek K (2022) Lack of genetic structure suggests high connectivity of Parnassius phoebus between nearby valleys in the Alps. Alpine Entomology 6: 1-6. https://doi.org/10.3897/alpento.6.80405
Table S1
Supplementary material 3 from: Cosandey V, Broennimann O, Guisan A (2022) Modeling the distribution of coprophagous beetle species in the Western Swiss Alps. Alpine Entomology 6: 25-38. https://doi.org/10.3897/alpento.6.83730
Figure S3
Supplementary material 2 from: Cosandey V, Broennimann O, Guisan A (2022) Modeling the distribution of coprophagous beetle species in the Western Swiss Alps. Alpine Entomology 6: 25-38. https://doi.org/10.3897/alpento.6.83730
Figure S2
Supplementary material 1 from: Cosandey V, Broennimann O, Guisan A (2022) Modeling the distribution of coprophagous beetle species in the Western Swiss Alps. Alpine Entomology 6: 25-38. https://doi.org/10.3897/alpento.6.83730
Figure S1
Distribution. Alps of SE France, Switzerland, S Germany, Liechtenstein, Austria, and N Italy. in Muridae
Distribution. Alps of SE France, Switzerland, S Germany, Liechtenstein, Austria, and N Italy.
The contamination legacy of a decommissioned iron smelter in the Italian Alps
<p>Supplementary material from: The contamination legacy of a decommissioned iron smelter in the Italian Alps</p> <p>Journal of Geochemical Exploration, GEXPLO6064 (PII:S0375-6742(17)30432-6)<br> <br> Soils: collected at a 5, 10, 15, 20 and 25 cm depth, sieved through a 2 mm mesh</p> <p>Study area: former SISMA steel plant of Villadossola (46°04′25″N, 08°16′01″E)</p>
Supplementary material 4 from: Davoli F, Cozzo M, Angeli F, Groff C, Randi E (2018) Infanticide in brown bear: a case-study in the Italian Alps – Genetic identification of perpetrator and implications in small populations. Nature Conservation 25: 55-75. https://doi.org/10.3897/natureconservation.25.23776
Table S1. Detailed results of the biological model (consensus and composite) :
Supplementary material 1 from: Davoli F, Cozzo M, Angeli F, Groff C, Randi E (2018) Infanticide in brown bear: a case-study in the Italian Alps – Genetic identification of perpetrator and implications in small populations. Nature Conservation 25: 55-75. https://doi.org/10.3897/natureconservation.25.23776
Text S1. Parameters used for parentage analysis :
Supplementary material 3 from: Davoli F, Cozzo M, Angeli F, Groff C, Randi E (2018) Infanticide in brown bear: a case-study in the Italian Alps – Genetic identification of perpetrator and implications in small populations. Nature Conservation 25: 55-75. https://doi.org/10.3897/natureconservation.25.23776
Text S3. Detailed results of LRmix STUDIO for each suspected male: Global Composite (ADO 0.55) :
Supplementary material 2 from: Davoli F, Cozzo M, Angeli F, Groff C, Randi E (2018) Infanticide in brown bear: a case-study in the Italian Alps – Genetic identification of perpetrator and implications in small populations. Nature Conservation 25: 55-75. https://doi.org/10.3897/natureconservation.25.23776
Text S2. Detailed results of LRmix STUDIO for each suspected male: Global Consensus (ADO 0.65) :
Figure 1 from: Nimis PL, Hafellner J, Roux C, Clerc P, Mayrhofer H, Martellos S, Bilovitz PO (2018) The lichens of the Alps – an annotated checklist. MycoKeys 31: 1-634. https://doi.org/10.3897/mycokeys.31.23568
Figure 1 Delimitation of the Alps, with the administrative subdivisions (for abbreviations, see below).
Figure 2-7 from: Schmid J (2018) Remarkable discovery of the Atlanto-Mediterranean moth Scythris ventosella Chrétien, 1907 at high altitude in the Alps of Valais, Switzerland – a possible relict of the late-glacial steppe-belt fauna? (Lepidoptera, Scythrididae). Alpine Entomology 2: 45-49. https://doi.org/10.3897/alpento.2.23531
Figure 2-7 2) Biotope, 3040m a.s.l.; 3) Herniaria alpina; 4) Adult caterpillar; 5) Freshly emerged moth; 6) Reared moth. Scale bar unit: mm; 7) Wild moth. Scale bar unit: mm.
Figure 1 from: Schmid J (2018) Remarkable discovery of the Atlanto-Mediterranean moth Scythris ventosella Chrétien, 1907 at high altitude in the Alps of Valais, Switzerland – a possible relict of the late-glacial steppe-belt fauna? (Lepidoptera, Scythrididae). Alpine Entomology 2: 45-49. https://doi.org/10.3897/alpento.2.23531
Figure 1 Male genitals (above) and sternum 8 (below) of S. ventosella. Site: Switzerland, Canton of Valais, Zermatt, Unterrothorn 3040 m, 6. VIII. 2016, leg., gen. prep. and coll. Jürg Schmid.
Figure 8 from: Schmid J (2018) Remarkable discovery of the Atlanto-Mediterranean moth Scythris ventosella Chrétien, 1907 at high altitude in the Alps of Valais, Switzerland – a possible relict of the late-glacial steppe-belt fauna? (Lepidoptera, Scythrididae). Alpine Entomology 2: 45-49. https://doi.org/10.3897/alpento.2.23531
Figure 8 Currently known distribution of S. ventosella in the Alps (red asterisk) and in the Western Mediterraneum (blue dots).
Figures 6-15 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Hallgass A, Lesicki A (2019) Exploration of phylogeography of Monacha cantiana s.l. continues: the populations of the Apuan Alps (NW Tuscany, Italy) (Eupulmonata, Stylommatophora, Hygromiidae). ZooKeys 814: 115-149. https://doi.org/10.3897/zookeys.814.31583
Figures 6-15 Shell variability in Monachacantiana s.l. CAN-5 from Piastra (FGC 41563) (6, 7), Foce di Pianza (FGC 41565) (8, 9) and Campo Cecina (FGC 41564) (10–12); CAN-6 from Campagrina (FGC 40322) (13–15).
Figures 42- 43 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Hallgass A, Lesicki A (2019) Exploration of phylogeography of Monacha cantiana s.l. continues: the populations of the Apuan Alps (NW Tuscany, Italy) (Eupulmonata, Stylommatophora, Hygromiidae). ZooKeys 814: 115-149. https://doi.org/10.3897/zookeys.814.31583
Figures 42- 43 Principal component analysis (PCA) and Redundancy analysis (RDA) with lineage applied to the original genitalia matrix (42) and Z-matrix (shape-related) (43).
Figures 35-41 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Hallgass A, Lesicki A (2019) Exploration of phylogeography of Monacha cantiana s.l. continues: the populations of the Apuan Alps (NW Tuscany, Italy) (Eupulmonata, Stylommatophora, Hygromiidae). ZooKeys 814: 115-149. https://doi.org/10.3897/zookeys.814.31583
Figures 35-41 Genitalia (proximal parts excluded) (35), internal structure of distal genitalia (36) and transverse sections of medial epiphallus (37, 39), basal and apical penial papilla (38, 40, 41) of Monachacantiana s.l. CAN-6 from Campagrina (FGC 40322).
Figures 30-34 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Hallgass A, Lesicki A (2019) Exploration of phylogeography of Monacha cantiana s.l. continues: the populations of the Apuan Alps (NW Tuscany, Italy) (Eupulmonata, Stylommatophora, Hygromiidae). ZooKeys 814: 115-149. https://doi.org/10.3897/zookeys.814.31583
Figures 30-34 Genitalia (proximal parts excluded) (30), transverse sections of medial epiphallus (31, 32) and basal and apical penial papilla (33, 34) of Monachacantiana s.l. CAN-5 Campo Cecina (FGC 41564).
Figures 25-29 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Hallgass A, Lesicki A (2019) Exploration of phylogeography of Monacha cantiana s.l. continues: the populations of the Apuan Alps (NW Tuscany, Italy) (Eupulmonata, Stylommatophora, Hygromiidae). ZooKeys 814: 115-149. https://doi.org/10.3897/zookeys.814.31583
Figures 25-29 Genitalia (proximal parts excluded) (25), internal structure of distal genitalia (26), transverse sections of medial epiphallus (27) and basal and apical penial papilla (28, 29) of Monachacantiana s.l. CAN-5 from Foce di Pianza (FGC 41565).
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International Brain Laboratory public data
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OpenNeuro
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