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89 results for “Eastern Alps”

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zenodo36/100

Prehistoric Mining sites in the Lower Inn Valley - Federal Monuments Office documentation of the project Austrian Science Fund project "Prehistoric copper production in the eastern and central Alps" (I 1670)

<p>The dataset contains all tables and RDF-triples created based on the following Federal Monuments Office Documentations</p> <ul> <li>87002.15.01_Verhuettungsplatz_suedlich_Ruine_Rottenburg: <a href="https://zenodo.org/record/5243460"> https://zenodo.org/record/5243460</a></li> <li>87002.16.01_Verhuettungsplatz_suedlich_Ruine_Rottenburg: <a href="https://zenodo.org/record/5244755"> https://zenodo.org/record/5244755</a></li> <li>87002.17.01_Verhuettungsplatz_suedlich_Ruine_Rottenburg: <a href="https://zenodo.org/record/5244794"> https://zenodo.org/record/5244794</a></li> <li>87007.15.01_Bergbaurevier_Schwaz_Brixlegg: <a href="https://zenodo.org/record/5236664"> https://zenodo.org/record/5236664</a></li> <li>87007.16.01_Bergbaurevier_Schwaz_Brixlegg: <a href="https://zenodo.org/record/5243123"> https://zenodo.org/record/5243123</a></li> <li>87009.16.01_Erzaufbereitungsplatz_Schrofen: <a href="https://zenodo.org/record/5243416"> https://zenodo.org/record/5243416</a></li> </ul>

opencc-by-nc-nd-4.0Nov 2021View details →
zenodo36/100

Documentation of Eastern Alps bronze Axes

<p>The dataset contains the documentation of bronze Axes from Tyrol and adjacted areas inkluding shapefiles and RDF-triples.</p>

opencc-by-nc-nd-4.0Nov 2021View details →
zenodo36/100

Fig. 2 in A new pachypleurosaur from the Early Ladinian Prosanto Formation in the Eastern Alps of Switzerland

Fig. 2 (See legend on previous page.)

opencc-by-4.0Jul 2022View details →
zenodo36/100

Fig. 1 in A new pachypleurosaur from the Early Ladinian Prosanto Formation in the Eastern Alps of Switzerland

Fig. 1 (See legend on previous page.)

opencc-by-4.0Jul 2022View details →
zenodo36/100

Fig. 3 in A new pachypleurosaur from the Early Ladinian Prosanto Formation in the Eastern Alps of Switzerland

Fig. 3 (See legend on previous page.)

opencc-by-4.0Jul 2022View details →
zenodo36/100

Fig. 5 in A new pachypleurosaur from the Early Ladinian Prosanto Formation in the Eastern Alps of Switzerland

Fig. 5 (See legend on previous page.)

opencc-by-4.0Jul 2022View details →
zenodo36/100

Woerthersee sediment core data for the publication "Validation of seismic hazard curves using a calibrated 14 ka lacustrine record in the Eastern Alps, Austria"

<p>This&nbsp;dataset comprises sediment core data&nbsp;of W&ouml;rthersee, a lake in the Eastern European Alps, Austria. Together with a dataset comprising the seismic data (10.5281/zenodo.6479186), this&nbsp;is the basis for the publication Daxer&nbsp;et al. &quot;Validation of seismic hazard curves using a calibrated 14 ka lacustrine record in the Eastern Alps, Austria&quot;.</p> <p>The files contain the following data:</p> <ul> <li>Core images Long Cores.zip: Core images of the W&ouml;rthersee Kullenberg-type&nbsp;long cores acquired with an ITRAX core scanner</li> <li>Core images Short Cores.zip: Core images of the W&ouml;rthersee gravity short cores (hammer-coring or trigger cores of the Kullenberg system) acquired with an ITRAX core scanner; provided as .tif files</li> <li>CT data WOER18-L5-X-Dicom.zip: X-ray computed tomography data acquired with a Siemens SOMATOM Definition AS (voxel size 0.2 x 0.2 x 0.3 mm); provided in DICOM format</li> <li>MSCL data.zip: Data acquired with a Geotek Multi-sensor core logger (e.g. magnetic susceptibility and gamma density); provided as Excel spreadsheets</li> <li>XRF data.zip: X-ray fluorescence data acquired with a ITRAX core scanner; provided in .csv format</li> </ul>

opencc-by-4.0Nov 2022View details →
dryad36/100

Data for: The central Alps comprise a major dispersal barrier between western and eastern populations of two butterfly species

<p><strong>Aim:</strong> Environmental and species-specific factors shape spatial patterns in genetic diversity and population structure. Comparing different species within the same area helps to disentangle more general from species-specific factors affecting such geographic patterns. Here, we examined genetic diversity and population structuring through geographic features in two alpine butterfly species.</p> <p><strong>Location:</strong> European Alps.</p> <p><strong>Taxon:</strong> Copper butterflies (<em>Lycaena</em> spp.).</p> <p><strong>Methods:</strong> We sampled 21 <em>Lycaena hippothoe</em> and 14 <em>L. virgaureae</em> populations with 18 individuals per population. We analysed the genetic diversity and structure<a> </a>of these populations by using 14 and nine microsatellite markers for <em>L. hippothoe</em> and <em>L. virgaureae</em> , respectively.</p> <p><strong>Results:</strong> We found higher number of alleles, allelic richness, observed heterozygosity, F<sub>ST</sub> values  and more genetic clusters in <em>L. hippothoe</em> than in <em>L. virgaureae</em>. Both species displayed a major genetic barrier in the central Alps. Western and eastern <em>L. hippothoe</em> populations but central <em>L. virgaureae</em> populations showed the highest genetic diversity.</p> <p><strong>Main Conclusions:</strong> The population genetic structures of both Copper butterflies seemed to be strongly affected by population history and demography. Patterns indicate for both species a western and an eastern glacial refuge. The high genetic diversity and pronounced population structure found in <em>L. hippothoe</em> seems to be related to a low dispersal ability and closed populations with high local abundances as opposed to <em>L. virgaureae</em>. The higher dispersal of the latter likely caused hybridisation in the central alpine contact zone boosting genetic diversity, which was not the case in <em>L. hippothoe</em>. These findings suggest that different conservation strategies are needed for these closely related species.</p>

opencc-zeroDec 2022View details →
dryad36/100

Data for: The central Alps comprise a major dispersal barrier between western and eastern populations of two butterfly species

Open the record for dataset details and reuse information.

publicDec 2022View details →
dryad32/100

Data from: Climate-related adaptive genetic variation and population structure in natural stands of Norway spruce in the South-Eastern Alps

Forest trees dominate many Alpine landscapes that are currently exposed to changing climate. Norway spruce is one of the most important conifer species of the Italian Alps, and natural populations are found across steep environmental gradients with large differences in temperature and moisture availability. This study seeks to determine and quantify patterns of genetic diversity in natural populations toward understanding adaptive responses to changing climate. Across the Italian species range, 24 natural stands were sampled with a major focus on the Eastern Italian Alps. Sampled trees were genotyped for 384 selected single nucleotide polymorphisms (SNPs) from 285 genes. A wide array of potential candidate genes was tested for correlation with climatic parameters. To minimize false-positive association between genotype and climate, population structure was investigated. Pairwise F ST estimates between sampled populations ranged between 0.000 and 0.075, with the highest values involving the two disjoint populations, Valdieri, on the western Italian Alps, and Campolino, the most southern population on the Apennines. Despite considerable genetic admixture among populations, both Bayesian and multivariate approach identified four genetic clusters. Selection scans revealed five F ST outliers, and the environmental association analysis detected ten SNPs associated to one or more climatic variables. Overall, 13 potentially adaptive loci were identified, three of which have been reported in a previous study on the same species conducted on a broader geographical scale. In our study, precipitation, more than temperature, was often associated with genotype; therefore, it appears as the most important environmental variable associated with the high sensitivity of Norway spruce to soil water supply. These findings provide relevant information for understanding and quantifying climate change effects on this species and its ability to genetically adapt.

opencc-zeroDec 2015View details →
zenodo32/100

FIGURES 9–13. Siphonoperla montana. 9 in A new Siphonoperla species from the Eastern Alps (Plecoptera: Chloroperlidae), with comments on the genus

FIGURES 9–13. Siphonoperla montana. 9, male genitalia, ventral view; 10, male genitalia, lateral view; 11, male habitus; 12, egg, lateral view; 13, egg, detail of collar.

opennotspecifiedDec 2008View details →
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FIGURES 1–8. Siphonoperla ottomoogi. 1 in A new Siphonoperla species from the Eastern Alps (Plecoptera: Chloroperlidae), with comments on the genus

FIGURES 1–8. Siphonoperla ottomoogi. 1, male habitus; 2, male genitalia, ventral view; 3, male genitalia, lateral view; 4, female genitalia, ventral view; 5, egg, lateral view; 6, egg, detail of collar; 7, larva, habitus; 8, larva, head and pronotum.

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURE 90 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURE 90. Distribution map for Chthonius (C.) cavernarum Ellingsen, 1909 (▲), C. (C.) heterodactylus Tömösváry, 1882 (Δ), C. (C.) hungaricus Mahnert, 1981 (■), C. (C.) lessiniensis Schawaller, 1982 (□), C. (C.) pusillus Beier, 1947 (●), C. (C.) raridentatus Hadži, 1930 (○).

opennotspecifiedNov 2014View details →
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FIGURES 75–81 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURES 75–81. Chthonius (C.) raridentatus Hadži, 1930. 75–76, Anterior margin of carapace of ♂ (holotype) (75) and ♀ (paratype) (76). 77, Anterolateral portion of carapace ♂ (holotype). 78 –79, Right chelicera of ♂ (holotype) (78) and ♀ (paratype) (79). 80–81, Right chela, lateral view, of ♂ (holotype) (80) and ♀ (paratype) (81). Figures 75, 77–78, 80: male holotype of C. brandmayri, Slovenia, Mt. Slavnik; 76, 79, 81: female paratype of C. brandmayri, Slovenia, Mt. Slavnik.

opennotspecifiedNov 2014View details →
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FIGURES 67–74 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURES 67–74. Chthonius (C.) raridentatus Hadži, 1930, females from Slovenia, Most na Soči, near Jama pod Smoganico. 67–68, Anterior margin of carapace of ♀ (small specimen) (67) and ♀ (large specimen) (68). 69–70, Anterolateral portion of carapace of ♀ (small specimen) (69) and ♀ (large specimen) (70). 71–72, Right chelicera of ♀ (small specimen) (71) and ♀ (large specimen) (72). 73–74, Right chela, lateral view, of ♀ (small specimen) (73) and ♀ (large specimen) (74).

opennotspecifiedNov 2014View details →
zenodo32/100

FIGURES 42–49 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURES 42–49. Chthonius (C.) lessiniensis Schawaller, 1982. 42–43, Anterior margin of carapace of ♂ (42) and ♀ (43) (Italy, Grotta di Monte Capriolo). 44, Anterolateral portion of carapace of ♂ (Italy, Grotta di Monte Capriolo). 45–46, Right chelicera of ♂ (45) and ♀ (46) (Italy, Grotta di Monte Capriolo). 47, Fingers of right chelicera of ♂ (Italy, Grotta Bortolomiol). 48–49, Right chela, lateral view, of ♂ (movable finger with teratological dentition) (48) and ♀ (movable finger with normal dentition) (49) (Italy, Grotta di Monte Capriolo). Figures 42–46, 48–49: adults from Italy, Grotta di Monte Capriolo; 47: male from Italy, Grotta Bortolomiol.

opennotspecifiedNov 2014View details →
zenodo32/100

FIGURES 20–26 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURES 20–26. Chthonius (C.) heterodactylus Tömösváry, 1882. 20, Anterior margin of carapace of ♂ (Romania, Mehádia). 21, Lateral portion of carapace of ♂ (Romania, Mehádia). 22, Left chelicera of ♂ (Romania, Mehádia). 23–26, Right chela, lateral view, of ♂ (Romania, Mehádia) (23), ♂ (Romania, Casa de Piatra) (24), ♀ (Romania, Casa de Piatra) (25) and ♀ (Romania, Jara) (26). Figures 20–23: male syntype of C. diophthalmus, Romania, Mehádia; 24–25: adults from Romania, Casa de Piatra; 26: female holotype of C. leruthi, Romania, Jara.

opennotspecifiedNov 2014View details →
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FIGURES 12–19 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURES 12–19. Chthonius (C.) heterodactylus Tömösváry, 1882, adults from Slovakia, Mt. Vihorlat, no. 27.583. 12–13, Anterior margin of carapace of ♂ (12) and ♀ (13). 14, Anterolateral portion of carapace of ♂. 15–16, Right chelicera of ♂ (15) and ♀ (16). 17, Genital opening of ♂. 18–19, Right chela, lateral view, of ♂ (18) and ♀ (19).

opennotspecifiedNov 2014View details →
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FIGURES 82–89 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURES 82–89. Chthonius (C.) raridentatus Hadži, 1930. 82, Anterior margin of carapace of ♀ (Slovenia, Urhova jama). 83, Anterolateral portion of carapace of ♀ (Slovenia, Urhova jama). 84, Right chelicera of ♀ (Slovenia, Urhova jama). 85–89, Right chela, lateral view, of ♀ (Slovenia, Urhova jama) (85), ♂ (Slovenia, Ponikva) (86), ♀ (Slovenia, Ponikva) (87), ♂ (Slovenia, Kočevje) (88) and ♀ (Slovenia, Kočevje) (89). Figures 82–85: female from Slovenia, Urhova jama; 86–87: adults from Slovenia, Ponikva; 88–89: adults from Slovenia, Kočevje.

opennotspecifiedNov 2014View details →
zenodo32/100

FIGURES 1–11 in The species of the Chthonius heterodactylus group (Arachnida, Pseudoscorpiones, Chthoniidae) from the eastern Alps and the Carpathians

FIGURES 1–11. Chthonius (C.) cavernarum Ellingsen, 1909. 1–3, Anterior margin of carapace of ♂ (Slovenia) (1), ♀ (Slovenia) (2) and ♂ (Italy) (3). 4–5, Anterolateral portion of carapace of ♂ (Slovenia) (4) and ♂ (Italy) (5). 6–8, Right chelicera of ♂ (Slovenia) (6), ♀ (Slovenia) (7) and ♂ (Italy) (8). 9–11, Right chela, lateral view, of ♂ (Slovenia) (9), ♀ (Slovenia) (10) and ♂ (Italy) (11). Figures 1, 2, 4, 6–7, 9–10: adults from Slovenia, Sviščaki; 3, 5, 8, 11: male from Italy, Grotta di Monteprato.

opennotspecifiedNov 2014View details →

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