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1,723 results for “Alpine”
FIGURES 32–35 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 32–35. Male genitalia of Sattleria (details of valva-vinculum complex). 32, S. graiaeella sp. nov., paratype, slide GEL 1135; 33, ditto, paratype, slide GEL 1136; 34, S. basistrigella Huemer, slide GEL 1139; 35, S. triglavica Povolný, paratype, slide Mus. Vind. 11202.
FIGURES 17–20 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 17–20. Male genitalia of Sattleria. 17, S. graiaeella sp. nov., paratype, slide GEL 1135; 18, S. dzieduszyckii (Nowicki), slide Mus. Vind. 11242; 19, S. triglavica Povolný, paratype, slide Mus. Vind. 11241; 20, S. basistrigella Huemer, slide GEL 1139.
FIGURES 1–8 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 1–8. Adults of Sattleria. 1–2, S. melalecuella (Constant), 1, 3, 2, Ƥ; 3, S. karsholti sp. nov., 3, holotype; 4, S. cottiella sp. nov., 3, holotype; 5, S. izoardi Huemer & Sattler, 3; 6, S. graiaeella sp. nov., 3, holotype; 7, S. basistrigella Huemer, 3; 8, S. triglavica Povolný, 3.
FIGURES 13–16 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 13–16. Male genitalia of Sattleria. 13, S. pyrenaica (Petry), slide GEL 279; 14, S. cottiella sp. nov., paratype, slide GEL 1144; 15, S. izoardi Huemer, holotype, slide GEL 1145; 16, S. marguareisi Huemer & Sattler, paratype, slide GEL 150.
FIGURES 9–12 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 9–12. Male genitalia of Sattleria. 9, S. melaleucella (Constant), slide LMP 76; 10, ditto, slide LMP 102; 11, S. arcuata Pitkin & Sattler, paratype, slide GEL 159; 12, S. karsholti sp. nov., paratype, slide LMP 71.
FIGURES 28–31 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 28–31. Male genitalia of Sattleria (details of valva-vinculum complex). 28, S. cottiella sp. nov., paratype, slide GEL 1144; 29, ditto, paratype, slide GEL 1146; 30, S. izoardi Huemer & Sattler, holotype, slide GEL 1145; 31, ditto, slide GEL 1049.
FIGURES 24–27 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 24–27. Male genitalia of Sattleria (details of valva-vinculum complex). 24, S. karsholti sp. nov., paratype, slide LMP 74; 25, ditto, paratype, slide LMP 71; 26, S. melalecuella (Constant), slide LMP 76; 27, ditto, slide LMP 102.
FIGURES 21–23 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURES 21–23. Male genitalia of Sattleria. 21, S. breviramus Pitkin & Sattler, slide GEL 154; 22, S. stryriaca Pitkin & Sattler, paratype, slide 91/230 P.H.; 23, S. angustispina Pitkin & Sattler, paratype, slide CG 84.
FIGURE 36 in Cryptic diversity and phylogeography of high alpine Sattleria — a case study combining DNA barcodes and morphology (Lepidoptera: Gelechiidae)
FIGURE 36. Neighbour joining tree of the Sattleria (Kimura 2 Parameter) based on sequences of the mtDNA COI gene (barcode fragment 5', 658 bp), except for S. arcuata (307 bp) and S. dzieduszyckii (623 bp).
FIGURES 21–24 in Three new species of oribatid mites of the family Punctoribatidae (Acari, Oribatida) from alpine bogs of New Zealand
FIGURES 21–24. Safrobates gerdi sp. nov., adult: 21—dorsal view; 22—ventral view (legs not shown); 23—subcapitulum, ventral view; 24—part of lateral podosomal and epimeral regions. Scale bar 100 Μm (21, 22), scale bar 50 Μm (23, 24).
FIGURES 1–4 in Three new species of oribatid mites of the family Punctoribatidae (Acari, Oribatida) from alpine bogs of New Zealand
FIGURES 1–4. Macrogena hexasetosa sp. nov., adult: 1—dorsal view; 2—ventral view (legs not shown); 3—subcapitulum, ventral view; 4—ovipositor. Scale bar 100 Μm (1, 2), scale bar 20 Μm (3, 4).
FIGURES 15–20 in Three new species of oribatid mites of the family Punctoribatidae (Acari, Oribatida) from alpine bogs of New Zealand
FIGURES 15–20. Porallozetes badamdorji sp. nov., adult: 15—lateral view of anterior part of body (legs not shown); 16— posterior view (pteromorphs not shown); 17—leg I, without trochanter, right, antiaxial view; 18—medio-anterior part of femur and genu of leg II, right, antiaxial view; 19—femur and genu of leg III, left, antiaxial view; 20—trochanter, femur and genu of leg IV, left, antiaxial view. Scale bar 100 Μm (15, 16), scale bar 50 Μm (17–20).
FIGURES 25–30 in Three new species of oribatid mites of the family Punctoribatidae (Acari, Oribatida) from alpine bogs of New Zealand
FIGURES 25–30. Safrobates gerdi sp. nov., adult: 25—lateral view of anterior part of body (legs not shown); 26—posterior view (pteromorphs not shown); 27—leg I, without trochanter, right, antiaxial view; 28—leg II, right, antiaxial view; 29— trochanter, femur and genu of leg III, left, antiaxial view; 30—leg IV, without tarsus, left, antiaxial view. Scale bar 100 Μm (25, 26), scale bar 50 Μm (27–30).
FIGURES 11–14 in Three new species of oribatid mites of the family Punctoribatidae (Acari, Oribatida) from alpine bogs of New Zealand
FIGURES 11–14. Porallozetes badamdorji sp. nov., adult: 11—dorsal view; 12—ventral view (legs not shown); 13— subcapitulum, ventral view; 14—ovipositor. Scale bar 100 Μm (11, 12), scale bar 50 Μm (13, 14).
FIGURES 5–10 in Three new species of oribatid mites of the family Punctoribatidae (Acari, Oribatida) from alpine bogs of New Zealand
FIGURES 5–10. Macrogena hexasetosa sp. nov., adult: 5—lateral view of anterior part of body (legs not shown); 6—posterior view (pteromorphs not shown); 7—leg I, without trochanter, right, antiaxial view; 8—femur and genu of leg II, right, antiaxial view; 9—trochanter, femur and genu of leg III, left, antiaxial view; 10—leg IV, left, antiaxial view. Scale bar 100 Μm (5, 6), scale bar 20 Μm (7–10).
Supporting data for: "Heritage of Tethyan oceanic transform faults within Alpine orogens: Paleomagnetic evidence from the Shkoder-Peja transverse zone (Northern Albania)"
<p>Paleomagnetic data from the Shkoder-Peja transverse zone, collected in the Krasta-Cukali and Albanian Alps tectonic units (Northern Albania).</p> <p>To open and navigate with Remasoft software (https://www.agico.com/text/software/remasoft/remasoft.php).</p>
Fig. 5 in Across mountains and ocean: species delimitation and historical connectivity in Holarctic and Arctic-Alpine wolf spiders (Lycosidae, Pardosa)
Fig. 5. Introgression in P. saltuaria species group, n = 84, m = 43 datasets. P.hyper.FIN—Finnish P. hyperborea, P.hyper.GR—Greenland P. hyperborea; (a, c, e) de novo assembly; (b, d, f) reference assembly. (a, b) Fbranch D-statistics summary: dotted lines indicate internal node branches, fb—f-branch estimates of admixture; (c, d) fastsimcoal2 scenarios with the highest support: Ne effective population size of corresponding species/population (see fastsimcoal2 section in Supplementary Material for details about codes in brackets); tm—time of population/species merge (split) in generations; tadm—time of admixture in generations; adm—admixture fraction; (e, f) PhyloNetworks: colored lines and numbers indicate direction and proportion of admixture.
Fig. 2 in Across mountains and ocean: species delimitation and historical connectivity in Holarctic and Arctic-Alpine wolf spiders (Lycosidae, Pardosa)
Fig. 2. Maximum likelihood trees: (a) COI, 426 specimens; (b) ddRADseq, 91 specimens, 43,873 SNPs, de novo assembly; (c) ddRADseq, 84 specimens, 113,479 SNPs, de novo assembly; (d) ddRADseq, 84 specimens, 109,247 SNPs. CA—Canada, FI—Finland, FR—France, GL—Greenland, NO—Norway, SL—Slovakia, US—United States of America, n—number of specimens, m—minimum taxon coverage in ipyrad assembly.
Fig. 1 in Across mountains and ocean: species delimitation and historical connectivity in Holarctic and Arctic-Alpine wolf spiders (Lycosidae, Pardosa)
Fig. 1. Distribution map of P. hyperborea based on current literature review. Filled squares—approximate locations of P. hyperborea records in Palearctic; empty square—dubious record of P. hyperborea in Siberia; filled circles—approximate locations of P. hyperborea records in Nearctic.The references on which the map is based are in Supplementary Material.
Fig. 3. Haplotype network for 419 in Across mountains and ocean: species delimitation and historical connectivity in Holarctic and Arctic-Alpine wolf spiders (Lycosidae, Pardosa)
Fig. 3. Haplotype network for 419 specimens of P. saltuaria species group based on mitochondrial COI data. Haplotypes are colored based on morphological identification. Each line is 1 mutation step.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.