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765 results for “alps”
Subspecies and Distribution. N.a.anomalusCabrera,1907—IberianPeninsula. N.a.jostiV.Martino&E.Martino,1940—BalkanPeninsula. N.a.milleriMottaz,1907—Alps. N.a.mokrzeckiiE.Martino&V.Martino,1917—Crimea. N.a.rhenanusLehmann,1976—SGermany. N. a. soricoides Ognev, 1921 — E Poland, S Belarus, and W Russia. Also known from W, SC & E Europe, Turkey, and Iran, but subspecies involved not known. in Soricidae
Subspecies and Distribution. N.a.anomalusCabrera,1907—IberianPeninsula. N.a.jostiV.Martino&E.Martino,1940—BalkanPeninsula. N.a.milleriMottaz,1907—Alps. N.a.mokrzeckiiE.Martino&V.Martino,1917—Crimea. N.a.rhenanusLehmann,1976—SGermany. N. a. soricoides Ognev, 1921 — E Poland, S Belarus, and W Russia. Also known from W, SC & E Europe, Turkey, and Iran, but subspecies involved not known.
Subspecies and Distribution. S.m.minutusLinnaeus,1766—fromIrelandandtheBritishIsEthroughmostofEuropeandSiberiatoSWYakutia(=SakhaRepublic). S.m.beckiLehmann,1963—Alps. S.m.carpetanusRey,1971—IberianPeninsula. S.m.gymnurusChaworth-Musters,1932—SBalkanPeninsula. S.m.heptapotamicusStroganov,1956—ETianShan,KalbinskyAltai,andDzungarianAlatau. S. m. lucanius G. S. Miller, 1909 — Italian Peninsula. in Soricidae
Subspecies and Distribution. S.m.minutusLinnaeus,1766—fromIrelandandtheBritishIsEthroughmostofEuropeandSiberiatoSWYakutia(=SakhaRepublic). S.m.beckiLehmann,1963—Alps. S.m.carpetanusRey,1971—IberianPeninsula. S.m.gymnurusChaworth-Musters,1932—SBalkanPeninsula. S.m.heptapotamicusStroganov,1956—ETianShan,KalbinskyAltai,andDzungarianAlatau. S. m. lucanius G. S. Miller, 1909 — Italian Peninsula.
FIGURES 86-96 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 86-96. Mature larva of L. alzonai (86, 88, 90, 92, 94, 95), L. freyi (87, 91, 96) and L. pacei (89, 93). 86, seta of tibia; 87-90, abdominal setae; 91, head in frontal aspect; 92, 93, median tooth; 94-96, region of paramedian tooth. Abbreviations: At—antenna, Ch—channels, Gp—glandular pit, Lg—ligula, Lp—labial palp, Ma—mala, Md—mandible, Mp—maxillary palp, Mt—median tooth, Na—nasale; Pmt—paramedian tooth, Ps—peg seta.
FIGURES 82-85 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 82-85. Mature larva of L. alzonai (82, 84) and L. pacei (83, 85). 82, abdominal sternite I-III; 83, abdominal segments VII-X in ventral aspect; 84, abdominal segments IX and X and urogomphus in lateral aspect; 85, abdominal segment X and urogomphus in dorsal aspect. Abbreviations: A—anterior seta, D—discal setae of rows a and b, L—lateral seta, P—posterior seta, St—sternite, Te—tergite, Ug—urogomphus, I, II-…abdominal segments, sternites or segments of urogomphus.
FIGURES 64-74 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 64-74. Mature larva of L. alzonai (64-67), L. freyi (68-70) and L. pacei (71-74). 64, 68, 71, right fore leg in anterior aspect; 65, 67, 70, 72, 74, tarsungulus of fore (65, 72) and middle (67, 70, 74) pair of legs. Abbreviations: Cx—coxa, Fe—femur, Tb—tibia, Tr—trochanter, Ts—tarsungulus.
FIGURES 15-23 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 15-23. Mature larva of L. alzonai (15, 18, 21), L. freyi (16, 19, 22) and L. pacei (17, 20, 23). 15-17, half of head in ventral aspect; 18-20, apotome and tentorial region; 21-23, gular region. Abbreviations:Ap—apotome, C—epicranial campaniform sensilla; Tp—tentorial pit, Trb—trichobothrium, V—ventral seta, Ves—ventral ecdysial suture, Vl—ventrolateral seta.
FIGURES 10-14 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 10-14. Mature larva of L. alzonai (10, 13), L. freyi (11) and L. pacei (12, 14). 10-12, head in dorsal aspect; 13, microstructure of head near dorsal ecdysial suture; 14, region of stemmata. Abbreviations: At—antenna, C—epicranial campaniform sensilla, E—epicranial part, Es—dorsal ecdysial suture; Ed—epicranialodorsal seta, El—epicranialolateral seta, Em—epicranialomarginal seta, Gl—gland, Gp—glandular pit, Md—mandible, P—posterior part/posterior seta, Trb— trichobothrium.
FIGURES 55-63 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 55-63. Mature larva of L. alzonai (55, 58, 61), L. freyi (56, 59, 62) and L. pacei (57, 60, 63). 55-57, hypopharynx in dorsal aspect; 58-60, labium in ventral aspect; 61-63, left side of labial palp in ventral aspect. Abbreviations: Lg—ligula, Lp—labial palp, Pmnt—prementum.
FIGURES 36-46 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 36-46. Mature larva of L. alzonai (36, 37, 42-44), L. freyi (38, 39, 45) and L. pacei (40, 41, 45, 46, 46A, 46B). 36-41, epipharynx and microstructure (37, 39, 41); 42-46, right (42, 44-46) and left (43) mandible with distal portion (43, 44, 46B) and region of seta L1 (46A). Abbreviations: Acp—anterior cuticular processes, Bc—buccal cavity, Ch—channels, L1, L2—code of mandibular setae, Mt—median tooth, Pcp—posterior cuticular processes, Ph—pharynx, Pmt—paramedian tooth, Ps1—peg seta, Sm—sensillum.
FIGURES 1-9. Mature larva, habitus. 1, 4, 7 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 1-9. Mature larva, habitus. 1, 4, 7, Lathrobium alzonai; 2, 5, 8, L. L. freyi; 3, 6, 9, L. pacei.
FIGURES 24-35 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 24-35. Mature larva of L. alzonai (24, 25 30, 31), L. freyi (26, 27, 32, 33) and L. pacei (28, 29, 34, 35). 24-29, left antenna (24, 26, 28) and apical section (25, 27, 29) in dorsal aspect; 30-35, anterior margin of nasale (30, 32, 34) and region of median and paramedian teeth (31, 33, 35) in dorsal aspect; Abbreviations: Lt—lateral teeth, Pmt—paramedian tooth, Ps—peg seta, Mt—median tooth, I-IV—antennal and maxillary palp articles, Sa—sensory appendage, So—solenidia.
FIGURES 97-108 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 97-108. Mature larva of L. alzonai (97, 99, 102-105, 107, 108), L. freyi (106) and L. pacei (98, 100, 101). 97, 98, base of mandible with microstructure; 99, 100, mandible in dorsal (99) and ventral (100) aspect; 101, micro seta (L1) of mandible; 102, mala; 103, apical section of mala; 104, apical section of stipes in dorsal aspect; 105, apical section of maxillary palp; 106, ligula in dorsal aspect; 107, microstructure of anterior region of mesonotum; 108, abdominal spiracle of pair VI. Abbreviations: Lg—ligula, Ma—mala, Mi—microtrichia, Mp—maxillary palp, Sp—spiracle, St—stipes, L1, L2—setae of mandible.
FIGURES 75-81 in Comparative larval ultramorphology of three endemic Lathrobium (Glyptomerus) species (Coleoptera, Staphylinidae, Paederinae) from the Eastern Alps in Italy
FIGURES 75-81. Mature larva of L. pacei (75, 78, 79-81), L. freyi (76) and L. alzonai (77, 77A). 75, pronotum; 76-78, prothorax and microstructure of lateral region (77A); 79, thoracic tergite III and abdominal tergite I; 80, abdominal tergite II; 81, abdominal segments IX and X in dorsal view. Abbreviations: A—anterior seta, Ap—posterior pore, D—discal setae of rows a and b, L—lateral seta, P—posterior seta, Pr—presternum, Te—tergite, Tg—tergal gland, Sp—spiracle, Stp—sternum, Ug—urogomphus.
Dataset: Quantification of post-glacier bedrock surface erosion in the European Alps using 10Be and optically stimulated luminescence exposure dating
<p>This contains the dataset associated with the publication titled "Quantification of post-glacier bedrock surface erosion in the European Alps using 10Be and optically stimulated luminescence exposure dating" published in Earth Surface Dynamics (2022).</p>
Mapping forest in the Swiss Alps treeline ecotone with explainable deep learning: label data
<p>Label data used in the paper "Nguyen T.-A., Kellenberger B., Tuia D. (2022), <em>Mapping forest in the Swiss Alps treeline ecotone with explainable deep learning</em>" (<a href="https://doi.org/10.1016/j.rse.2022.113217">https://doi.org/10.1016/j.rse.2022.113217</a>).</p> <p>Code available at <a href="https://github.com/thienanhng/ExplainableForestMapping">github.com/thienanhng/ExplainableForestMapping</a>.</p>
Figure 3 in Shedding light on species boundaries in small endogeic animals through an integrative approach: species delimitation in the centipede Clinopodes carinthiacus (Chilopoda: Geophilidae) in the south-eastern Alps
Figure 3. Subdivision of specimens into candidate species according to a model-based cluster analysis through normal mixture models on ten morphological characters (Table 2). The ventral view of the forcipular segment is illustrated for representative specimens of the candidate species. Denticles are indicated by arrowheads. The lower panel shows Bayesian information criterion (BIC) values of different models (coded as in the paper by Scrucca et al., 2016) in relation to the hypothetical number of candidate species.
Figure 2 in Shedding light on species boundaries in small endogeic animals through an integrative approach: species delimitation in the centipede Clinopodes carinthiacus (Chilopoda: Geophilidae) in the south-eastern Alps
Figure 2. Subdivision of 16S, COI and 28S haplotypes into candidate species according to different species delimitation methods. The ultrametric trees used for the general mixed Yule coalescent (GMYC) analyses are illustrated for the haplotypes of 16S and COI (all nodes: bootstrap supports ≥ 81% for 16S and ≥ 71% for COI). The median-joining network is illustrated for the 28S haplotypes (see also Supporting Information, Fig. S2). Mountain ranges where the haplotypes were found are also indicated.
Figure 6 in Shedding light on species boundaries in small endogeic animals through an integrative approach: species delimitation in the centipede Clinopodes carinthiacus (Chilopoda: Geophilidae) in the south-eastern Alps
Figure 6. Geometric morphometric analysis of between-population variation of the shape of the forcipular coxosternite in Clinopodes carinthiacus s.s.. The left panel shows landmarks (circles) and semilandmarks (diamonds) on a representative specimen (PD-G 7787, from population GUI). The right panel shows the distribution of 40 specimens from eight populations (codes as in Table 1) on the first and second principal components (bgPC 1 and bgPC 2) obtained from a between-group principal components analysis of the symmetric component of the shape. Polygons indicate populations. The wireframes along the components represent the variation in shape (dark blue) in comparison to the average shape (light blue).
Figure 1 in Shedding light on species boundaries in small endogeic animals through an integrative approach: species delimitation in the centipede Clinopodes carinthiacus (Chilopoda: Geophilidae) in the south-eastern Alps
Figure 1. Study area (white contour), sampling sites for the integrative species delimitation analysis (labelled symbols; codes as in Table 1) and all other sites of occurrence based on confidently identified specimens and validated published records (symbols without labels). Sites of occurrence of the two resulting species are distinguished (see key), and the single site of syntopy is indicated (white arrow).
Figure 4 in Shedding light on species boundaries in small endogeic animals through an integrative approach: species delimitation in the centipede Clinopodes carinthiacus (Chilopoda: Geophilidae) in the south-eastern Alps
Figure 4. Number of pairs of legs in specimens confidently identified as belonging to Clinopodes carinthiacus s.s. and Clinopodes strasseri in the study area. Differences between species are statistically significant for both males and females (Mann–Whitney U-test: P <0.0001 for both sexes; Supporting Information, Table S8).
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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.