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1,723 results for “Alpine”

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FIGURE 5. A in Rediscover of the Iranian endemic alpine Arenaria bulica after 139 years and note of the related species (Caryophyllaceae)

FIGURE 5. A: Bol peak & habitat of Arenaria bulica; B, C, D, E: Arenaria bulica on rocks and boulders in natural habitat; B, C: Pahlevani 78477 (IRAN78477); D, E: Pahlevani & Ghamghami 78123 (IRAN78123). Photos by A. Pahlevani.

opennotspecifiedApr 2024View details →
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FIGURE 7 in Rediscover of the Iranian endemic alpine Arenaria bulica after 139 years and note of the related species (Caryophyllaceae)

FIGURE 7. Distribution map of Arenaria bulica in Zagros Mts. of Iran. (Generated by GeoCat tool at http://geocat.kew.org)

opennotspecifiedApr 2024View details →
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FIGURE 6 in Tardigrades in the alpine region of Northeast China with an integrative description of Crenubiotus liangshuiensis sp. nov.

FIGURE 6. Crenubiotus liangshuiensis sp. nov. egg under PCM. A–Eggshell overview; B, C– Processes; D–Egg process with a single tip in section. A black arrow indicates bubble; a white arrow indicates the bifurcating tip. Scale bars: 20 µm (A), 10 µm (B, C), 5µm (D).

opennotspecifiedAug 2024View details →
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FIGURE 5 in Tardigrades in the alpine region of Northeast China with an integrative description of Crenubiotus liangshuiensis sp. nov.

FIGURE 5. Crenubiotus liangshuiensis sp. nov. buccal apparatus under PCM: A–Buccal apparatus (holotype); B–Ventral view of the buccal tube (paratype, NMS0016). The arrow indicates one of the two median teeth formed by the dorsal lateral crests. Scale bar: 20 μm.

opennotspecifiedAug 2024View details →
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FIGURE 4 in Tardigrades in the alpine region of Northeast China with an integrative description of Crenubiotus liangshuiensis sp. nov.

FIGURE 4. Crenubiotus liangshuiensis sp. nov. leg granulation and claws under PCM and SEM: A, B, C–legs I, II and IV (holotype, PCM); D, E–legs I, II (paratype, SEM). A empty arrow indicates bulges on leg I, a filled arrow indicates the thicker middle of the claws I, a filled arrowhead indicates the granulation on leg II. Scale bars: 5 μm (A, B, C), 2 μm (D, E).

opennotspecifiedAug 2024View details →
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FIGURE 2 in Tardigrades in the alpine region of Northeast China with an integrative description of Crenubiotus liangshuiensis sp. nov.

FIGURE 2. Crenubiotus liangshuiensis sp. nov. habitus and cuticle pores under PCM: A–dorsoventral projection, holotype (NMS0011); B–the dorsal cuticle between legs II and III, the dotted ellipse indicate larger irregular holes distributed in band; C– the paratype (NMS0012) whole body, the black box correspond to the enlarged images in B. Scale bars: 50 μm (A), 10 μm (B).

opennotspecifiedAug 2024View details →
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Figure 1 in Comparative success of two sampling techniques for high-altitude Alpine grassland reptiles under different temporal designs

Figure 1. Schematic representation of the plots' setup in Paneveggio-Pale di San Martino Nature Park.

opennotspecifiedSep 2023View details →
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Figure 4 in An extended mtDNA phylogeography for the alpine newt illuminates the provenance of introduced populations

Figure 4. Nucleotide diversity (π) across the natural distribution range of the alpine newt (Ichthyosaura alpestris) for the main mtDNA clades and at country-level, based on 651 bp of the mtDNA gene ND4. N/a means π could not be established because only a single individual was available. Background colour reflects the rough natural distribution of the mtDNA clades. Further details can be found in supplementary table S3.

opennotspecifiedJul 2023View details →
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Figure 3 in An extended mtDNA phylogeography for the alpine newt illuminates the provenance of introduced populations

Figure 3. Haplotype network for the alpine newt (Ichthyosaura alpestris) based on 651 bp of the mtDNA gene ND4. Pie

opennotspecifiedJul 2023View details →
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Figure 1 in An extended mtDNA phylogeography for the alpine newt illuminates the provenance of introduced populations

Figure 1. Distribution map for the alpine newt (Ichthyosaura alpestris). Background colour reflects the rough natural distribution of the mtDNA clades and symbols reflect sampled localities. The inset shows the Netherlands in more detail (lighter shading reflects uncertainty about the status of populations in the northeast of the country). Numbers refer to localities/regions mentioned in the text: 1 = Oudeland, 2 = Veluwe and 3 = Holterberg. Sampling information in supplementary table S1.

opennotspecifiedJul 2023View details →
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Figure 2 in An extended mtDNA phylogeography for the alpine newt illuminates the provenance of introduced populations

Figure 2. Majority rule consensus Bayesian phylogeny for the alpine newt (Ichthyosaura alpestris) based on 651 bp of the mtDNA gene ND4. The outgroup is not shown. Spanish haplotypes are highlighted with an asterisk. Haplotype details can Downloaded from Brill.com 08/07/2024 04:58:17PM be found in supplementary table S1 and a moreviadetailed Open Access version. of Thisthisis an phylogenyopen is access availablearticlein supplementary distributed fig. underS1. the terms

opennotspecifiedJul 2023View details →
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FIGURE 3 in A new species of Bupleurum (Umbelliferae) from Badakhshan, with notes on and a key to the alpine species of High Asia

FIGURE 3. Transverse sections through the mericarps of Bupleurum pamiricum (a) and B. gracillimum (b). Vouchers: A = Pimenov et al. 1812 (MW); B = Pimenov & Kljuykov 139 (MW). 1': exocarp, 2': mesocarp, 3': vascular bundles, 4': secretory ducts (vittae), 5': rib secretory duct, 6': endosperm. Scale bar = 1 mm.

opennotspecifiedSep 2015View details →
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FIGURE 2 in A new species of Bupleurum (Umbelliferae) from Badakhshan, with notes on and a key to the alpine species of High Asia

FIGURE 2. Fruit of Bupleurum pamiricum, in lateral (A) and dorsal view (B), as well as B. gracillimum in dorsal view (C): Vouchers: A & B = Pimenov et al. 1812 (MW); C = Pimenov & Kljuykov 139 (MW). Scale bar = 1 mm.

opennotspecifiedSep 2015View details →
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FIGURE 1. Neottia nujaingensis X.H. Jin. A. Habit. B in A new species of Neottia (Orchidaceae, Epidendroideae) from alpine border region between China and Myanmar

FIGURE 1. Neottia nujaingensis X.H. Jin. A. Habit. B. Overview of flower. C. Lateral view of flowers. D and E. Dorsal sepal. F. Lateral sepal. G. Petal. H. Ovary and column. I. Front view of column. J. Pollinia.

opennotspecifiedDec 2016View details →
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FIGURES 29–34. Cymbella pamirensis SEM. 29 in Cymbella pamirensis sp. nov. (Bacillariophyceae) from an alpine lake in the Pamir Mountains, Northwestern China

FIGURES 29–34. Cymbella pamirensis SEM. 29. Valve in external view. 30. Close-up on apex in external view. 31. Close-up on proximal raphe endings in external view. 32. Valve in internal view. 33. Close-up on central area in internal view, note the three stigmata visible as elongated furrows connected to the striae (arrows) and the discontinuous stria interposed at mid-valve. 34. Close-up on apex in internal view showing the distal raphe fissure ending in helictoglossae and the apical pore field. Scale bars: 10 μm in Figs 29 and 32; 3 μm in Figs 30, 31 and 33; 2 μm in Fig. 34.

opennotspecifiedJun 2017View details →
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FIGURE 1 in Cymbella pamirensis sp. nov. (Bacillariophyceae) from an alpine lake in the Pamir Mountains, Northwestern China

FIGURE 1. Locations of Lake Sate Baile Dikuli in the Pamir Mountains in western China and of the coring site.

opennotspecifiedJun 2017View details →
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FIGURES 2–28 in Cymbella pamirensis sp. nov. (Bacillariophyceae) from an alpine lake in the Pamir Mountains, Northwestern China

FIGURES 2–28. Cymbella pamirensis. Light micrographs showing variation in size and valve outline. Scale bar: 10 μm. In Fig. 6, l represents chord length and h represents sagitta length.

opennotspecifiedJun 2017View details →
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FIGURE 35 in Cymbella pamirensis sp. nov. (Bacillariophyceae) from an alpine lake in the Pamir Mountains, Northwestern China

FIGURE 35. Histograms showing the distributions of morphometric characters of Cymbella pamirensis are shown in the main diagonal of the matrix (n=40). Biplots and the correlation coefficients for each pair of characters are shown below and above the main diagonal, respectively. Measurements are in μm for valve length and width. Stria density is in number of striae per 10 μm. Valve curvature is calculated using the formula k=2h / (l2+h2), see text for details.

opennotspecifiedJun 2017View details →
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FIGURE 2 in Nepeta azadkouhensis (Lamiaceae), a new alpine-subnival species from the Central Alborz of Iran

FIGURE 2. Topographic map of Iran, indicating the known localities of Nepeta azadkouhensis (star), N. natanzensis (triangle), N. monocephala (circle).

opennotspecifiedMar 2019View details →
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FIGURE 1 in Nepeta azadkouhensis (Lamiaceae), a new alpine-subnival species from the Central Alborz of Iran

FIGURE 1. Nepeta azadkouhensis Saberamoli (Saberamoli 11189, HNGB!). A. habit. B. flowers of the verticillaster. C. outer calyx surface. D. inner calyx surface. E. calyx teeth. F. corolla. G. bracts. H. immature nutlet. Scale C-E = 1 mm, F = 3 mm, G = 1 mm, H = 0.1 mm.

opennotspecifiedMar 2019View details →

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OpenNeuro

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