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1,029 results for “altitude”
Figure 2 from: Chao J-L, Lee K-S, Chang H-S (2018) Lithobius (Monotarsobius) meifengi sp. n., a new species of centipede from high altitude forest in central Taiwan (Chilopoda, Lithobiomorpha,Lithobiidae). In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 181-192. https://doi.org/10.3897/zookeys.741.21036
Figure 2 Lithobius (Monotarsobius) meifengensis sp. n. ♂ (NMNS7843-007), A habitus, dorsal view B cephalic plate C small pores of flexo-canal epidermal glands (gp) and large pores of recto-canal epidermal glands (gp*) on the cephalic plate.
Figure 7 from: Chao J-L, Lee K-S, Chang H-S (2018) Lithobius (Monotarsobius) meifengi sp. n., a new species of centipede from high altitude forest in central Taiwan (Chilopoda, Lithobiomorpha,Lithobiidae). In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 181-192. https://doi.org/10.3897/zookeys.741.21036
Figure 7 Lithobius (Monotarsobius) meifengensis sp. n. A (♀ NMNS7843-005): 15th leg and female gonopod; B, C (♀ NMNS7843-009): B female genital sternite C terminal claw of female gonopod.
Figure 6 from: Chao J-L, Lee K-S, Chang H-S (2018) Lithobius (Monotarsobius) meifengi sp. n., a new species of centipede from high altitude forest in central Taiwan (Chilopoda, Lithobiomorpha,Lithobiidae). In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 181-192. https://doi.org/10.3897/zookeys.741.21036
Figure 6 Lithobius (Monotarsobius) meifengensis sp. n. A–C ♂ NMNS7634-070): A the femur and tibia of male 15th leg, ventral view B a large domed swelling on the ventral surface of male 15th femur C apical region of the swelling on the male 15th femur D ♂ NMNS7843-008, male genital sternite and 15th sternite.
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 1 in Discovery of a new species of Inocelliidae (Insecta: Raphidioptera) in an altitude of nearly 3500 m in China
FIGURES 1. Habitus image of Inocellia occidentalis sp. nov., holotype male. Scale bar = 1.0 mm.
Figs. 3 A-H in Liquens foliícolas (Ascomycota) em Brejos de Altitude: novos registros para o Nordeste e para o Brasil
Figs. 3 A-H.Novos registros de liquens foliícolas para o Nordeste e para o Brasil. A. Arthotheliopsis hymenocarpoides; B. Aspidothelium scutellicarpum; C. Fellhanera lisowskii; D. Gyalectidium laciniatum; E. Phyllobathelium firmum; F. Psorotheciopsis philippinensis; G. Tricharia paraguayensis; H. Trichothelium africanum. Barras = 1 mm.
Fig. 6 in Elaphostrongylus and Dictyocaulus infections in Norwegian wild reindeer and red deer populations in relation to summer pasture altitude and climate
Fig. 6. Calculated range and mean (horizontal bar) of temperature for June–August 1959–2018, at the average altitude of the main summer pasture areas for eight wild reindeer and red deer populations sampled for parasitological studies 2012–2014. The results are presented separately for the two 30-year periods 1959–1988 (brown symbols) and 1989–2018 (red symbols). Reindeer populations (No): 14 Nordfjella, 2 Snøhetta, 19 Setesdal Ryfylke, 1 Forollhogna, 6 Rondane, 20 Setesdal Austhei. Red deer populations (No): 24 Ørsta, 25 Kvinnherad. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 7 in Elaphostrongylus and Dictyocaulus infections in Norwegian wild reindeer and red deer populations in relation to summer pasture altitude and climate
Fig. 7. Annual number of summer months (June–August) 1989–2018 with a calculated mean temperature ≥12 ̊C in the main summer grazing area of six wild reindeer populations and two red deer municipalities in South Norway sampled for parasitology 2012–2014. The sampling year of each population is indicated by a red dot. Reindeer populations (No): 14 Nordfjella, 2 Snøhetta, 19 Setesdal Ryfylke, 1 Forollhogna, 6 Rondane, 20 Setesdal Austhei. Red deer populations (No): 24 Ørsta, 25 Kvinnherad. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Figure 5 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 5. Some of the species sampled in the present study:a. Rhionaeschna bonariensis. b. Coryphaeschna adnexa. c. Elasmothemis constricta. d. Erythemis attala. e. Erythemis plebeja. f. Erythrodiplax media. g. Hetaerina hebe. h. Cyanallagma nigrinuchale. i. Forcepsioneura sancta. Scale bar: 10 mm. / Algunas de las especies muestreadas en el presente estudio: a. Rhionaeschna bonariensis. b. Coryphaeschna adnexa. c. Elasmothemis constricta. d. Erythemis attala. e. Erythemis plebeja. f. Erythrodiplax media. g. Hetaerina hebe. h. Cyanallagma nigrinuchale. i. Forcepsioneura sancta. Barra de escala: 10 mm.
Figure 2 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 2. Study area at the Poços de Caldas Plateau in the state of Minas Gerais, Brazil, and its respective location within Brazil (grey) and Minas Gerais state (white). / Área de estudio en la meseta de Poços de Caldas en el estado de Minas Gerais, Brasil, y su respectiva ubicación dentro de Brasil (en gris) y en el estado de Minas Gerais (en blanco).
Figure 1 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 1. Drone photographs from the highland field region "Morro do Ferro (MF)". a. Image of the stricto sensu altitude field. b. Drainages ravines formed on the side of the hills by natural erosive processes, where there are temporary and permanent puddles. c. Riparian forest associated with springs that arise in the lower altimetric levels of the relief and "capão de mata" (island of vegetation) associated with the temporary and/or permanent ponds. / FotografÍas aéreas tomadas con un dron desde la región de campos de altitud "Morro do Ferro (MF)". a. Imagen del campo de gran altitud stricto sensu; b. Barrancos y drenajes formados en el costado de las colinas por procesos erosivos naturales, donde se encuentran charcos temporales y permanentes. c. Bosque ripario asociado a manantiales que surgen en los niveles altimétricos más bajos del relieve y "capão de mata" (isla de vegetación) asociado a charcos temporales y/o permanentes.
Fig. 5 in New Genus and Species of High-Altitude Flightless Diestotini from the West Indies (Coleoptera: Staphylinidae: Aleocharinae)
Fig. 5. Aleomallus yaque, new genus and species, left elytron, dorsal aspect. Scale bar = 0.1 mm.
Fig. 6 in New Genus and Species of High-Altitude Flightless Diestotini from the West Indies (Coleoptera: Staphylinidae: Aleocharinae)
Fig. 6. Map showing known distribution of Aleomallus yaque, new genus and species on Hispaniola.
Linked collectors and determiners for: Distributional data on high altitude endemic taxa of vascular plants from western Balkans.
Natural history specimen data linked to collectors and determiners held within, "Distributional data on high altitude endemic taxa of vascular plants from western Balkans". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/6b5003f4-5ede-4dae-becb-c3c9094cd57d">https://bionomia.net/dataset/6b5003f4-5ede-4dae-becb-c3c9094cd57d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/6b5003f4-5ede-4dae-becb-c3c9094cd57d">https://gbif.org/dataset/6b5003f4-5ede-4dae-becb-c3c9094cd57d</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Distributional data on high altitude endemic taxa of beetles (Coleoptera) from neighbouring border areas of western Balkans.
Natural history specimen data linked to collectors and determiners held within, "Distributional data on high altitude endemic taxa of beetles (Coleoptera) from neighbouring border areas of western Balkans". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/77678b97-f9c0-4037-8920-bd99a728c385">https://bionomia.net/dataset/77678b97-f9c0-4037-8920-bd99a728c385</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/77678b97-f9c0-4037-8920-bd99a728c385">https://gbif.org/dataset/77678b97-f9c0-4037-8920-bd99a728c385</a>. Formatted as a Frictionless Data package.
[Dataset and Software] Altitude-dependent plasma parameter variations of synthetic EISCAT UHF and VHF incoherent scatter spectra calculated from TIE-GCM results
Open the record for dataset details and reuse information.
Table 2 in Ex-situ cultivation at lower altitude and evaluation of Swertia chirayita, a critically endangered medicinal plant of Sikkim Himalayan region, India
<p><b>Table 2</b> Analysis of <i>Swertia chirayita</i> mature plant cultivated at an altitude of niche environment (niche environment cultivated) and one-year-old <i>ex-situ</i> cultivated plant at the lower altitude (<i><i>ex-situ</i> cultivated) as per Ayurvedic Pharmacopoeia of India (API) norms.</i></p><table><tbody><tr><th>S. no.</th><th>Parameters</th><th>API specifications</th><th>Stem of niche environment cultivated</th><th>Leaves</th><th></th></tr></tbody><tbody><tr><th></th><td></td><td></td><td></td><td>Niche environment cultivated</td><td><i>Ex-situ</i> cultivated</td></tr><tr><th>1</th><td>Macroscopic description</td><td>The drug consists of whole plant, glabrous, yellowish-brown stem with easily separable yellow pith, leaf, ovate or lanceolate, entire, acuminate, glabrous.</td><td>Stem up to 1 m long and 6 mm in diameter, glabrous, yellowish-brown to purplish, slightly quadrangular above and cylindrical below, large, continuous, easily separable yellow pith.</td><td>Leaf, opposite, cauline, broad at base, ovate or lanceolate, entire, acuminate, glabrous.</td></tr><tr><th>2</th><td>Foreign matter (%w/w)</td><td>Not>2.0</td><td>Nil</td><td>Nil</td><td>Nil</td></tr><tr><th>3</th><td>Total ash (% w/w)</td><td>Not>6.0</td><td>2.86 ± 0.34</td><td>5.37 ± 0.14</td><td>5.55 ± 0.07</td></tr><tr><th>4</th><td>Acid insoluble ash (%w/w)</td><td>Not>1.0</td><td>0.39 ± 0.13</td><td>0.78 ± 0.03</td><td>0.68 ± 0.05</td></tr><tr><th>5</th><td>Alcohol (60% v/v) soluble extractive (%w/w)</td><td>Not <10.0</td><td>6.27 ± 0.62</td><td>15.28 ± 3.29</td><td>16.84 ± 0.08</td></tr><tr><th>6</th><td>Water soluble extractive (% w/w)</td><td>Not <10.0</td><td>7.82 ± 1.34</td><td>15.96 ± 1.45</td><td>22.44 ± 0.40</td></tr><tr><th>7</th><td>Total bitter content (%w/w)</td><td>Not <1.30</td><td>2.15 ± 0.42</td><td>3.95 ± 0.17</td><td>4.57 ± 0.00</td></tr><tr><th>8</th><td>Swertiamarin content (% w/w)</td><td>–</td><td>0.002 ± 0.00</td><td>0.22 ± 0.02</td><td>0.27 ± 0.007</td></tr></tbody></table>
Table 1 in Ex-situ cultivation at lower altitude and evaluation of Swertia chirayita, a critically endangered medicinal plant of Sikkim Himalayan region, India
<p><b>Table 1</b> Dry biomass of <i>Swertia chirayita</i> mature plant from niche environment and one-year-old <i>ex-situ</i> cultivated plant at the lower altitude.</p><table><tbody><tr><th>S. no.</th><th>Growth stages</th><th>Yield (g per sq. m)</th><th></th></tr></tbody><tbody><tr><th></th><td></td><td>Root</td><td>Stem</td><td>Leaves</td></tr><tr><th>1</th><td>Mature plant from niche environment (3–6 plants with average of 4.8 plants per square meter)</td><td>10.27 ± 5.53</td><td>84.86 ± 28.26</td><td>33.78 ± 10.77</td></tr><tr><th>2</th><td>One-year-old plant cultivated at out of niche environment (40–45 plants with average of 43 plants per square meter)</td><td>Not harvested</td><td>Not formed</td><td>28.15 ± 6.59</td></tr></tbody></table>
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Allen Brain Atlas
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OpenNeuro
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