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80 results for “southern Tibet”
Linked collectors and determiners for: Taxonomic studies on the genus Delphinium (Ranunculaceae) from China (XXIV): D. latilimbum, recently described from southern Xizang (Tibet), is another new synonym of D. kamaonense, a Sino-Himalayan species.
Natural history specimen data linked to collectors and determiners held within, "Taxonomic studies on the genus Delphinium (Ranunculaceae) from China (XXIV): D. latilimbum, recently described from southern Xizang (Tibet), is another new synonym of D. kamaonense, a Sino-Himalayan species". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0a697264-1a79-4190-97f4-72d313815452">https://bionomia.net/dataset/0a697264-1a79-4190-97f4-72d313815452</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0a697264-1a79-4190-97f4-72d313815452">https://gbif.org/dataset/0a697264-1a79-4190-97f4-72d313815452</a>. Formatted as a Frictionless Data package.
Late Quaternary Extension Rates Across the Northern Half of the Yadong-Gulu Rift – Implication for East-West Extension in Southern Tibet
<p><strong>Table 1:</strong> 10Be surface-exposure dating of the moraine samples.</p> <p><strong>Table 2:</strong> 10Be and 26Al surface-exposure dating of the alluvial samples.</p>
Lithosphere tearing and foundering during continental subduction: insights from Oligocene-Miocene magmatism in southern Tibet
<p>Table S1. Major and trace elements and age data summary.</p> <p>Table S2. Zircon U-Pb ages.</p> <p>Table S3. Mineral major elements.</p> <p>Table S4. Zircon trace elements.</p> <p>Table S5. Published ages of the Oligocene to Miocene igneous rocks in southern Tibet</p> <p>Table S6. Calculated primary magmas and P estimates of the ultrapotassic rocks in southern Tibet.</p>
Geochemical Results of Mafic Blocks in Southern Ophiolitic Mélange in Luqu (Xigaze) Ophiolite from Yarlung-Tsangpo Suture Zone, Southern Tibet
<p><strong>Table S1</strong> Basic information of mafic rocks of southern ophiolitic mélange from Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S2</strong> Major and trace element compositions of mafic rocks of southern ophiolitic mélange from Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S3</strong> Sr-Nd-Hf isotope results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S4</strong> Clinopyroxene EPMA results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S5</strong> Clinopyroxene Laser Ablation-ICPMS results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S6</strong> Amphibole EPMA results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S7</strong> Amphibole Laser Ablation-ICPMS results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S8</strong> Plagioclase EPMA results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S9</strong> Zircon SIMS U-Pb dating results of mafic rocks from southern Luqu mélange</p> <p><strong>Table S10 </strong>Zircon Hf-O isotopes of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S1</strong> Basic information of mafic rocks of southern ophiolitic mélange from Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S2</strong> Major and trace element compositions of mafic rocks of southern ophiolitic mélange from Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S3</strong> Sr-Nd-Hf isotope results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S4</strong> Clinopyroxene EPMA results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S5</strong> Clinopyroxene Laser Ablation-ICPMS results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S6</strong> Amphibole EPMA results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S7</strong> Amphibole Laser Ablation-ICPMS results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S8</strong> Plagioclase EPMA results of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p> <p><strong>Table S9</strong> Zircon SIMS U-Pb dating results of mafic rocks from southern Luqu mélange</p> <p><strong>Table S10 </strong>Zircon Hf-O isotopes of mafic rocks from southern ophiolitic mélange of Luqu section of the Xigaze ophiolite, YTSZ</p>
PLATE III. Species of southern Tibet and soft substrate habitats in the Caspian Basin. (A) P. theobaldi; (B) habitat of A, near Yangbajain, north of Lhasa, southern Tibet; (C) P. sogdianus; (D) P. interscapularis; (E) P. mystaceus; and (F) habitat of D and E, Karakum Desert. north of Ashkhabad, Turkmenistan. in A molecular phylogenetic hypothesis for the Asian agamid lizard genus Phrynocephalus reveals discrete biogeographic clades implicated by plate tectonics
PLATE III. Species of southern Tibet and soft substrate habitats in the Caspian Basin. (A) P. theobaldi; (B) habitat of A, near Yangbajain, north of Lhasa, southern Tibet; (C) P. sogdianus; (D) P. interscapularis; (E) P. mystaceus; and (F) habitat of D and E, Karakum Desert. north of Ashkhabad, Turkmenistan.
Supplementary files for the manuscript "The Timescale and Carbon Flux Recorded by Skarn Garnet from Gangdese Arc, Southern Tibet"
<p>This supplementary datafiles include Excel spreadsheets and MATLAB codes that are supplementary to the main manuscript. </p>
Different Formation Modes of the North‒South-Trending Rifts in Southern Tibet: Implications from Ambient Noise Tomography
<p>To reveal the formation modes of the southern Tibetan rifts, we performed ambient noise tomography to image the shear-wave velocity structure beneath different rifts. This dataset consists of there parts. The CFs_STB.zip contains correlation functions of all the station pairs. The disps_STB.zip contains the Rayleigh surface wave phase velocity dispersion curves. And the 3-D shear-wave model beneath the rifts of southern Tibet Pleatau is provided in Rift_STB_Vs_model.zip.</p>
Seismic evidence on crustal architecture of east-southern Tibet and implications for active landform construction since Late Miocene
<p>This is the receiver function data set for "Seismic evidence on crustal architecture of east-southern Tibet and implications for active landform construction since Late Miocene"</p>
FIGURE 4 in Synotis nyalamensis (Asteraceae, Senecioneae), a new species from southern Xizang (Tibet), China
FIGURE 4. Synotis kunthiana in the wild [on the way from Shongsa Khola (Chusang valley) to Thulo Chaur, Humla district, Nepal]. A. Habitat. B. Habit. C. Capitulum (side view). D. Capitulum (top view). E. Ray floret (left) and disk floret (right). Photographed by Y.S. Chen.
FIGURE 2 in Synotis nyalamensis (Asteraceae, Senecioneae), a new species from southern Xizang (Tibet), China
FIGURE 2. Synotis nyalamensis sp. nov. (A–C) and S. kunthiana (D–F), showing their rhizomes, proximal portion of stems, leaves and synflorescences. A. Rhizome and proximal portion of stem. B. Leaf (left: adaxial side; right: abaxial side. C. Synflorescence. D. Rhizome and proximal portion of stems. E. Median portion of stem, showing that the leaves are shortly petiolate. F. Synflorescence. A–C from M. Tang & C. Ren 485 (IBSC), D–F from Blinkworth, Wall. Num. List 3118/228 (K).
FIGURE 3 in Synotis nyalamensis (Asteraceae, Senecioneae), a new species from southern Xizang (Tibet), China
FIGURE 3. Type specimens of Synotis kunthiana (India, Kumaon, Blinkworth, Wall. Num. List 3118/228). A. G00468314 (G-DC). B. G00468222 (G-DC). C. E00414025 (E). D. K001118591 (K).
FIGURES 31–37 in New data on the irvinei group of Chydaeus of the Himalaya from Nepal and southern Tibet (Coleoptera, Carabidae, Harpalini)
FIGURES 31–37. Chydaeus soluensis sp. n. 31, male protarsus; 32, male mesotarsus; 33, 35, median lobe of aedeagus (33, lateral view; 35, dorsal view); 34, terminal lamella, dorsal view; 36, apical stylomere, lateral view; 37, laterotergite and stylus, ventral view. 31–35, holotype; 36, 37, paratype. Scale bar = 0.5 mm.
FIGURE 38 in New data on the irvinei group of Chydaeus of the Himalaya from Nepal and southern Tibet (Coleoptera, Carabidae, Harpalini)
FIGURE 38. Chydaeus, distribution: 'red star', Ch. irvinei (Andrewes. 1930); 'red circle', Ch. loeffleri loeffleri (Jedlička, 1966); 'red square', Ch. loeffleri tibetanus ssp. n.; 'yellow square', Ch. cf. loeffleri, population from Bothe Koshi Valley, see text for details; 'blue circle', Ch. soluensis sp. n.
FIGURES 26–30. Chydaeus loeffleri tibetanus ssp. n., holotype. 26 in New data on the irvinei group of Chydaeus of the Himalaya from Nepal and southern Tibet (Coleoptera, Carabidae, Harpalini)
FIGURES 26–30. Chydaeus loeffleri tibetanus ssp. n., holotype. 26, terminal lamella of aedeagus, dorsal view; 27, median lobe of aedeagus, lateral view; 28, same, dorsal view; 29, male protarsus; 30, male mesotarsus. Scale bar = 0.5 mm.
FIGURES 13–25 in New data on the irvinei group of Chydaeus of the Himalaya from Nepal and southern Tibet (Coleoptera, Carabidae, Harpalini)
FIGURES 13–25. Chydaeus loeffleri loeffleri (Jedlička, 1966). 13, apex of left mandible; 14–17, 19, 20, median lobe of aedea- gus (14, 16, 19, lateral view; 15, 17, 20, dorsal view); 18, terminal lamella, dorsal view; 21, apical stylomere, lateral view; 22, laterotergite and stylus, ventral view; 23, male protarsus, 24, male mesotarsus; 25, left metacoxa. 14, 15, holotype; 13, 16–25, specimens from the Rolwaling Valley. Abbreviations: mp, medial pore; pmp, posteromedial pore. Scale bars: A = 0.5 mm (Figs 13–24), B = 1 mm (Fig. 25).
FIGURES 6–12 in New data on the irvinei group of Chydaeus of the Himalaya from Nepal and southern Tibet (Coleoptera, Carabidae, Harpalini)
FIGURES 6–12. Chydaeus irvinei (Andrewes. 1930). 6, left metacoxa; 7, male protarsus; 8, male mesotarsus; 9, 10, 12, median lobe of aedeagus (9, 10, lateral view; 12, dorsal view); 11, terminal lamella, dorsal view. 6–8, 10–12, paralectotypes; 11, lectotype. Abbreviation: pmp, posteromedial pore. Scale bars: A = 1 mm (Fig. 6), B = 0.5 mm (Figs 7–12).
FIGURES 1–5 in New data on the irvinei group of Chydaeus of the Himalaya from Nepal and southern Tibet (Coleoptera, Carabidae, Harpalini)
FIGURES 1–5. Chydaeus, habitus (males). 1, Ch. irvinei (Andrewes. 1930), lectotype; 2, same, paralectotype from Gautsa; 3, Ch. loeffleri tibetanus ssp. n., holotype; 4, Ch. loeffleri loeffleri (Jedlička, 1966), specimen from the locality "Beding to Na"; 5, Ch. soluensis sp. n., paratype from Lamjura La. Scale bars = 1 mm.
FIGURE 1. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. Mature cauline leaf. b. Inflorescence. c. Pistil. d. Stamen. e. Sepal. f in A new species of Thalictrum (Ranunculaceae) from southern Tibet (Xizang), China
FIGURE 1. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. Mature cauline leaf. b. Inflorescence. c. Pistil. d. Stamen. e. Sepal. f. Fruit. (Drawn based on an isotype of PE-Tibetan Expedition 4387 by G. Q. Zhao).
FIGURE 2. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. A blooming individual. b & e in A new species of Thalictrum (Ranunculaceae) from southern Tibet (Xizang), China
FIGURE 2. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. A blooming individual. b & e. Upper and lower leaves showing color and morphology variation. c. Inflorescence. d. Mature flower and fruits showing purple filaments and compressed fruits. (Photos from Gyirong and Nyalam populations by J. Y. Li, L. Xie, and X. T. Ma)
FIGURE 8 in Thalictrum changii (Ranunculaceae), a new species from southern Xizang (Tibet), China
FIGURE 8. Thalictrum yunnanense var. yunnanense in the wild (Kunming in central Yunnan, China, the type locality). A. Roots. B. Portion of stem. C. Leaf (above: adaxial side; below: abaxial side). D. Terminal leaflet (above: adaxial side; below: abaxial side). E. Portion of a terminal leaflet (adaxial side), showing the glandular hairs. F. Portion of a terminal leaflet (abaxial side), showing the glandular hairs. G. Flower, with the sepals having fallen. H. Sepal (left: adaxial side; right: abaxial side). I. Stamens. J. Carpels. K. Aggregate fruit (immature). L. Achenes (immature). Photographed by Y.P. Zeng.
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OpenNeuro
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