The oldest-known Lestidae (Odonata) from the late Eocene of Tibet: palaeoclimatic implications
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[1] K. Chandra,et al. New record of Megalestes gyalsey Gyeltshen, Kalkman amp; Orr, 2017 (Zygoptera: Synlestidae) from India, with first description of female and larva. , 2021, Zootaxa.
[2] Alice C Hughes,et al. A Middle Eocene lowland humid subtropical “Shangri-La” ecosystem in central Tibet , 2020, Proceedings of the National Academy of Sciences.
[3] Chengshan Wang,et al. Revised chronology of central Tibet uplift (Lunpola Basin) , 2020, Science Advances.
[4] A. Nel,et al. The first damselfly (Odonata, Lestidae) from the upper Eocene of Monteils (Gard, France). , 2020, Zootaxa.
[5] D. Küry. Wildermuth H, Martens A (2018) Die Libellen Europas. Alle Arten von den Azoren bis zum Ural im Porträt , 2020 .
[6] Chengshan Wang,et al. Late Eocene–Oligocene High Relief Paleotopography in the North Central Tibetan Plateau: Insights From Detrital Zircon U–Pb Geochronology and Leaf Wax Hydrogen Isotope Studies , 2020, Tectonics.
[7] P. Valdes,et al. Comment on “Revised paleoaltimetry data show low Tibetan Plateau elevation during the Eocene” , 2019, Science.
[8] Chengshan Wang,et al. Internal Drainage Has Sustained Low‐Relief Tibetan Landscapes Since the Early Miocene , 2019, Geophysical Research Letters.
[9] C. Risi,et al. Revised paleoaltimetry data show low Tibetan Plateau elevation during the Eocene , 2019, Science.
[10] P. Valdes,et al. No high Tibetan Plateau until the Neogene , 2019, Science Advances.
[11] S. Dutta,et al. Amber fossils reveal the Early Cenozoic dipterocarp rainforest in central Tibet , 2018, Palaeoworld.
[12] G. Dévai,et al. Analysing the European genera of family Lestidae (Odonata: Zygoptera) with special emphasis on the status of Chalcolestes based on the morphological characteristics of male adults , 2018, International Journal of Odonatology.
[13] A. Nel,et al. New insights on basivenal sclerites using 3D tools and homology of wing veins in Odonatoptera (Insecta) , 2018, Scientific Reports.
[14] Chengshan Wang,et al. Late Oligocene-early Miocene evolution of the Lunpola Basin, central Tibetan Plateau, evidences from successive lacustrine records , 2017 .
[15] G. Shi,et al. Fossil climbing perch and associated plant megafossils indicate a warm and wet central Tibet during the late Oligocene , 2017, Scientific Reports.
[16] A. Orr,et al. Honouring His Royal Highness the Crown Prince of Bhutan: Megalestes gyalsey (Odonata: Synlestidae). , 2017, Zootaxa.
[17] M. Seehausen. Indolestes lafaeci sp. nov. (Odonata: Lestidae) from Timor, with comparisons to related species. , 2017, Zootaxa.
[18] G. Bechly,et al. A re-description of the fossil damselfly Eolestes syntheticus Cockerell, 1940 (Odonata: Zygoptera: Eolestidae n. fam.) with description of new taxa from the Eocene of North America. , 2014, Zootaxa.
[19] L. Ding,et al. The Andean-type Gangdese Mountains: Paleoelevation record from the Paleocene-Eocene Linzhou Basin , 2014 .
[20] Qinghai Xu,et al. Palynological evidence for the latest Oligocene-early Miocene paleoelevation estimate in the Lunpola Basin, central Tibet , 2014 .
[21] K. Dijkstra,et al. Redefining the damselfly families: a comprehensive molecular phylogeny of Zygoptera (Odonata) , 2014 .
[22] A. Nel,et al. Dragonflies and damselflies (Insecta: Odonata) from the Late Eocene of the Isle of Wight , 2013, Earth and Environmental Science Transactions of the Royal Society of Edinburgh.
[23] L. Ding,et al. Paleogene high elevations in the Qiangtang Terrane, central Tibetan Plateau , 2013 .
[24] Qiang Li,et al. A mammalian fossil from the Dingqing Formation in the Lunpola Basin, northern Tibet, and its relevance to age and paleo-altimetry , 2012 .
[25] J. Eiler,et al. The paleoaltimetry of Tibet: An isotopic perspective , 2011, American Journal of Science.
[26] A. Roques,et al. Direct impacts of recent climate warming on insect populations. , 2010, Integrative zoology.
[27] Brian S. Currie,et al. Paleoaltimetry of the Tibetan Plateau from D/H ratios of lipid biomarkers , 2009 .
[28] P. Munz. A Venational Study Of The Suborder Zygoptera, Odonata: With Keys For The Identification Of Genera , 2009 .
[29] G. Gehrels,et al. Geological records of the Lhasa-Qiangtang and Indo-Asian collisions in the Nima area of central Tibet , 2007 .
[30] G. Gehrels,et al. Late Cretaceous to middle Tertiary basin evolution in the central Tibetan Plateau: Changing environments in response to tectonic partitioning, aridification, and regional elevation gain , 2007 .
[31] P. DeCelles,et al. High and dry in central Tibet during the Late Oligocene , 2007 .
[32] B. Currie,et al. Palaeo-altimetry of the late Eocene to Miocene Lunpola basin, central Tibet , 2006, Nature.
[33] T. Harrison,et al. Cretaceous-Tertiary shortening, basin development, and volcanism in central Tibet , 2005 .
[34] R. Tillyard. The biology of dragonflies : (Odonata or Paraneuroptera) , 2004 .
[35] An Yin,et al. Geologic Evolution of the Himalayan-Tibetan Orogen , 2000 .
[36] François Escuillié,et al. The Mesozoic non-calopterygoid Zygoptera: description of new genera and species from the Lower Cretaceous of England and Brazil and their phylogenetic significance (Odonata, Zygoptera, Coenagrionoidea, Hemiphlebioidea, Lestoidea) , 1998 .
[37] A. Nel,et al. New Tertiary Fossil Odonata from France (Sieblosiidae, Lestidae, Coenagrionidae, Megapodagrionidae, Libellulidae) , 1997 .
[38] G. Bechly. Morphologische Untersuchungen am Flugelgeader der rezenten Libellen und deren Stammgruppenvertreter (Insecta ; Pterygota ; Odonata) unter besonderer Berucksichtigung der phylogenetischen Systematik und des Grundplanes der Odonata , 1996 .
[39] Eric J. Fielding,et al. How flat is Tibet , 1994 .
[40] M. Romero. New data on the ecological tolerance of some rheophilous Odonata in Mediterranean Europe (Sierra Morena, southern Spain) , 1988 .
[41] J. Kukalová-Peck,et al. A new interpretation of dragonfly wing venation based upon Early Upper Carboniferous fossils from Argentina (Insecta: Odonatoidea) and basic character states in pterygote wings , 1984 .
[42] T. Donnelly. A New Species of Archilestes from Mexico and Central America, with Further Notes on the Status of Cyptolestes Williamson (Odonata: Lestidae) , 1981 .
[43] L. K. Gloyd. The taxonomic status of the genera Superlestes and Cyptolestes Williamson, 1921 (Odonata: Lestidae) , 1980 .
[44] J. Watson,et al. NEW SPECIES OF AUSTRALIAN LESTIDAE (ODONATA) , 1979 .
[45] Copepodes Parasites De Poissons De Madagascar. MÉMOIRES DE L'INSTITUT SCIENTIFIQUE DE MADAGASCAR , 1956 .
[46] F. Fraser. Outline of a new classification for the legion Lestes Selys (Order Odonata) , 1951 .
[47] F. Fraser,et al. A reclassification of the order Odonata based on some new interpretations of the venation of the dragonfly wing , 1939 .
[48] N. Théobald. Les insectes fossiles des terrains oligocènes de France , 1937 .
[49] R. Tillyard. The insects of Australia and New Zealand , 1926 .
[50] E. B. Williamson. Two new neotropical genera of Lestinae (Odonata) , 1921 .
[51] C. Kennedy. Forty-Two Hitherto Unrecognized Genera and Subgenera of Zygoptera , 1920 .
[52] R. Tillyard. On some new and rare Australian Agrionidae (Odonata) , 1913 .
[53] Réne Martin. Odonates indo-océaniens des collections du Muséum , 1902 .
[54] Robert M'Lachlan F.R.S.. II.—Some new species of Odonata of the “Légion” Lestes, with notes , 1895 .
[55] W. Kirby. A synonymic catalogue of Neuroptera Odonata, or dragon-flies. With an appendix of fossil species. By W.F. Kirby ... , 1890 .
[56] W. Kirby. A synonymic catalogue of Neuroptera Odonata, or dragonflies : with an appendix of fossil species , 1890 .