[1] Arthaber, G., 1896. Die Cephalopodenfauna der Reiflinger Kalke. Beitrage zur Palaontologie und Geologie Osterreich-Ungarns und des Orients, 10: 1-112 http://core.ac.uk/display/4657363
[2] Arthaber, G., 1906. Die Alpine Trias des Mediterran-Gebietes. Lethaea Geognostica, Ⅱ, Das Mesozoicum I. 224-391
[3] Assereto, R., 1971. Die Binodosus-Zone. Ein Jahrhundert Wissenschaftlicher Gegensätze. Sitzungsberichte der Österreichische Akademie der Wissenschaften, 179: 25-53
[4] Assereto, R., 1974. Aegean and Bithynian: Proposal for Two New Anisian Substages. In: Zapfe, H., ed., The Stratigraphy of the Alpine-Mediterranean Triassic, Schriftenreihe der Erdwissenschaftlichen Komission. Österreichische Akadamie der Wissenschaften, 2: 23-39
[5] Assereto, R., Jacobshagen, V., Kauffmann, G., et al., 1980. The Scythian/Anisian Boundary in Chios, Greece. Rivista Italiana di Paleontologia e Stratigrafia, 85: 715-735 http://www.researchgate.net/publication/313579273_The_ScythianAnisian_boundary_in_Chios
[6] Balini, M., Lucas, S. G., Jenks, J. F., et al., 2010. Triassic Ammonoid Biostratigraphy: An Overview. Geological Society, London, Special Publications, 334(1): 221-262. https://doi.org/10.1144/sp334.10
[7] Bender, H., 1970. Zur Gliederung der Mediterranen Trias Ⅱ. Die Conodontenchronologie der Mediterranen Trias. Annales Géologique Pays Hellénique, 19: 465-540 http://ci.nii.ac.jp/naid/10020877413
[8] Bender, H., Stoppel, D., 1965. Perm-Conodonten. Geologisches Jahrbuch, 82: 331-364 http://ci.nii.ac.jp/naid/10012506981
[9] Budurov, K., Stefanov, S., 1972. Plattform-Conodonten und ihre Zonen in der Mittleren Trias Bulgariens. Mitteilungen der Gesellschaft der Geologie und Bergbaustudenten in Österreich, 21: 829-852 http://www.researchgate.net/publication/281043692_Platform-Condonten_und_ihre_Zonen_in_der_Mittleren_Trias_Bulgariens
[10] Chen, Z. -Q., Benton, M. J., 2012. The Timing and Pattern of Biotic Recovery Following the End-Permian Mass Extinction. Nature Geoscience, 5(6): 375-383. https://doi.org/10.1038/ngeo1475
[11] Chen, Y., Jiang, H. S., Ogg, J. G., et al., 2020. Early-Middle Triassic Boundary Interval: Integrated Chemo-Bio-Magneto-Stratigraphy of Potential GSSPs for the Base of the Anisian Stage in South China. Earth and Planetary Science Letters, 530: 115863. https://doi.org/10.1016/j.epsl.2019.115863
[12] Chen, Y. L., Krystyn, L., Orchard, M. J., et al., 2016. A Review of the Evolution, Biostratigraphy, Provincialism and Diversity of Middle and Early Late Triassic Conodonts. Papers in Palaeontology, 2(2): 235-263. https://doi.org/10.1002/spp2.1038
[13] Chen, Y. L., Scholze, F., Richoz, S., et al., 2019. Middle Triassic Conodont Assemblages from the Germanic Basin: Implications for Multi-Element Taxonomy and Biogeography. Journal of Systematic Palaeontology, 17(5): 359-377. https://doi.org/10.1080/14772019.2018.1424260
[14] Dagys, A. S., 1988. Major Features of the Geographic Differentiation of Triassic Ammonoids. In: Wiedmann, J., Kullmann, J., eds., Cephalopods-Present and Past. Schweizerbart'sche Verlagsbuchhandlung, Stuttgart. 341-349
[15] Dzik, J., 1976. Remarks on the Evolution of Ordovician Conodonts. Acta Palaeontologica Polonica, 21: 395-455 http://ci.nii.ac.jp/naid/10019474740
[16] Farabegoli, E., Levanti, D., Perri, M. C., et al., 1984. M. Bivera Formation: An Atypical Middle Triassic "Rosso Ammonitico" Facies from Southern Alps (Italy). Giornale di Geologia, 46: 33-46 http://www.researchgate.net/publication/256461287_M_Bivera_Formation_an_atypical_Middle_Triassic_Rosso_Ammonitico_facies_from_Southern_Alps_Italy
[17] Gaetani, M., 1993. Anisian/Ladinian Boundary Field Workshop, Southern Alps-Balaton Highlands. Field-Guide Book, I.U.G.S. Subcommission on Triassic Stratigraphy. Jun. 27-Jul. 4, 1993, Milano
[18] Gaetani, M., Jacobshagen, V., Nicora, A., et al., 1992. The Early-Middle Triassic Boundary at Chios (Greece). Rivista Italiana di Paleontologia e Stratigrafia, 98: 181-204 http://www.researchgate.net/publication/292233097_The_early-middle_Triassic_boundary_at_Chios_Greece
[19] Galfetti, T., Bucher, H., Brayard, A., et al., 2007. Late Early Triassic Climate Change: Insights from Carbonate Carbon Isotopes, Sedimentary Evolution and Ammonoid Paleobiogeography. Palaeogeography, Palaeoclimatology, Palaeoecology, 243(3/4): 394-411. https://doi.org/10.1016/j.palaeo.2006.08.014
[20] Galfetti, T., Bucher, H., Martini, R., et al., 2008. Evolution of Early Triassic Outer Platform Paleoenvironments in the Nanpanjiang Basin (South China) and Their Significance for the Biotic Recovery. Sedimentary Geology, 204(1/2): 36-60. https://doi.org/10.1016/j.sedgeo.2007.12.008
[21] Germani, D., 1997. New Data on Ammonoids and Biostratigraphy of the Classical Spathian Kçira Sections (Lower Triassic, Albania). Rivista Italiana di Paleontologia e Stratigrafia, 103: 267-292 http://www.researchgate.net/publication/287770067_New_data_on_ammonoids_and_biostratigraphy_of_the_classical_Spathian_Kcira_sections_Lower_Triassic_Albania
[22] Głazek, J., Trammer, J., Zawidzka, K., 1973. The Alpine Microfacies with Glomospira densa (Pantiç) in the Muschelkalk of Poland and Some Related Paleogeographical and Geotectonic Problems. Acta Geologica Polonica, 23: 463-482
[23] Golding, M. L., 2014. Biostratigraphy and Sedimentology of Triassic Hydrocarbon-Bearing Rocks in Northeastern British Columbia: [Dissertation]. University of British Columbia, Vancouver. 402
[24] Golding, M. L., Orchard, M. J., Zonneveld, J. -P., et al., 2014. An Exceptional Record of the Sedimentology and Biostratigraphy of the Montney and Doig Formations in British Columbia. Bulletin of Canadian Petroleum Geology, 62: 157-176
[25] Golding, M. L., Orchard, M. J., Zonneveld, J. P., et al., 2015. Determining the Age and Depositional Model of the Doig Phosphate Zone in Northeastern British Columbia Using Conodont Biostratigraphy. Bulletin of Canadian Petroleum Geology, 63(2): 143-170. https://doi.org/10.2113/gscpgbull.63.2.143
[26] Golding, M. L., Orchard, M. J., 2016. New Species of the ConodontNeogondolellafrom the Anisian (Middle Triassic) of Northeastern British Columbia, Canada, and Their Importance for Regional Correlation. Journal of Paleontology, 90(6): 1197-1211. https://doi.org/10.1017/jpa.2016.119
[27] Golding, M. L., Orchard, M. J., 2018. Magnigondolella, a New Conodont Genus from the Triassic of North America. Journal of Paleontology, 92(2): 207-220. https://doi.org/10.1017/jpa.2017.123
[28] Goudemand, N., Orchard, M. J., Bucher, H., et al., 2012. The Elusive Origin of Chiosella Timorensis (Conodont Triassic). Geobios, 45(2): 199-207. https://doi.org/10.1016/j.geobios.2011.06.001
[29] Grădinaru, E., 1995. Mesozoic Rocks in North Dobrogea: An Overview. Field Guidebook, Central and North Dobrogea, Romania. IGCP Project No. 369, Comparative Evolution of Peri-Tethyan Rift Basins, October 1-4, 1995. 17-28
[30] Grădinaru, E., 2000. Workshop on the Lower-Middle Triassic (Olenekian-Anisian), June 7-10, 2000, Tulcea, Romania, Conference and Field Trip. Field Trip Guide, Bucharest. 37
[31] Grădinaru, E., Gaetani, M., 2019. Upper Spathian to Bithynian (Lower to Middle Triassic) Brachiopods from North Dobrogea (Romania). Rivista Italiana di Paleontologia e Stratigrafia, 125: 91-123 http://www.researchgate.net/publication/330686660_Upper_Spathian_to_Bithynian_Lower_to_Middle_Triassic_brachiopods_from_North_Dobrogea_Romania
[32] Grădinaru, E., Orchard, M. J., Nicora, A., et al., 2002. Conodont Succession across Olenekian-Anisian Boundary as Deşli Caira, Romania. IUGS Subcommission on Triassic Stratigraphy, STS/IGCP 467 Field Meeting, Veszprém, Hungary. 5-8
[33] Grădinaru, E., Kozur, H., Nicora, A., et al., 2006. The Chiosella timorensis Lineage and Correlation of the Ammonoids and Conodonts around the Base of the Anisian in the GSSP Candidate at Deşli Caira (North Dobrogea, Romania). Albertiana, 34: 34-39 http://www.researchgate.net/publication/273693960_The_Chiosella_timorensis_lineage_and_correlation_of_the_ammonoids_and_conodonts_around_the_base_of_the_Anisian_in_the_GSSP_candidate_at_Desli_Caira_North_Dobrogea_Romania
[34] Grădinaru, E., Orchard, M. J., Nicora, A., et al., 2007. The Global Boundary Stratotype Section and Point (GSSP) for the Base of the Anisian Stage: Deşli Caira, North Dobrogea, Romania. Albertiana, 36: 54-67 http://www.researchgate.net/publication/260220167_The_Global_Boundary_Stratotype_Section_and_Point_GSSP_for_the_base_of_the_Anisian_Stage_Desli_Caira_Hill_North_Dobrogea_Romania
[35] Henderson, C. M., Golding, M. L., Orchard, M. J., 2018. Conodont Sequence Biostratigraphy of the Lower Triassic Montney Formation. Bulletin of Canadian Petroleum Geology, 66: 7-22
[36] Henderson, C. M., 2019. A Natural Induan-Olenekian Boundary. 3rd International Congress on Stratigraphy, July 2-5, 2019, Milan. ST9. 1-6
[37] Hirsch, F., 1994. Triassic Conodonts as Ecological and Eustatic Sensors. In: Embry, A. F., Beauchamp, B., Glass, D. J., eds., Pangea: Global Environments and Resources. Memoir of the Canadian Society of Petroleum Geologists, 17: 949-959
[38] Hounslow, M. W., Muttoni, G., 2010. The Geomagnetic Polarity Timescale for the Triassic: Linkage to Stage Boundary Definitions. Geological Society, London, Special Publications, 334(1): 61-102. https://doi.org/10.1144/sp334.4
[39] Hounslow, M. W., Szurlies, M., Muttoni, G., et al., 2007. The Magnetostratigraphy of the Olenekian-Anisian Boundary and a Proposal to Define the Base of the Anisian Using a Magnetozone Datum. Albertiana, 36: 62-67 http://www.researchgate.net/publication/228710149_The_magnetostratigraphy_of_the_OlenekianAnisian_boundary_and_a_proposal_to_define_the_base_of_the_Anisian_using_a_magnetozone_datum
[40] Jacobshagen, V., Gaetani, M., Nicora, A., et al., 1993. The Early/Middle Triassic Boundary on Chios Island: Preliminary Results of a Reinvestigation. Bulletin of the Geological Society of Greece, 28: 25-38 http://geolib.geo.auth.gr/index.php/bgsg/article/viewFile/7068/6825
[41] Jeppsson, L., Anehus, R., Fredholm, D., 1999. The Optimal Acetate Buffered Acetic Acid Technique for Extracting Phosphatic Fossils. Journal of Paleontology, 73(5): 964-972. https://doi.org/10.1017/s0022336000040798
[42] Kolar-Jurkovšek, T., 1983. Srednjetriasni Konodonti Slovenije. Rudarsko-Metalurški Zbornik, 30: 323-364
[43] Kovács, S., 2003. Pelsonian Conodonts from the Balaton Highland. Geologica Hungarica, Series Palaeontologica, 55: 159-177 http://www.researchgate.net/publication/238113910_The_Pelsonian_brachiopod_fauna_of_the_Balaton_Highland
[44] Kovács, S., Kozur, H., 1980. Stratigraphische Reichweite der Wichtigsten Conodonten (ohne Zahnreichen Conodonten) der Mittel-und Obertrias. Geologisch-Paläontologische Mitteilungen Innsbruck, 10: 47-78 http://www.researchgate.net/publication/288345562_Stratigraphische_Reichweite_der_wichtigsten_Conodonten_ohne_Zahnreihenconodonten_der_Mittel-_und_Obertrias
[45] Kovács, S., Papšová, J., 1986. Conodonts from the Paraceratites binodosus Zone (Middle Triassic) from the Mecsek Mts., Southern Hungary and from the Choč Nappe of the Low Tatra Mts., Czechoslovakia. Geologický Zborník-Geologica Carpathica, 37: 59-74 http://www.researchgate.net/publication/318402208_Conodonts_from_the_Paraceratites_binodosus_zone_Middle_Triassic_from_the_Mecsek_Mts_southern_Hungary_and_from_the_Choc_Nappe_of_the_Low_Tatra_Mts_Czechoslovakia
[46] Kovács, S., Rálisch-Felgenhauer, E., 2005. Middle Anisian (Pelsonian) Platform Conodonts from the Triassic of the Mecsek Mts (South Hungary)-Their Taxonomy and Stratigraphic Significance. Acta Geologica Hungarica, 48(1): 69-105. https://doi.org/10.1556/ageol.48.2005.1.3
[47] Kozur, H. W., 1968a. Neue Conodonten aus dem Oberen Muschelkalk des Germanischen Binnenbeckens. Monatsberichte der Deutschen Akademie der Wissenschaften zu Berlin, 10: 130-142
[48] Kozur, H. W., 1968b. Conodonten aus dem Muschelkalk des Germanischen Binnenbeckens und ihr Stratigraphischer Wert. Teil I: Conodonten vom Plattformtyp und Stratigraphische Bedeutung der Conodonten aus dem Oberen Muschelkalk. Geologie, 17: 930-946 http://www.researchgate.net/publication/286781334_Conodonten_aus_dem_Muschelkalk_des_germanischen_Binnenbeckens_und_ihr_stratigraphischer_Wert_Teil_I_Conodonten_vom_Plattformtyp_und_stratigraphische_Bedeutung_der_Conodonten_aus_dem_Oberen_Muschelkalk
[49] Kozur, H., 1972. Die Conodontengattung Metapolygnathus Hayashi 1968 und ihr Stratigraphischer Wert. Geologische-Paläontologische Mitteilungen Innsbruck, 2: 1-37 http://www.museocivico.rovereto.tn.it/patrimonio_abbonamenti_intermedio.jsp?area=69&ID_LINK=111098&page=2970&id_context=79137
[50] Kozur, H. W., 1989. The Taxonomy of the Gondolellid Conodonts in the Permian and Triassic. Courier Forschungsinstitut Senckenberg, 117: 409-469 http://www.researchgate.net/publication/284060687_The_taxonomy_of_the_gondolellid_conodont_in_the_Permian_and_Triassic
[51] Lehrmann, D. J., Wei, J. Y., Enos, P., 1998. Controls on Facies Architecture of a Large Triassic Carbonate Platform; the Great Bank of Guizhou, Nanpanjiang Basin, South China. Journal of Sedimentary Research, 68(2): 311-326. https://doi.org/10.2110/jsr.68.311
[52] Lehrmann, D. J., Enos, P., Payne, J. L., et al., 2005. Permian and Triassic Depositional History of the Yangtze Platform and Great Bank of Guizhou in the Nanpanjiang Basin of Guizhou and Guangxi, South China. Albertiana, 33: 147-166
[53] Lehrmann, D. J., Stepchinski, L., Altiner, D., et al., 2015. An Integrated Biostratigraphy (Conodonts and Foraminifers) and Chronostratigraphy (Paleomagnetic Reversals, Magnetic Susceptibility, Elemental Chemistry, Carbon Isotopes and Geochronology) for the Permian-Upper Triassic Strata of Guandao Section, Nanpanjiang Basin, South China. Journal of Asian Earth Sciences, 108: 117-135. https://doi.org/10.1016/j.jseaes.2015.04.030
[54] Li, M. S., Huang, C. J., Hinnov, L., et al., 2018. Astrochronology of the Anisian Stage (Middle Triassic) at the Guandao Reference Section, South China. Earth and Planetary Science Letters, 482: 591-606. https://doi.org/10.1016/j.epsl.2017.11.042
[55] Liang, L., Tong, J. N., Song, H. J., et al., 2016. Lower-Middle Triassic Conodont Biostratigraphy of the Mingtang Section, Nanpanjiang Basin, South China. Palaeogeography, Palaeoclimatology, Palaeoecology, 459: 381-393. https://doi.org/10.1016/j.palaeo.2016.07.027
[56] Lindström, M., 1970. A Suprageneric Taxonomy of the conodonts. Lethaia, 3: 427-445 doi: 10.1111/j.1502-3931.1970.tb00834.x
[57] Marquez-Aliaga, A., Valenzuela-Rios, J. I., Calvet, F., et al., 2000. Middle Triassic Conodonts from Northeastern Spain: Biostratigraphic Implications. Terra Nova, 12(2): 77-83. https://doi.org/10.1046/j.1365-3121.2000.00273.x
[58] Matthews, S. C., 1973. Notes on Open Nomenclature and on Synonymy Lists. Palaeontology, 16: 713-719 http://www.researchgate.net/publication/308357574_Note_on_open_nomenclature_and_on_synonymy_lists
[59] Meço, S., 1999. Conodont Biostratigraphy of Triassic Pelagic Strata, Albania. Rivista Italiana di Paleontologia e Stratigrafia, 105: 251-266 http://www.researchgate.net/publication/291841240_Conodont_biostratigraphy_of_Triassic_pelagic_strata_Albania
[60] Meço, S., 2010. Litho-Biostratigraphy and the Conodonts of Palaeozoic/Triassic Deposits in Albania. Palaeontographica Abteilung A, 290(4/5/6): 131-197. https://doi.org/10.1127/pala/290/2010/131
[61] Mertmann, D., Jacobshagen, V., 2003. Upper Olenekian (Spathian) Ammonoids from Chios (Lower Triassic, Greece): Taxonomy and Stratigraphic Position. Rivista Italiana di Paleontologia e Stratigrafia, 109: 417-447 http://www.researchgate.net/publication/287761111_Upper_Olenekian_Spathian_ammonoids_from_Chios_Lower_Triassic_Greece_Taxonomy_and_stratigraphic_position
[62] Mirăuţă, E., 1974. Über die Conodontenfaunen des oberen Werfens und des Tieferen Anis der Nördlichen Dobrudscha/Rumänien. Geologica et Palaeontologica, 8: 149-158
[63] Mirăuţă, E., 2000. Conodont Biostratigraphy in the Deşli Caira Section. Workshop on the Lower-Middle Triassic (Olenekian-Anisian), June 7-10, 2000, Tulcea, Romania, Conference and Field Trip. Conference Section, Bucharest. 81-84
[64] Mosher, L. C., 1968. Triassic Conodonts from Western North America and Europe and Their Correlation. Journal of Paleontology, 42: 895-946
[65] Mosher, L. C., 1973. Triassic Conodonts from British Columbia and the Northern Arctic Islands. Geological Survey of Canada Bulletin, 222: 141-193 http://ci.nii.ac.jp/naid/10006849076
[66] Mosher, L. C., Clark, D. L., 1965. Middle Triassic Conodonts from the Prida Formation of Northwestern Nevada. Journal of Paleontology, 39: 551-565
[67] Muto, S., Takahashi, S., Yamakita, S., et al., 2018. High Sediment Input and Possible Oceanic Anoxia in the Pelagic Panthalassa during the Latest Olenekian and Early Anisian: Insights from a New Deep-Sea Section in Ogama, Tochigi, Japan. Palaeogeography, Palaeoclimatology, Palaeoecology, 490: 687-707. https://doi.org/10.1016/j.palaeo.2017.11.060
[68] Muttoni, G., Rettori, R., 1994. New Biostratigraphic Data on the Triassic of Marathovouno Hillock Area (Chios Island, Greece). Rivista Italian di Paleontologia e Stratigrafia, 99: 461-472 http://www.researchgate.net/publication/285754873_New_biostratigraphic_data_on_the_Triassic_of_the_Marathovouno_Hillock_area_Chios_Island_Greece
[69] Muttoni, G., Kent, D. V., Gaetani, M., 1994. The Base of the Anisian. A Candidate Global Stratotype Section and Point from Chios Island, Greece. Albertiana, 13: 37-43 http://www.researchgate.net/publication/263569199_The_base_of_the_Anisian_A_candidate_global_stratotype_section_and_point_from_Chios_Island_Greece
[70] Muttoni, G., Kent, D. V., Gaetani, M., 1995. Magnetostratigraphy of a Lower-Middle Triassic Boundary Section from Chios (Greece). Physics of the Earth and Planetary Interiors, 92(3/4): 245-260. https://doi.org/10.1016/0031-9201(95)03021-4
[71] Muttoni, G., Kent, D. V., Meço, S., et al., 1996. Magnetobiostratigraphy of the Spathian to Anisian (Lower to Middle Triassic) Kçira Section, Albania. Geophysical Journal International, 127(2): 503-514. https://doi.org/10.1111/j.1365-246x.1996.tb04736.x
[72] Muttoni, G., Nicora, A., Balini, M., et al., 2019. A Candidate GSSP for the Base of the Anisian from Kçira, Albania. Albertiana, 45: 39-49
[73] Nakrem, H. A., Orchard, M. J., Weitschat, W., et al., 2008. Triassic Conodonts from Svalbard and Their Boreal Correlations. Polar Research, 27(3): 523-539. https://doi.org/10.1111/j.1751-8369.2008.00076.x
[74] Narkiewicz, K., 1999. Conodont Biostratigraphy of the Muschelkalk (Middle Triassic) in the Central Part of the Polish Lowlands. Geological Quarterly, 43: 313-328 http://www.researchgate.net/publication/269989645_Conodont_biostratigraphy_of_the_Muschelkalk_Middle_Triassic_in_the_central_part_of_the_Polish_Lowlands
[75] Nicora, A., 1976. Conodont-Fauna, Stratigraphic Position and Relations to the Tethyan Succession of the Shoshonensis Zone (Pelsonian) of Nevada. Rivista Italiana di Paleontologia e Stratigrafia, 82: 627-648
[76] Nicora, A., Kovács, S., 1984. Conodont Fauna from the Rotelliforme, Meeki and Occidentalis Zones (Middle Triassic) of Humboldt Range, Nevada, Western North America. Rivista Italiana di Paleontologia e Stratigrafia, 90: 135-164 http://www.researchgate.net/publication/316678881_Conodont_fauna_from_the_Rotelliforme_Meeki_and_Occidentalis_zones_middle_Triassic_of_Humboldt_Range_Nevada_western-North_America
[77] Nogami, Y., 1968. Trias-Conodonten von Timor, Malaysien und Japan. Memoirs of the Faculty of Science, Kyoto University, Series Geology and Mineralogy, 34: 115-136 http://ci.nii.ac.jp/naid/120005466484/
[78] Ogg, J. G., Huang, C., Hinnov, L., 2014. Triassic Timescale Status: A Brief Overview. Albertiana, 41: 3-30 http://www.researchgate.net/profile/Chunju_Huang2/publication/275026853_Triassic_timescale_status_a_brief_overview/links/552f646c0cf22d437170dfc1.pdf
[79] Ogg, J. G., 2019. Publication Announcement: Early-Middle Triassic Boundary Interval: Integrated Chemobio-Magneto-Stratigraphy of Potential GSSPs for the Base of the Anisian Stage in South China. Albertiana, 45: 70-73
[80] Orchard, M. J., 1995. Taxonomy and Correlation of Lower Triassic (Spathian) Segminate Conodonts from Oman and Revision of Some Species of Neospathodus. Journal of Paleontology, 69(1): 110-122 doi: 10.1017/S0022336000026962
[81] Orchard, M. J., 2007. Conodont Diversity and Evolution through the Latest Permian and Early Triassic Upheavals. Palaeogeography, Palaeoclimatology, Palaeoecology, 252(1/2): 93-117. https://doi.org/10.1016/j.palaeo.2006.11.037
[82] Orchard, M. J., 2010. Triassic Conodonts and Their Role in Stage Boundary Definition. Geological Society, London, Special Publications, 334(1): 139-161. https://doi.org/10.1144/sp334.7
[83] Orchard, M. J., Rieber, H., 1999. Multielement Neogondolella (Conodonta, Upper Permian-Middle Triassic). Bolletino della Societa Paleontologia Italiana, 37: 475-488 http://ci.nii.ac.jp/naid/10020877422
[84] Orchard, M. J., Tozer, E. T., 1997. Triassic Conodont Biochronology, Its Calibration with the Ammonoid Standard, and a Biostratigraphic Summary of the Western Canada Sedimentary Basin. In: Moslow, T. F., Wittenberg, J., eds., Triassic of the Western Canada Sedimentary Basin. Bulletin of Canadian Petroleum Geology, 45: 675-692
[85] Orchard, M. J., Grădinaru, E., Nicora, A., 2007a. A Summary of the Conodont Succession around the Olenekian-Anisian Boundary at Deşli Caira, North Dobrogea, Romania. In: Lucas, S. G., Spielmann, J. A., eds., The Global Triassic. New Mexico Museum of Natural History and Science Bulletin, 41: 341-346
[86] Orchard, M. J., Lehrmann, D. J., Wei, J. Y., et al., 2007b. Conodonts from the Olenekian-Anisian Boundary Beds, Guandao, Guizhou Province, China. In: Lucas, S. G., Spielmann, J. A., eds., The Global Triassic. New Mexico Museum of Natural History and Science Bulletin, 41: 347-354
[87] Ovtcharova, M., Bucher, H., Schaltegger, U., et al., 2006. New Early to Middle Triassic U-Pb Ages from South China: Calibration with Ammonoid Biochronozones and Implications for the Timing of the Triassic Biotic Recovery. Earth and Planetary Science Letters, 243(3/4): 463-475. https://doi.org/10.1016/j.epsl.2006.01.042
[88] Ovtcharova, M., Goudemand, N., Hammer, Ø., et al., 2015. Developing a Strategy for Accurate Definition of a Geological Boundary through Radio-Isotopic and Biochronological Dating: The Early-Middle Triassic Boundary (South China). Earth-Science Reviews, 146: 65-76. https://doi.org/10.1016/j.earscirev.2015.03.006
[89] Pevný, J., Salaj, J., 1997. The Anisian-Ladinian Boundary at Zakázané (Slovak Karst, Western Carpathians). Zemní Plyn a Nafta, 42: 97-149
[90] Pia, J., 1930. Grundbegriffe der Stratigraphie mit Ausfiihrlicher Anwendung auf die Europaische Mitteltrias. Leipzig und Wien, Deuticke. 252
[91] Pietsch, C., Mosqueda, L. N., 2019. Looking for Signals of Recovery from the End-Permian Mass Extinction through a Transgressive Sequence from the Middle Triassic Anisian of Nevada. Geological Society of America Abstracts with Programs, 51: 145-149 http://www.researchgate.net/publication/337221840_LOOKING_FOR_SIGNALS_OF_RECOVERY_FROM_THE_END-PERMIAN_MASS_EXTINCTION_THROUGH_A_TRANSGRESSIVE_SEQUENCE_FROM_THE_MIDDLE_TRIASSIC_ANISIAN_OF_NEVADA
[92] Pisa, G., Perri, C., Veneri, P., 1980. Upper Anisian Conodonts from Dont and M. Bivera Formations, Southern Alps (Italy). Rivista Italiana di Paleontologia e Stratigrafia, 85: 807-828 http://www.researchgate.net/publication/281135966_Upper_Anisian_conodonts_from_Dont_and_M_Bivera_Formations_southern_Alps_Italy
[93] Rafek, M. B., 1977. Platform Conodonts from the Middle Triassic Upper Muschelkalk of West Germany and N.E. France: [Dissertation]. University of Bonn, Bonn. 86
[94] Song, H. J., Wignall, P. B., Tong, J. N., et al., 2015. Integrated Sr Isotope Variations and Global Environmental Changes through the Late Permian to Early Late Triassic. Earth and Planetary Science Letters, 424: 140-147. https://doi.org/10.1016/j.epsl.2015.05.035
[95] Stone, J., 1987. Review of Investigative Techniques Used in the Study of Conodonts. In: Austin, R. L., ed., Conodonts: Investigative Techniques and Applications. British Micropalaeontological Society Series, Ellis Horwood Ltd. 17-34
[96] Sudar, M. N., 1982. Conodonts from Bulog Limestones of the Inner Dinarides in Yugoslavia and Their Biostratigraphic Importance. Annales Géologiques de la Péninsule Balkanique, 46: 263-282
[97] Sudar, M. N., 1986. Triassic Microfossils and Biostratigraphy of the Inner Dinarides in Yugoslavia and Their Biostratigraphic Importance. Annales Géologiques de la Péninsule Balkanique, 50: 150-394
[98] Summesberger, H., Wagner, L., 1972. Der Stratotypus des Anis (Trias). Annalen des Naturhistorischen Museums in Wien, 1972: 515-538
[99] Sun, Z. Y., Sun, Y. L., Hao, W. C., et al., 2006. Conodont Evidence for the Age of the Panxian Fauna, Guizhou, China. Acta Geologica Sinica-English Edition, 80(5): 621-630. https://doi.org/10.1111/j.1755-6724.2006.tb00284.x
[100] Sun, Y. D., Joachimski, M. M., Wignall, P. B., et al., 2012. Lethally Hot Temperatures during the Early Triassic Greenhouse. Science, 338: 366-370 doi: 10.1126/science.1224126
[101] Szabó, I., Kovács, S., Lelkes, G. Y., et al., 1980. Stratigraphic Investigation of a Pelsonian-Fassanian Section at Felsõörs (Balaton Highland, Hungary). Rivista Italiana di Paleontologia e Stratigrafia, 85: 789-806
[102] Tatge, U., 1956. Conodonten aus dem Germanischen Muschelkalk. Paläontologische Zeitschrift, 30: 108-127 doi: 10.1007/BF03041876
[103] Tong, J. N., Chu, D. L., Liang, L., et al., 2019. Triassic Integrative Stratigraphy and Timescale of China. Science China Earth Sciences, 62(1): 189-222. https://doi.org/10.1007/s11430-018-9278-0
[104] Tozer, E. T., Calon, T. J., 1990. Triassic Ammonoids from Jabal Safra and Wadi Alwa, Oman, and Their Significance. In: Robertson, A. H. F., Searle, M. P., Ries, A. C., eds., The Geology and Tectonics of the Oman Region. Geological Society of London Special Publication, 49: 203-211
[105] Trammer, J., 1971. Middle Triassic (Muschelkalk) Conodonts from the SW Margin of the Holy Cross Mts. Acta Geologica Polonica, 21: 379-386 http://geojournals.pgi.gov.pl/agp/article/view/10149
[106] Trammer, J., 1975. Stratigraphy and Facies Development of the Muschelkalk in the South-Western Holy Cross Mts. Acta Geologica Polonica, 25: 179-216 http://dialnet.unirioja.es/servlet/articulo?codigo=265509
[107] Waagen, W., Diener, C., 1895. Untere Trias. In: Mojsisovics, E., von Waagen, W., Diener, C., eds., Entwurf einer Gliederung der Pelagischen Sedimente des Trias-Systems. Sitzungsberichte Akademie Wissenschaft Wien, Mathematische-Naturwissenschaftliche Klasse, 104: 1271-1302
[108] Wang, C., Wang, Z., 1976. Triassic Conodonts in the Mount Jolmo Lungma Region. In: Xizang Scientific Expedition Work-team of Chinese Academy of Sciences, ed., A Report of Scientific Expedition in the Mount Jolmo Lungma Region 1966-1968 (Paleontology). Science Press, Beijing. 387-424 (in Chinese)
[109] Wang, H., Wang, X., Li, R., et al., 2005. Triassic Conodont Succession and Stage Subdivision of the Guandao Section, Bianyang Luodian. Acta Palaentologica Sinica, 44: 611-626 http://europepmc.org/abstract/cba/599676
[110] Wignall, P. B., 2015. The Worst of Times: How Life on Earth Survived Eighty Million Years of Extinctions. Princeton University Press, Princeton
[111] Yan, C. B., Jiang, H. S., Lai, X. L., et al., 2015. The Relationship between the "Green-Bean Rock" Layers and Conodont Chiosella Timorensis and Implications on Defining the Early-Middle Triassic Boundary in the Nanpanjiang Basin, South China. Journal of Earth Science, 26(2): 236-245. https://doi.org/10.1007/s12583-015-0535-x
[112] Zakharov, Y. D., Popov, A. M., Buryi, G. I., 2005. Unique Marine Olenekian-Anisian Boundary Section from South Primorye, Russian Far East. Journal of China University of Geosciences, 16: 219-230 http://qikan.cqvip.com/Qikan/Article/Detail?id=20484082
[113] Zawidzka, K., 1975. Conodont Stratigraphy and Sedimentary Environment of the Muschelkalk in Upper Silesia. Acta Geologica Polonica, 25: 217-245 http://www.researchgate.net/publication/286780854_Conodont_stratigraphy_and_sedimentary_environment_of_the_Muschelkalk_in_Upper_Silesia