Álvarez, L.W., Álvarez, W., Asaro, F., Michel, H.V. (1980). Extraterrestrial cause for the Cretaceous-Tertiary extinction. Science, 208 (4448): 1095-1108. https://doi.org/10.1126/science.208.4448.109.
Álvarez, W., Álvarez, L.W., Asaro, F., Michel, H.V. (1982). Current status of the impact theory for the terminal Cretaceous extinction. En: Silver, L.T., Schultz, P.H., Geological Implications of Impacts of Large Asteroids and Comets on the Earth. Special Paper, 190. Geological Society of America, Boulder, Colorado, 305-315.
Ardèvol, L., Klimowitz, J., Malag_on, J., Nagtegaal, P.J.C. (2000). Depositional sequence response to foreland deformation in the upper Cretaceous of the Southern Pyrenees, Spain. AAPG Bulletin, 84 (4): 566-587. https://doi.org/10.1306/C9EBCE551735-11D7-8645000102C1865D.
Batten, D.J., Zavattieri, A.M., Collinson, M.E. (2011). Megaspores from the upper Maastrichtian of the eastern Spanish Pyrenees and their biostratigraphic, palaeogeographic and palaeoenvironmental significance. Review of Palaeobotany and Palynology, 167 (1-2): 156-172. http://doi.org/10.1016/j.revpalbo.2011.08.002.
Batten, D.J., Dutta, R.J. (1997) Ultrastructure of exine of gymnospermous pollen grains from Jurassic and basal Cretaceous deposits in Northwest Europe and implication for botanical relationships. Review of Paleobotany and Palynology, 99: 25-54. http://doi.org/10.1016/S0034-6667(97)00036-S.
Belsky, C.Y., Boltenhagen, E.G., Potonié, R. (1965). Sporae dispersae der Oberen Kreide von Gabun, Äquatoriales Afrika. Paläontologische Zeitschrift, 39 (1-2): 72-83.
Bercovici, A., Pearson, D.A., Nichols, D.J., Wood, J. (2009). Biostratigraphy of selected K/T boundary sections in southwestern North Dakota, USA: toward a refinement of palynological identification criteria. Cretaceous Research, 30: 632-658. http://doi.org/10.1016/j.cretres.2008.12.007.
Bercovici, A., Vadja V., Pearson, D., Villanueva-Amadoz, U., Kline, D., (2012). Palynostratigraphy of John’s Nose, a new Cretaceous-Paleogene boundary section in southwestern North Dakota, US. Palynology, 36: 36-47. http://doi.org/10.1080/01916122.2012.678695
Bergard, R.D. (1974). Palynology of the Hell Creek Formation (Maestrichtian) in South-Central Dakota, USA (Unpubl. PhD thesis), University of Minnesota, 454.
Brusatte, S.L., Butler, R.J., Barrett, P.M., Carrano, M.T., Evans, D.C., Lloyd, G.T., Mannion, P.D., Norell, M.A., Peppe, D.J., Upchurch, P., Williamson, T.E. (2015). The
extinction of the dinosaurs. Biological Reviews, 90: 628-642. https://doi.org/10.1111/brv.12128.
Canudo, J.I., Oms, O., Vila, B., Galobart, A., Fondevilla, V., Puértolas-Pascual, E., Selles, A.G., Cruzado-Caballero, P., Dinares-Turell, J., Vicens, E., Castanera, D., Company, J., Burrel, L., Estrada, R., Marmi, J., Blanco, A. (2016). The upper Maastrichtian dinosaur fossil record from the southern Pyrenees and its contribution to the topic of the Cretaceous-Palaeogene mass extinction event. Cretaceous Research, 57: 540-551. https://doi.org/10.1016/j.cretres.2015.06.013.
Cascales-Miñana, B., Cleal, C.J. (2014). The plant fossil record reflects just two great extinction events. Terra Nova, 26 (3): 195-200. http://doi.org/10.1111/ter.12086
Chenet, A.L., Courtillot, V., Fluteau, F., G_erard, M., Quidelleur, X., Khadri, S.F.R., Subbarao, K.V., Thordarson, T. (2009). Determination of rapid Deccan eruptions across the Cretaceous-Tertiary boundary using paleomagnetic secular variation: 2. Constraints from analysis of eight new sections and synthesis for a 3500-m thick composite section. Journal of Geophysical Research: Solid Earth, 114 (B6). https://doi.org/10.1029/2008JB005644
Christenhusz, M.J.M., Reveal, J.L., Farjon, A., Gardner, M.F., Mill, R.R., Chase, M.W. (2011). A new classification and linear sequence of extant gymnosperms. Phytotaxa, 19: 55-70.
Christopher, R.A., Prowell, D.C. (2002). A palynological biozonation for the Maastrichtian Stage (Upper Cretaceous) of South Carolina, USA. Cretaceous Research, 23: 639-669. DIO: 10.1006/cres.2002.1029.
Couper, RA. 1953. Upper Mesozoic and Cainozoic spores and pollen grains. New Zealand Geological Survey Palaeontological Bulletin, 22: 1-77.
Cruzado-Caballero, P., Pereda-Suberviola, X., Ruiz-Omeñaca, J.I. (2010). Blasisaurus canudoi gen, et sp. nov., a new lambeosaurine dinosaur (Hadrosauridae) from the Latest Cretaceous of Arén (Huesca, Spain). Canadian Journal of Earth Science, 47 (12): 1507-1517.
Cruzado-Caballero,P., Puértolas-Pascual, E., Canudo, J.I., Castanera, D., Gasca, J. M., Moreno-Azanza., M. (2012) New hadrosaur remains from the Late Maastrichtian of Huesca (NE Spain). Fundamental. 10th EAVP meeting. (Fundación Conjunto Paleontológico de Teruel-Dinópolis, ed.). Teruel 20: 45–48.
Cruzado-Caballero, P., Ruiz-Omeñaca, J.I., Gaete, R., Riera, V., Oms, O., Canudo, J.I. (2013). A new hadrosaurid dentary from the latest Maastrichtian of teh Pyrenees (north Spain) and the high diversity of the duck-billed dinosaurs of the Ibero-Armorican Realm at the very end of the Cretaceus. Historical Biology, 26: 619-630. http://doi.org/10.1080/08912963.2013.822867.
Csiki-Sava, Z., Vremir, M., Vasile, S., Brusatte, S. L., Dyke, G., Naish, D., Norell, M. A., Totoïamu, Radu. (2015). The East Side Story - The Transylvanian latest Cretaceous continental vertebrate record and its implications for understanding Cretaceous Paleogene boundary events, Cretaceous Research, 57: 662-698. http://dx.doi.org/10.1016/j.cretres.2015.09.003
Cuevas, J.L. (1992). Estratigrafía del «Garumniense» de la Conca de Tremp. Prepirineo de Lérida. Acta Geológica Hispánica, 27: 95-108.
Daley, J.R., Jolley, W.D. (2015). What was the nature and role of Normapolles angiosperms? A case study form the earliest Cenozoic of Eastern Europe. Palaeogeography, Palaeoclimatology, Palaeoecology, 418: 141-149. http://doi.org/10.1016/j.palaeo.2014.10.014.
D'Hondt, S. (2005). Consequences of the Cretaceous/Paleogene mass extinction for marine ecosystems. Annual Review of Ecology, Evolution, and Systematics 36: 295-317. https://doi.org/10.1146/annurev.ecolsys.35.021103.105715.
Díez-Canseco, D., Arz, J.A., Benito, M.I., Díaz-Molina, M., Arenillas, I. (2014). Tidal
influence in redbeds: a palaeoenvironmental and biochronostratigraphic reconstruction of the Lower Tremp Formation (South-Central Pyrenees, Spain) around the Cretaceous/Paleogene boundary. Sedimentary Geology, 312: 31-49. https://doi.org/10.1016/j.sedgeo.2014.06.008.
Díez-Canseco, D., Buatois, L.A., Mángano, M.G., Díaz-Molina, M., Benito, M.I. (2016). Ichnofauna from coastal meandering channel systems (Upper Cretaceous Tremp Formation, South-Central Pyrenees, Spain): delineating the fluvial-tidal transition. Journal of Paleontology, 90 (2): 250-268. https://doi.org/10.1017/jpa.2016.12.
Elsik, W.C. (1968). Palynology of a Paleocene Rocksale Lignite, Milam County, Texas, I. Morphology and taxonomy. Pollen et Spores, 10 (2): 263-314.
Fernández-Marrón, M.T., López-Martínez, N., Fonollá-Ocete, J.F., Valle-Hernández, M.F. (2004). The palynological record across the Cretaceous-Tertiary boundary on differing palaeogeographical settings from the southern Pyrenees, Spain. In: Beaudoin, A.B., Head, M.J. (Eds.), The Palynology and Micropalaeontology of Boundaries. Special Publications 230. Geological Society, London, 243-255. https://doi.org/10.1144/gsl.sp.2004.230.01.12.
Fondevilla, V., Dinarés-Turell, J., Oms, O. (2016). The chronostratigraphic framework of the South-Pyrenean Maastrichtian succession reappraised: implications for basin development and end-Cretaceous dinosaur faunal turnover. Sedimentary Geology, 337: 55-68. https://doi.org/10.1016/j.sedgeo.2016.03.006.
Fondevilla, V., Riera, V., Vila, B., Sellés, A.G., Dinarés-Turell, J., Vicens, E., Gaete, R.,Oms, O., Galobart, Á. (2019). Chronostratigraphic synthesis of the latest Cretaceous dinosaur turnover in south-western Europe. Earth-Science Reviews, 191: 168-189. https://doi.org/10.1016/j.earscirev.2019.01.007.
Friis, E.M. (1983). Upper Cretaceous (Senonian) floral structures of juglandalean affinity containing Normapolles pollen. Review of Palaeobotany and Palynology, 39 (1-2): 161-188. http://doi.org/10.1016/0034-6667(83)90015-5.
Gilabert, V., Arz, J.A., Arenillas, I., Robinson, S.A., Ferrer, D. (2021). Infleunce of the Latest Maastrichtian Warming Event on planktic foraminiferal assemblages and ocean carbonate saturation at Caravaca, Spain. Cretaceous Research, 125. http://doi.org/10.1016/j.cretres.2021.104844
Golovneva, L.B. (2000). The Maastrichtian (Late Cretaceous) climate in the northern hemisphere. Geological Society, London, Special Publications, 181: 43-54. http://doi.org/10.1144/gsl.sp.2000.181.10.05
Gómez-Gras, D., Roigé, M., Fondevilla, V., Oms, O., Boya, S., Remacha, E. (2016). Provenance constrains on the Tremp Formation paleogeography (southern Pyrenees): Ebro Massif vs Pyrenees sources. Cretaceous Research, 57: 414-427. http://doi.org/10.1016/j.cretres.2015.09.010.
Hall, J.W., Norton, N.J. (1967). Palynological evidence of floristic change across the Cretaceous-Tertiary boundary in Eastern Montana (USA). Palaeogeography, Palaeoclimatology, Palaeoecology, 3: 121-131
Herngreen, G.W.F., Chlonova, A.F. (1981). Cretaceous microfloral provinces. Pollen et Spores, 23: 441-557.
Herngreen, G.F.W., Felder, W.M., Kedves, M., Meessen, J.P.M.T. (1986). Micropaleontology of the Maestrichtian in Borehole Bunde, The Netherlands. Review of Palaeobotany and Palynology, 48 (1-3): 1-70. https://doi.org/10.1016/0034-6667(86)90055-2.
Herngreen, G.F.W., Kedves, M., Rovnina, L.V., Smirnova, S.B. (1996). Cretaceous palynofloral provinces: a review. En: Jansonius, J., McGregor, D.C. (Eds.). Palynology: Principles and Applications. ASSP Foundation, Dallas. 1157-1188.
Hickey, L.J. (1981). Land plant evidence compatible with gradual, not catastrophic, change at the end of the Cretaceous. Nature, 292: 529-531.
Hofmann, C.C., Odgereel, N., Seyfullah, L.J. (2021) The occurrence of pollen Sciadopityaceae luerss. through time. Fossil Imprint, 77: 271-281. DOI 10.37520/fl.2021.019
Hotton, C.l. (2002). Palynology of the Cretaceous-Tertiary boundary in central Montana: evidence for extraterrestrial impact as a cause for the terminal Cretaceous extinction. En: Hartman, JH., Johnson, K.R., Nichols, D.J. (Eds.) The Hell Creek Formation and the Cretaceous-Tertiary Boundary in the Northern Great Plains: An integrated Continental Record of the End of the Cretaceous. Geological Society of America Special Papers, 361. 191-216. http://doi.org/10.1130/0-8137-2361-2.473.
Hunter, S.J., Valdes, P.J., Haywood, A.M., Markwick, P.J. (2008). Modelling Maastrichtian climate: investigating the role of geography, atmospheric CO2 and vegetation. Climate of the Past, 4: 981-1019. http://doi.org/10.5194/cpd-4-981-2008.
Jablonski, D. (1994). Extinctions in the fossil record. Philosophical Transactions of the Royal Society of London. Series B: Biological Sciences, 344 (1307): 11-17. https://doi.org/10.1098/rstb.1994.0045.
Jardiné, S., Magloire, L. (1965) Palynologie et stratigraphie du Crétacé des Bassins du Sénégal et de Côte d’Ivoire. En: Colloque international de micropaleontology. Mémoires du BRGM (Paris), 32. 187-245.
Jarze, D.M. (1977) Aquilapollenites and some Santalalean genera. Grana, 16 (1): 29-39. http://doi.org/10.1080/00173134.1977.11864637
Johnson, K.R., Nichols, D.J., Hartman, J.H. (2002). Hell Creek Formation: A 2001 Synthesis. Geological Society of America Special Paper, 361: 503-510. https://doi.org/10.1130/0-8137-2361-2.503.
Kedves, M. (1995). Upper Cretaceous Spores from Egypt. Szeged, Hungary, p. 87.
Kedves, M. (1996). Plant microfossils from the Upper Cretaceous and Lower tertiary layers of Northern Spain II. Plant Cell Biology and Development, 7: 13-36.
Kedves, M. (2000). Palynological investigations on Hungarian Neogene lignites. Plant Cell Biology and Development, 11: 58-78.
Kedves, M., Solé De Porta, N., De Porta, J., Civis, J. (1985). Estudio palinológico de los sedimentos maastrichtienses del Barranco de la Posa (Prepirineo, Lérida, España). Anales de la Asociación de Palinólogos de Lengua Española, 2: 247-253.
Kedves, M., Herngreen, G.F.W. (1980). Palynology of the stratotype of the Maestrichtian and the Gulpen Formation, Enci section, Maastricht, The Netherlands. Pollen et Spores, 22 (3-4): 483-544.
Kershaw, P., Wagstaff, B. (2021). The southern conifer family Araucariaceae: history, status, and value for paleoenvironmental reconstruction. Annual Review of Ecology Systems, 32: 397-414.
Kramer, K.U., Green, P.S., Kubitzki, K. (1990). The Families and Genera of Vascular Plants: Pteridophytes and Gymnosperms, 1. Springer.
Kremp, G.O.W., Spackman, W., Traverse, A., Ames, H.T. (1967). Catalog of fossil spores and pollen Volume 26: Permian-Triassic and Mesozoic Spores and Pollen. University Park, Pennsilvania.
Leymerie, A. (1868). Présence de garumnien en Espagne. Bulletin de la Sociéte Géologique de France, 25 (2): 906-911.
López-Martínez, N., Fernández-Marrón, M.T., Valle, M.F. (1999). The succession of Vertebrates and Plants across the Cretaceous-Tertiary boundary in the Tremp Formation, Áger valley (South-central Pyrenees, Spain). Geobios, 32 (4): 617-627. https://doi.org/10.1016/S0016-6995(99)80011-4.
López-Martínez, N., Cnudo, J.I., Ardèvol, L., Pereda-Suberbiola, .X., Orue-Etxebarria, X., Cuenca-Bescos, G., Ruíz-Omeñaca, J.I., Murelaga, X., Feist, M. (2001). New dinosaur sites correlated with Upper Maastrichtian pelagic deposits in the Spanish Pyrenees: implications for the dinosaur extinction pattern in Europe. Cretaceous Research, 22: 41-61. DOI: 10.1006/cres.2000.0236
López-Martínez, N., Arribas, M.E., Robador, A., Vicens, E., Ardèvol, L. (2006). Los carbonatos danienses (Unidad3) de la Formación Tremp (Pirineos sur-centrales): paleogeografía y relación con el límite Cretácico-Terciario. Revista de la Sociedad Geológica deEspaña, 19: 213–255.
Lyson, T.R., Longrich, N.R. (2011). Spatial niche partitioning in dinosaurs from the latest Cretaceous (Maastrichtian) of North America. Proceedings of the Royal Society B: Biological Sciences, 278 (1709): 1158-1164. https://doi.org/10.1098/rspb.2010.1444.
Manchester, S.R. (1989). Systematics and fossil history of the Ulmaceae. En: Evolution, Systematics and Fossil History of the Hamamelidae. Volume 2 “Higher” Hamamelidae (Crane, P.R., Blackmore, S. Eds.). Clarendon Press, Oxford, 221-251.
Marmi, J., Martín-Closas, C., Fernández-Marrón, M.T., Gómez, B. (2015). A riparian
plant community from the upper Maastrichtian of the Pyrenees (Catalonia, NE Spain). Cretaceous Research, 56: 510-529. https://doi.org/10.1016/ j.cretres.2015.06.004.
Marmi, J., Martín-Closas, C., Fernández-Marrón, M.T., Vicente, A., Gómez, B. (2016). Latest Cretaceous plant landscapes from northeastern Iberia. In: Khosla, A., Lucas, S.G. (Eds.), Cretaceous Period: Biotic Diversity and Biogeography, New Mexico Museum of Natural History and Science Bulletin, 71: 215-229.
Martínez de Espronceda, P., Rodríguez-Barreiro, I., Pérez-Pueyo, M., Bádenas, B., Canudo, I., Puértolas-Pascual, E., Santos, A. A., Diez, J. B. 2023. Palynostratigraphical review of the K-Pg boundary from the Ibero-Armorican Island: New data from the Maastrichtian dinosaur outcrop Veracruz 1 (Pyrenees, NE Iberian Peninsula). Cretaceous Research, 154: https://doi.org/10.1016/j.cretres.2023.105757
Mayr, C., Thümmler, B., Windmaier, G., Altenbach, A.V., K€ohler, H., Tiedemann, R. (1999). New data about the Maastrichtian/Danian transition in the Southern Pyrenees (Áger Basin, Catalonia, Spain). Revista Espa~nola de Micropaleontología, 31 (3): 357-368.
Médus, J. (1970). Premiére contribution a la palynologie stratigraphique du Crétacé Supérieur du sud-est de la France et du nord-est de l'Espagne. Paleobiologie Continentale, 1 (1): 3-14.
Médus, J. (1972). Palynological zonation of the Upper Cretaceous in southern France and northeastern Spain. Review of Palaeobotany and Palynology, 14: 287-295. https://doi.org/10.1016/0034-6667(72)90022-X.
Médus, J., Feist, M., Rocchia, R., Batten, D.J., Boclet, D., Colombo, F., Tambareau, Y., Villatte, J. (1988) Prospects for recognition of the palynological Cretaceous/Tertiary boundary and an iridium anomaly in nonmarine facies of the Eastern Spanish Pyrenees: A preliminary report. Newsletters of Stratigraphy, 18: 123-138. https://doi.org/10.1127/nos/18/1988/123
Méon, H., Odin, G.S., Antonescu, E., Siegl-Farkas, A. (2001). Synthetic data on spores and pollen across the Campanian-Maastrichtian boundary at Tercis les Bains (SW France). En: The Campanian-Maastrichtian Stage Boundary Characterization at Tercis les Bains (France) and Correlation with Europe and Other Continents (Odin, G.S. Ed.) IUGS Special Publication Series, 36; Developments in Palaeontology and Stratigraphy Series, Volume 19, Elsevier Sciences Publications, Amsterdam, 210-216. http://doi.org/10.1016/S0920-5446(01)80023-6.
Mey, P.H.W., Nagtegaal, P.J.C., Roberti, K.J., Hartevelt, J.J.A. (1968). Lithostratigraphic subdivision of Post-Hercynian deposits in the South-Central Pyrenees, Spain. Leidse Geologische Mededelingen, 41: 221-228.
Miller, K.G., Kominz, M.A., Browning, J.V., Wright, J.D., Mountain, G.S., Katz, M.E., Sugarman, P.J., Cramer, B.S., Christie-Blick, N., Peka, S.F. (2005). The Phanerozoic record of global sea-level change. Science 310, 1293-1298. https://doi.org/10.1126/science.1116412.
Mishra, S., Kadukothanahalli-Nagaraju, S.P., Bansal, M., Prasad, V. (2019). The Startigraphic, Palaeobiogeographic and Phylogenetic Significance of Aquilapollenites. Open Journal of Geology, 9: 597-600. http://doi.org/10.4236/ojg.2019.910051
Molina, E. (2004). Micropaleontología. Prensas de la Universidad de Zaragoza, Zaragoza, 517.
Nichols, D.J. (2002). Palynolopgy and palynostratigraphiy of the Hell Creek Formation in North Dakota: a microfossil record of plants at the end of Cretaceous time. En: The Hell Creek Formation and the Cretaceous-Tertiary Boundary in the Northern Great Plains: An integrated Continental Record of the End of the Cretaceous (Hartman, J.H., Johnson, K.R., Nichols, D.J., Eds.). Geological Society of America Special Papers, Boulder, 393-456. http://doi.org/10.1130/0-8137-2361-2.393.
Nichols, D.J., Johnson, K.R. (2008). Plants and the K-T Boundary. Cambridge University Press, Cambridge.
Oms, O., Fondevilla, V., Riera, V., Marmi, J., Vicens, E., Estrada, R., Anadón, P., Vila, B., Galobart, À. (2016). Transitional environments of the lower Maastrichtian South-Pyrenean Basin (Catalonia, Spain): The Fumanya Member tidal flat. Cretaceous Research, 57: 428-442. http://dx.doi.org/10.1016/j.cretres.2015.09.004
Pearson, D.A., Schaefer, T., Johnson, K.R., Nichols, D.J., Hunter, J.P. (2002). Vertebrate biostratigraphy of the Hell Creek formation in southwestern North Dakota and northwestern South Dakota. Geological Society of America Special Paper, 361: 145-167.
Pereda-Suberbiola, X., Canudo, J.I., Cruzado-Caballero, P., Barco, J.L., López-Martínez, N., Oms, O., Ruiz-Ome~naca, J.I. (2009). The last hadrosaurid dinosaurs of Europe: a new lambeosaurine from the Uppermost Cretaceous of Aren (Huesca, Spain). Comptes Rendus Palevol, 8 (6): 559-572. https://doi.org/10.1016/j.crpv.2009.05.002.
Pérez-Pueyo, M., 2023. Contributions of the Tremp Fm (upper Maastrichtian) in Ribagorza (Aragonese Pyrenees, Huesca) to the knowledge of the finicretaceous vertebrate communities of the Ibero-Armorican island. Universidad de Zaragoza.
Pérez-Pueyo, M., Gilabert, V., Moreno-Azanza, M., Puertolas-Pascual, E., Bádenas, B., Canudo, J.I. (2019). Late Maastrichtian fossil assemblage of Veracruz 1 site (Beranuy, NE Spain): wildfires and bones in a transitional environment. En: Torcida, F., Canudo, J.I., Pereda-Suberbiola, X., Huerta, P. (Eds.), VIII Jornadas Internacionales sobre Paleontología de Dinosaurios y su Entorno. Salas de los Infantes (Burgos): 111-113.
Pérez-Pueyo, M., Cruzado-Caballero, P., Moreno-Azanza, M., Vila, B., Castanera, D., Gasca, J.M., Puértolas-Pascual, E., Bádenas, B., Canudo, J.I. (2021a). The tetrapod fossil record from the uppermost Maastrichtian of the Ibero-Armorican Island: an integrative review based on the outcrops of the western Tremp Syncline (Aragón, Huesca Province, NE Spain). Geoscience, 11 (4): 162. http://doi.org/10.3390/geosciences11040162.
Pérez-Pueyo, M., Puértolas-Pascual, E., Moreno-Azanza, M., Cruzado-Caballero, P., Gasca, J.M., Núñez-Lahuerta, C., Canudo, J.I., (2021b). First record of a giant bird (Ornithuromorpha) from the uppermost Maastrichtian of the Southern Pyrenees, northeast Spain. Journal of Vertebrate Paleontology, 41 (1): 190-210. https://doi.org/10.1080/02724634.2021.1900210.
Peyrot, D., Barroso-Barcenilla, F., Cambra-Moo, O. (2013). Paleoecology of the late Campanian/early Maastrichtian Fossil-Lagerstätte of “Lo Hueco” (Cuenca, Spain): Palynological insights. Palaeogeography, Palaeoclimatology, Palaeoecology, 387: 27-39. http://doi.org/10.1016/j.palaeo.2013.07.005
Peyrot, D., Barrón, E., Pereda-Suberbiola, X., Company, J. (2020). Vegetational composition of the Upper Cretaceous vertebrate site of Chera (Valencia, Spain) and its significance in mosaic vegetation from southwestern Europe. Cretaceous Research, 106: 104254. http://doi.org/10.1016/j.cretres.2019.104254.
Potonié, R. (1966). Synopsis der Gattungen der Sporae Dispersae. IV. Teil: Nachträge zu allen Gruppen (Turmae). Paleobotanist, 15 (1-2): 55-58.
Potonié, R. (1975). Synopsis der Gattungen der Sporae Dispersae. VII. Teil: Nachträge zu allen gruppen (Turmae). Fortschritte in der Geologie von Rheinland und Westfalen. Contributions to Sporology, 25. 23-150.
Puértolas-Pascula, E., Canudo, J.I., Cruzado-Caballero, P. (2011). A New Crocodylian from the Late Maastrichtian of Spain: Implications for the Initial Radiation of Crocodyloids. PLoS ONE, 6 (6): e20011. DOI: 10.11371/journal.pone.0020011
Puértolas-Pascual, E., Blanco, A., Brochu, C.A., Canudo, J.I., (2016). Review of the Late Cretaceous-early Paleogene crocodylomorphs of Europe: extinction patterns across the K-PG boundary. Cretaceous Research, 57: 565-590. https://doi.org/10.1016/j.cretres.2018.02.016.
Puértolas-Pascual, E., Arenillas, I., Arz, J.A., Calvín, P., Ezquerro, L., García-Vicente, C., Pérez-Pueyo, M., Sánchez-Moreno, E.M., Villalaín, J.J., Canudo, J.I. (2018). Chronostratigraphy and new vertebrate sites from the upper Maastrichtian of Huesca (Spain), and their relation with the K/Pg boundary. Cretaceous Research, 89: 36-59. https://doi.org/10.1016/j.cretres.2018.02.016.
Puértolas-Pascual, E., Canudo J.I., Moreno-Azanza, M. (2019). The eusuchian crocodylomorph Allodaposuchussubjuniperus sp. nov., a new species from the latest Cretaceous (upper Maastrichtian) of Spain. Historical Biology, 26: 91–109.
Pujalte, V., Schmitz, B., (2005). Revisión de la estratigrafía del Grupo tremp (“Garumniense”, Cuenca de Tremp-Graus, Pirineos meridionales). Geogaceta, 38: 79-82.
Pujalte, V., Schmitz, B., Baceta, J.I. (2014). Sea-level changes across the Paleocene-Eocene interval in the Spanish Pyrenees, and their possible relationship with North Atlantic magmatism. Palaeogeography, Palaeoclimatology, Palaeoecology, 393: 45-60. http://doi.org/10.1016/j.palaeo.2014.10.0165
Riera, V., Oms, O., Gaete, R., Galobart, Á. (2009). The end-Cretaceous dinosaur succession in Europe: the Tremp Basin record (Spain). Palaeogeography, Palaeoclimatology, Palaeoecology, 283 (3-4), 160-171. https://doi.org/10.1016/j.palaeo.2009.09.018.
Rosell, J., Linares, R., Llompart, C. (2001). El “garumniense” prepirenaico. Revista de la Sociedad Geológica de España 14 (1-2), 47-56.
Self, S., Widdowson, M., Thordarson, T., Jay, A.E. (2006). Volatile fluxes during flood basalt eruptions and potential effects on the global environment: a Deccan perspective. Earth and Planetary Science Letters, 48 (1-2): 518-532. https://doi.org/10.1016/j.epsl.2006.05.041.
Sepúlveda, J., Wendler, J.E., Summons, R.E., Hinrich, K. (2009). Rapid resurgence of marine productivity after the Cretaceous-Paleogene mass extinction. Science, 326: 129-132. http://doi.org/10.1126/science.1176233
Simpson, M.G. (2019). Plant systematics. Academic Press, China.
Srivastava, S.K. (1972). Some spores and pollen from teh Paleocene Oak Hill member of the Naheola Formation, Alabama (USA). Review of Paleobotany and Palynology, 14: 217-285.
Srivastava, S.K. (1981). Evolution of Upper Cretaceous phytogeoprovinces and ther pollen flora. Review of Palaeobotany and Palynology, 35: 155-173.
Srivastava, S.K., Rouse, G.E. (1970). Systematic revisión of Aquilapollenites Rouse 1957. Canadian Journal of Botany, 48 (9): 1591-1601. http://doi.org/10.1139/b70-235
Stüben, D., Kramar, U., Berner, Z.A., Meudt, M., Keller, G., Abramovich, S., Adatte, T., Hambach, U., Stinnesbeck, W. (2003). Late Maastrichtian paleoclimatic and paleoceanographic changes inferred from Sr/Ca ratio and stable isotopes. Palaeogeography, Palaeoclimatology, Palaeoecology, 199: 107-127. DOI: 10.1016/S0031-0182(03)00499-1
Sweet, A.R., Braman, D.R. (1992). The K-T boundary and the contiguous strata in western Canada: interactions between paleoenvironments and palynological assemblages. Cretaceous Research, 13: 31-79. http://doi.org/10.1016/0195-6671(92)90027-N
Sweet, A.R., Braman, D.R. (2001). Cretaceous-tertiary palynofloral perturbations and extinctions within the Aquilapollenites Phytogeographic Province. Canadian Journal of Earth Sciences, 38: 249-269. http://doi.org/10.11139/e00-024
Tekleva, M., Polevova, S., Bugdaeva, E., Markevich, V., Sun, G. (2020). Three Aquilapollenites species from the late Maastrichtian of China: New data and comparisons. Review of Palaeobotany and Palynology, 282: 104288. http://doi.org/10.1016/j.revpalbo.2020.104288
Torices, A., Fernández-Marrón, M.T., Fonollá, F., López-Martínez, N., 2012. Palynological characterization of a transgressive episode intransitional deposits in the Cretaceous Aren and Tremp formations (South-central Pyrenees, Spain. Neues Jahrbuch für Geologie und Paläontologie – Abhandlungen, 266 (2): 159-172. https://doi.org/10.1127/0077-7749/2012/0291.
Traverse A (2007) Paleopalynology. Dordrecht, Países Bajos
Tschundy, B.D., Leopold, E.B. (1971). Aquilapollenites (Rouse) Funkhouser, selected Rocky Mountain taxa and their stratigraphic ranges. Geological Society of America, Special Paper, 127: 113-167.
Vajda, V., Raine, J.I., Hollis, C.J. (2001). Indication of global deforestation at the Cretaceous-Tertairy boundary by New Zealand fern spike. Science, 294: 1700-1702.
Vadja, V., Raine, J.I. (2004). Pollen and spores in marine Cretaceous/Tertiary boundary sediments at mid-Waipara River, North Canterbury, New Zealand. New Zealand Journal of Geology and Geophysics, 46: 255-273.
Vadja, V. (2012). Fungi, a driving forcé in normalization of the terrestrial carbón cycle following teh end-Cretaceous extinction. En: Earth and Life Global Biodiversity, Extinction Intervals and Biogeographic Perturbations Through Time. (Talent, J.A., Ed.). Springer, Science, Dordrecht, 132-144.
Vajda, V., Bercovici, A. (2014). The global vegetation pattern across the CretaceousePaleogene mass extinction interval: a template for other extinction events. Global and Planetary Change, 122: 29-49. https://doi.org/10.1016/j.gloplacha.2014.07.014.
Vera Torres J.A. 1994. Estratigrafía: principios y métodos. Rueda. Madrid.
Vicente, A., Martín-Closas, C., Arz, J.A., Oms, O. (2015). Maastrichtian-basal Paleocene charophyte biozonation and its calibration to the Global Polarity Time Scale in the southern Pyrenees (Catalonia, Spain). Cretaceous Research, 52: 268-285. http://dx.doi.org/10.1016/j.cretres.2014.10.004
Vila, B., Sellés, A. G., Brusatte, L. S. (2016). Diversity and faunal changes in the latest Cretaceous dinosaur communities of southwestern Europe. Cretaceous Research, 57: 552-564. http://dx.doi.org/10.1016/j.cretres.2015.07.003
Vila, B., Sellés, A., Moreno-Azanza, M., Razzolini, N.L., Gil-Delgado, A., Canudo, J.I., Galobart, Á. (2022). A titanosaurian sauropod with Gondwanan affinities in the latest Cretaceous of Europe. Nature Ecology & Evolution, 6: 288-296. https://doi.org/10.1038/s41559-021-01651-5.
Villalba-Breva, S., Martín-Closas, C., Marmi, J., Gomez, B., Fernández-Marrón, M.T. (2012). Peat-forming plants in the Maastrichtian coals of the Eastern Pyrenees. Geologica Acta, 10 (2): 189-207. https://doi.org/10.1344/105.000001711.
Villalba-Breva, S., Marmi, J., Gomez, B., Daviero-Gomez, V., Martín-Closas, C., Fernández-Marrón, M.T. (2015). Plant taphonomy and palaeoenvironment from the Upper Cretaceous of Isona, Tremp Basin, southern Pyrenees, Catalonia, Spain. Cretaceous Research, 54: 34-49. https://doi.org/10.1016/j.cretres.2014.10.007.
Villanueva-Amandoz, U., Pons, D., Diez, J.B., Ferrer, J., Sender, L.M., 2010. Angiosperm pollen grains of Sant Jus site (Escucha Formation) from the Albian of the Iberian Range (northeastern Spain). Review of Palaeobotany and Palynology, 162: 362-381. https://doi.org/10.1016/j.revpalbo.2010.02.014.
Waanders, G.L. (1974). Palynology of the Monmouth Group (Maastrichtian) from Monmouth Co., New Jersey, USA (Unpubl. PhD thesis). Michigan State University, 231.
Wilf, P., Johnson, K.R., Huber, B.T. (2003). Correlated terrestrial and marine evidence for global climate changes before mass extinction at the Cretaceouse-Paleogene boundary. Proceedings of the National Academy of Sciences, 100 (2): 599-604. https://doi.org/10.1073/pnas.0234701100.
Wood, G.D., Gabriel, A.M., Lawson, J.C. (1996). Palynological techniques-processing and microscopy. In: Jansonius, J., McGregor, D.C. (Eds.), Palynology: Principles and Applications, 1. American Association of Stratigraphic Palynologists, Dallas, Texas. 29-50.
Zetter, R., Farabee, M.J., Pigg, K.B., Manchester, S.R., DeVore, M.L., Nowak, M.D. (2011). Palynoflora of the late Paleocene silicified shale at Almont, North Dakota, USA. Palynology, 35: 179-211.
Zhang, J., Lenz, O.K., Wang, P., Horning, J. (2021). The Eco-Plant model and its implications on Mesozoic dispersed sporomophs for Bryophytes, Pteridophytes, and Gymnosperms. Review of Palaeobotany and Palynology, 293: 104503. http://doi.org/10.1016/j.revpalbo.2021.104503
Zippi, P.A. (1998). Freshwater algae from the Mattagami Formation (Albian), Ontario: Paleoecology, botanical affinities, and systematic taxonomy. Micropaleontology, 44: 1-78. http://doi.org/10.2307/1485998
No hay comentarios:
Publicar un comentario