Dit instituut is de voortzetting van onderstaande Belgische Geologische Dienst (IRScNB/KBIN-BGD/GSB), meer Departement Paleontologie (IRScNB/KBIN), meer
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Engelse naam: Operational Directorate Earth and History of Life
Overkoepelend instituut: Koninklijk Belgisch Instituut voor Natuurwetenschappen (IRScNB/KBIN), meer
MOG-kernwoorden (8) : Archeologie; Geobiologie; Geochemie; Geofysica; Geologie; Klimaatverandering; Paleontologie; Sedimentmechanica/dynamica
Adres: Vautierstraat 29
1000 Brussel België
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Type: Wetenschappelijk
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1 Directeur: Hoofd van de onderzoeksgroep/afdeling 2 Mariene onderzoeker: Is werkzaam in deze groep en treedt op als (co)auteur in minstens één mariene publicatie in de laatste 5 jaar. 3 Gespecialiseerd personeel: Levert administratieve of technische ondersteuning aan het zeewetenschappelijk onderzoek.
Geassocieerd aan een deelinstituut (18) |
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Deelinstituten (3) |
Top | Personen | Publicaties |
- Koninklijk Belgisch Instituut voor Natuurwetenschappen; Operationele Directie Aarde en Geschiedenis van het Leven; Afdeling Fossiele Invertebraten (IRScNB/KBIN), meer
- Koninklijk Belgisch Instituut voor Natuurwetenschappen; Operationele Directie Aarde en Geschiedenis van het Leven; Afdeling Fossiele Vertebraten (IRScNB/KBIN), meer
- Koninklijk Belgisch Instituut voor Natuurwetenschappen; Operationele Directie Aarde en Geschiedenis van het Leven; Afdeling Micropaleontologie en Paleobotanica (IRScNB/KBIN), meer
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Abstract: |
De Operationele Directie (OD) Aarde en Geschiedenis van het Leven maakt deel uit van het Koninklijk Belgisch Instituut voor Natuurwetenschappen (KBIN) dat in 1846 werd opgericht onder de toenmalige naam, het Koninklijk Natuurhistorisch Museum van België. De groep verricht fundamenteel en toegepast onderzoek in de domeinen van de geologie, paleontologie, bioarcheologie en evolutie van de mens.
Er kunnen drie multidisciplinaire onderzoeksprogramma's onderscheiden worden:
- De onderzoekers van de 'Belgische Geologische Dienst' bestuderen de evolutie van de lithosfeer, de geologische samenstelling van onze omgeving en de minerale en energetische natuurlijke rijkdommen. Ze leveren als federale geologische dienst ook de wetenschappelijke expertise in het kader van EuroGeoSurveys;
- Het onderzoeksprogramma 'Evolutie van de Paleobiosfeer' onderzoekt de evolutie van de biosfeer en de interacties met de geosfeer: biodiversiteit en evolutie van de fossiele fauna en flora, reconstructie van het fossiele milieu en paleoklimatologie;
- De onderzoekers van het onderzoeksprogramma 'Mens en Milieu in het Quartair' bestuderen de fysieke en culturele aspecten van de menselijke evolutie en de interacties tussen de mens en zijn fysieke en biotische omgeving in het verleden. De wetenschappers leveren expertise in het vakgebied van de Archeowetenschappen, gesubsidieerd door de Regio's.
In elk van deze onderzoeksprogramma's komen mariene thema's aan bod:
- Binnen de 'Belgische Geologische Dienst' wordt onderzoek verricht naar de dynamiek van sedimentaire bekkens waarbij onder meer de stratigrafie en sedimentologie van mariene sedimenten bestudeerd worden. Verder zet men in op het reconstrueren van de geologische geschiedenis van natuurrampen (bv. tsunami's) en het reconstrueren van de oceanische geochemische fluctuaties en biotische turnovers;
- In het programma 'Evolutie van de Paleobiosfeer' richt men zich onder andere op de evolutie en de dynamiek van mariene paleo-ecosystemen tijdens kritieke perioden in de geschiedenis van het leven op aarde door de integratie van paleobiologische, geofysische en geochemische informatie. Verder wordt ook de oorsprong en vroege diversificatie van walvisachtigen tijdens het Eoceen onderzocht evenals de evolutie van de fauna van zeezoogdieren (visachtigen, sirenen en zeeroofdieren) in het Noordzeebekken tijdens het Neogeen;
- Het onderzoeksprogramma 'Mens en Milieu in het Quartair' verricht onderzoek naar de reconstructie van laaggelegen kustzones in het Pleistoceen en Holoceen. Ten slotte wordt eveneens gefocust op de studie van de evolutie van de visexploitatie en -handel.
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Publicaties (226) |
Top | Personen | Instituten |
( 209 peer reviewed ) opsplitsen filter
- Bennion, R.F.; Maxwell, E.E.; Lambert, O.; Fischer, V. (2024). Craniodental ecomorphology of the large Jurassic ichthyosaurian Temnodontosaurus. J. Anat. 244(1): 22-41. https://dx.doi.org/10.1111/joa.13939, meer
- Bisconti, M.; Bosselaers, M.; Locatelli, C.; Carnevale, G.; Lambert, O. (2024). The tympanoperiotic complex of the blue whale, Balaenoptera musculus. Anat. Rec. Early View: 30. https://dx.doi.org/10.1002/ar.25393, meer
- de Winter, N.J.; Tindall, J.; Johnson, A.L.A.; Goudsmit-Harzevoort, B.; Wichern, N.; Kaskes, P.; Claeys, P.; Huygen, F.; van Leeuwen, S.; Metcalfe, B.; Bakker, P.; Goolaerts, S.; Wesselingh, F.P.; Ziegler, M. (2024). Amplified seasonality in western Europe in a warmer world. Science Advances 10(20): eadl6717. https://dx.doi.org/10.1126/sciadv.adl6717, meer
- Dekoninck, M.; Deforce, K.; Kaal, J.; Out, W.A.; Van Thienen, V.; Buyse, F.; Kubiak-Martens, L.; Tack, P.; Vincze, L.; Lycke, S.; De Clercq, W. (2024). Fuelling the Roman salt industry. Developing a new multiproxy approach to identify peat fuel from archaeological combustion residue. J. Archaeol. Sci. 161: 105892. https://dx.doi.org/10.1016/j.jas.2023.105892, meer
- Bennion, R.F.; MacLaren, J.A.; Coombs, E.J.; Marx, F.G.; Lambert, O.; Fischer, V. (2023). Convergence and constraint in the cranial evolution of mosasaurid reptiles and early cetaceans. Paleobiology 49(2): 215-231. https://dx.doi.org/10.1017/pab.2022.27, meer
- Bianucci, G.; Lambert, O.; Urbina, M.; Merella, M.; Collareta, A.; Bennion, R.; Salas-Gismondi, R.; Benites-Palomino, A.; Post, K.; de Muizon, C.; Bosio, G.; Di Celma, C.; Malinverno, E.; Pierantoni, P.; Villa, I.M.; Amson, E. (2023). A heavyweight early whale pushes the boundaries of vertebrate morphology. Nature (Lond.) 620(7975): 824-829. https://dx.doi.org/10.1038/s41586-023-06381-1, meer
- Collareta, A.; Bosselaers, M.; Holroyd, P.A.; Dineen, A. (2023). A forgotten cirripedological gem: a new species of whale barnacle of the genus Cetopirus from the Pleistocene of the United States West Coast. TRE 114(SI 1-2): 41-48. https://dx.doi.org/10.1017/S1755691022000214, meer
- De Schutter, P.J.; Everaert, S.; Gale, A.; Van Remoortel, W.; De Borger, G.; Sakala, J.; Koutecky, V.; Hoedemakers, K. (2023). An exceptional concentration of marine fossils associated with wood-fall in the Terhagen Member (Boom Formation; Schelle, Belgium), Rupelian of the southern North Sea Basin. Geol. Belg. 26(1-2): 41-78. https://dx.doi.org/10.20341/gb.2023.003, meer
- Deckers, J.; De Koninck, R.; Everaert, S.; Adriaens, R.; Verhaegen, J. (2023). Granulometry, carbonate and glauconite content as stratigraphic tools to distinguish the Kiel Member and lower Antwerpen Member (Berchem Formation) in the City of Antwerp area (Belgium). Geol. Belg. 26(3-4): 127-141. https://dx.doi.org/10.20341/gb.2023.008, meer
- Everaert, S.; Deckers, J.; Munsterman, D.; Wesselingh, F.P. (2023). The Pliocene–Pleistocene transition in the subsurface of the Dutch-Belgian border region: insights from borehole Huijbergen. Geol. Belg. 26(1-2): 25-40. https://dx.doi.org/10.20341/gb.2023.001, meer
- Goolaerts, S. (2023). On the first Belgian record of the Eifelian (Middle Devonian) ammonoid cephalopod Subanarcestes (Suborder Anarcestina). Geol. Belg. 26(1-2): 93-100. https://dx.doi.org/10.20341/gb.2023.004, meer
- Goolaerts, S.; Mottequin, B. (2023). A Santonian record of the nautilid cephalopod Angulithes westphalicus (Schlüter, 1872) from the subsurface of the Campine, north-east Belgium, with comments on regional lithostratigraphic problems. Geol. Belg. 26(1-2): 101-113. https://dx.doi.org/10.20341/gb.2023.007, meer
- Laeta, M.; Oliveira, J.A.; Siciliano, S.; Lambert, O.; Jensen, F.H.; Galatius, A. (2023). Cranial asymmetry in odontocetes: a facilitator of sonic exploration? Zoology (Jena) 160: 126108. https://dx.doi.org/10.1016/j.zool.2023.126108, meer
- Laibl, L.; Servais, T.; Mottequin, B. (2023). Tremadocian (Ordovician) trilobites from the Brabant Massif (Belgium): Palaeogeographical and palaeoecological implications. Géobios 81: 7-16. https://dx.doi.org/10.1016/j.geobios.2023.04.003, meer
- Lambert, O.; Collareta, A.; Benites-Palomino, A.; Merella, M.; de Muizon, C.; Bennion, R.; Urbina, M.; Bianucci, G. (2023). A new platyrostrine sperm whale from the Early Miocene of the southeastern Pacific (East Pisco Basin, Peru) supports affinities with the southwestern Atlantic cetacean fauna. Geodiversitas 45(22): 659-679. https://dx.doi.org/10.5252/geodiversitas2023v45a22, meer
- Lambert, O.; Wanzenböck, G.; Pfaff, C.; Louwye, S.; Kriwet, J.; Marx, F.G. (2023). First eurhinodelphinid dolphin from the Paratethys reveals a new family of specialised echolocators. Historical Biology 35(7): 1074-1091. https://dx.doi.org/10.1080/08912963.2022.2077645, meer
- Lambert, O.; Bosselaers, M.; Louwye, S. (2023). Past beaked whale diversity in the North Sea: reappraisal through a new Miocene record and biostratigraphic analyses. Geol. Belg. 26(3-4): 117-126. https://dx.doi.org/10.20341/gb.2023.009, meer
- Mottequin, B.; Amler, M.; Weyer, D. (2023). Brachiopods from the Early Carboniferous Erdbach limestones in Hesse (Germany, Kulm Basin). Paläontol. Z. 97: 785-806. https://dx.doi.org/10.1007/s12542-022-00640-8, meer
- Vicari, D.; McGowen, M.R.; Lambert, O.; Brown, R.P.; Bianucci, G.; Sabin, R.C.; Meloro, C. (2023). Ecomorphology of toothed whales (Cetacea, Odontoceti) as revealed by 3D skull geometry. Journal of Mammalian Evolution 30: 475-491. https://dx.doi.org/10.1007/s10914-022-09642-4, meer
- Wichern, N.M.A.; de Winter, N.J.; Johnson, A.L.A.; Goolaerts, S.; Wesselingh, F.; Hamers, M.F.; Kaskes, P.; Claeys, P.; Ziegler, M. (2023). The fossil bivalve Angulus benedeni benedeni: a potential seasonally resolved stable-isotope-based climate archive to investigate Pliocene temperatures in the southern North Sea basin. Biogeosciences 20(12): 2317-2345. https://dx.doi.org/10.5194/bg-20-2317-2023, meer
- Bosselaers, M.; Munsterman, D.K. (2022). The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives. Geodiversitas 44(30): 933-973. https://dx.doi.org/10.5252/geodiversitas2022v44a30, meer
- Boulvain, F.; Demaude, N.; Toussaint, F.; Coen-Aubert, M. (2022). Frasnian reef mounds in the Durbuy-Bomal area (eastern border of the Dinant Synclinorium, Belgium). Geol. Belg. 25(1-2): 17-30. https://dx.doi.org/10.20341/gb.2021.008, meer
- Candela, Y.; Mottequin, B. (2022). Tremadocian and Floian (Ordovician) linguliformean brachiopods from the Stavelot-Venn Massif (Avalonia; Belgium and Germany). Geol. Belg. 25(1-2): 1-15. https://dx.doi.org/10.20341/gb.2021.007, meer
- Coen-Aubert, M. (2022). The highly diversified rugose coral fauna from the Lower Givetian Meerbusch quarry in the Eifel Hills (Germany). Geol. Belg. 25(1-2): 53-81. https://dx.doi.org/10.20341/gb.2022.003, meer
- Collareta, A.; Merella, M.; Bosselaers, M.; Casati, S.; Di Cencio, A.; Bianucci, G. (2022). A Karethraichnus boring on a turtle shell bone from the Miocene of Italy is assessed as the attachment scar of a platylepadid symbiont. N. Jb. Geol. Paläont. Abh. 303(3): 327-337. https://dx.doi.org/10.1127/njgpa/2022/1052, meer
- Collareta, A.; Bosselaers, M. (2022). A new record of Gunnellichnus moghraensis from the Middle Miocene of Belgium, with some remarks on the origin of this seemingly uncommon ichnospecies. N. Jb. Geol. Paläont. Abh. 305(3): 237-243. https://dx.doi.org/10.1127/njgpa/2022/1088, meer
- Coombs, E.J.; Felice, R.N.; Clavel, J.; Park, T.; Bennion, R.F.; Churchill, M.; Geisler, J.H.; Beatty, B.; Goswami, A. (2022). The tempo of cetacean cranial evolution. Curr. Biol. 32(10): 2233-2247. https://dx.doi.org/10.1016/j.cub.2022.04.060, meer
- Dewaele, L.; Gol'din, P.; Marx, F.G.; Lambert, O.; Laurin, M.; Obadă, T.; de Buffrénil, V. (2022). Hypersalinity drives convergent bone mass increases in Miocene marine mammals from the Paratethys. Curr. Biol. 32(1): 248-255. https://dx.doi.org/10.1016/j.cub.2021.10.065, meer
- Doubrawa, M.; Stassen, P.; Robinson, M.M.; Babila, T.L.; Zachos, J.C.; Speijer, R.P. (2022). Shelf ecosystems along the US Atlantic Coastal Plain prior to and during the Paleocene-Eocene Thermal Maximum: insights into the stratigraphic architecture. Paleoceanography and Paleoclimatology 37(10): e2022PA004475. https://dx.doi.org/10.1029/2022PA004475, meer
- During, M.A.D.; Smit, J.; Voeten, D.F.A.E.; Berruyer, C.; Tafforeau, P.; Sanchez, S.; Stein, K.H.W.; Verdegaal-Warmerdam, D.J.A.; van der Lubbe, J.H.J.L. (2022). The Mesozoic terminated in boreal spring. Nature (Lond.) 603(7899): 91-94. https://dx.doi.org/10.1038/s41586-022-04446-1, meer
- Goolaerts, S.; Christiaens, Y.; Mollen, F.H.; Mottequin, B.; Steurbaut, E. (2022). Applying micro-CT imaging in the study of historically and newly collected specimens of Belosaepia (Sepiida, Coleoidea, Cephalopoda) from the Early Eocene (Ypresian) of Belgium. Riv. ital. paleontol. stratigr. (Testo stamp.) 128(3): 585-606. https://dx.doi.org/10.54103/2039-4942/16617, meer
- Johnson, A.L.A.; Valentine, A.M.; Schöne, B.R.; Leng, M.J.; Goolaerts, S. (2022). Sclerochronological evidence of pronounced seasonality from the late Pliocene of the southern North Sea basin and its implications. Clim. Past 18(5): 1203-1229. https://dx.doi.org/10.5194/cp-18-1203-2022, meer
- Lambert, O.; Goolaerts, S. (2022). Late Miocene survival of a hyper-longirostrine dolphin and the Neogene to recent evolution of rostrum proportions among odontocetes. Journal of Mammalian Evolution 29(1): 99-111. https://dx.doi.org/10.1007/s10914-021-09573-6, meer
- MacLaren, J.A.; Bennion, R.F.; Bardet, N.; Fischer, V. (2022). Global ecomorphological restructuring of dominant marine reptiles prior to the Cretaceous–Palaeogene mass extinction. Proc. - Royal Soc., Biol. Sci. 289(1975): 20220585. https://dx.doi.org/10.1098/rspb.2022.0585, meer
- Martens, L.; Stassen, P.; Steurbaut, E.; Speijer, R.P. (2022). Assessing Nummulites geochemistry as a proxy for early Eocene palaeotemperature evolution in the North Sea Basin. J. Geol. Soc. Lond. 179(4): jgs2021-102. https://dx.doi.org/10.1144/jgs2021-102, meer
- Mottequin, B.; Fischer, J.; Goolaerts, S.; Olive, S. (2022). Revisiting the chondrichthyan egg capsules inventory from the Pennsylvanian (Carboniferous) of Belgium: new data and perspectives. Naturwissenschaften 109(4): 39. https://dx.doi.org/10.1007/s00114-022-01809-6, meer
- Mottequin, B.; Poty, E. (2022). Brachiopods from the historical type area of the Visean Stage (Carboniferous, Mississippian; Belgium) and the Vise fauna: preliminary remarks. Palaeobiodiversity and palaeoenvironments 102: 351-371. https://dx.doi.org/10.1007/s12549-021-00498-9, meer
- Olive, S.; Taverne, L.; Brito, P.M. (2022). Pleuropholis germinalis n. sp., a new Pleuropholidae (Neopterygii, Teleostei) from the Early Cretaceous of Bernissart, Belgium. Geodiversitas 44(17): 505-514. https://dx.doi.org/10.5252/geodiversitas2022v44a17, meer
- Serobyan, V.; Danelian, T.; Crônier, C.; Grigoryan, A.; Mottequin, B. (2022). New and revised cyrtospiriferid (Spiriferida) brachiopods from the lower Famennian (Upper Devonian) of Armenia. J. Paleontol. 96(4): 839-858. https://dx.doi.org/10.1017/jpa.2022.9, meer
- Serobyan, V.; Danelian, T.; Crônier, C.; Grigoryan, A.; Mottequin, B. (2022). Aramazdospirifer orbelianus (Abich, 1858) n. comb., a new cyrtospiriferid brachiopod genus and a biostratigraphically important species from the lower Famennian (Upper Devonian) of Armenia. C. R., Palévol 21(6): 145-156. https://dx.doi.org/10.5852/cr-palevol2022v21a6, meer
- Thibon, F.; Goedert, J.; Séon, N.; Weppe, L.; Martin, J.E.; Amiot, R.; Adnet, S.; Lambert, O.; Bustamante, P.; Lécuyer, C.; Vigier, N. (2022). The ecology of modern and fossil vertebrates revisited by lithium isotopes. Earth Planet. Sci. Lett. 599: 117840. https://dx.doi.org/10.1016/j.epsl.2022.117840, meer
- Van Boeckel, J.; Everaert, S. (2022). First fossil record of Mustelus aff. punctulatus Risso, 1826: new evidence for a smooth-hound shark population in the Late Miocene North Sea Basin. Geol. Belg. 25(1-2): 31-52. https://dx.doi.org/10.20341/gb.2022.001, meer
- Vancoppenolle, I.; Vellekoop, J.; Doubrawa, M.; Kaskes, P.; Sinnesael, M.; Jagt, J.W.M.; Claeys, P.; Speijer, R.P. (2022). The benthic foraminiferal response to the mid-Maastrichtian event in the NW-European chalk sea of the Maastrichtian type area. Geol. Mijnb. 101: e12. https://dx.doi.org/10.1017/njg.2022.10, meer
- Vicari, D.; Sabin, R.C.; Brown, R.P.; Lambert, O.; Bianucci, G.; Meloro, C. (2022). Skull morphological variation in a British stranded population of false killer whale (Pseudorca crassidens): a three-dimensional geometric morphometric approach. Can. J. Zool. 100(2): 119-132. https://dx.doi.org/10.1139/cjz-2021-0112, meer
- Vicari, D.; Lorenzen, E.D.; Skovrind, M.; Szpak, P.; Louis, M.; Olsen, M.T.; Brown, R.P.; Lambert, O.; Bianucci, G.; Sabin, R.C.; Meloro, C. (2022). Skull ecomorphological variation of narwhals (Monodon monoceros, Linnaeus 1758) and belugas (Delphinapterus leucas, Pallas 1776) reveals phenotype of their hybrids. PLoS One 17(8): e0273122. https://dx.doi.org/10.1371/journal.pone.0273122, meer
- Wagner, C.L.; Stassen, P.; Thomas, E.; Lippert, P.C.; Lascu, I. (2022). Magnetofossils and benthic foraminifera record changes in food supply and deoxygenation of the coastal marine seafloor during the Paleocene-Eocene Thermal Maximum. Paleoceanography and Paleoclimatology 37(10): e2022PA004502. https://dx.doi.org/10.1029/2022PA004502, meer
- Wouters, S.; Crucifix, M.; Sinnesael, M.; Da Silva, A.-C.; Zeeden, C.; Zivanovic, M.; Boulvain, F.; Devleeschouwer, X. (2022). A decomposition approach to cyclostratigraphic signal processing. Earth-Sci. Rev. 225: 103894. https://dx.doi.org/10.1016/j.earscirev.2021.103894, meer
- Alfsen, A.; Bosselaers, M.; Lambert, O. (2021). New sperm whale remains from the late Miocene of the North Sea and a revised family attribution for the small crown physeteroid Thalassocetus Abel, 1905. C. R., Palévol 20(39): 807-822. https://dx.doi.org/10.5852/cr-palevol2021v20a39, meer
- Belluzzo, A.; Lambert, O. (2021). A new delphinid from the lower Pliocene of the North Sea and the early radiations of true dolphins. Fossil Record 24(1): 77-92. https://dx.doi.org/10.5194/fr-24-77-2021, meer
- Bosio, G.; Collareta, A.; Di Celma, C.; Lambert, O.; Marx, F.G.; de Muizon, C.; Gioncada, A.; Gariboldi, K.; Malinverno, E.; Varas-Malca, R.; Urbina, M.; Bianucci, G. (2021). Taphonomy of marine vertebrates of the Pisco Formation (Miocene, Peru): insights into the origin of an outstanding Fossil-Lagerstatte. PLoS One 16(7): e0254395. https://dx.doi.org/10.1371/journal.pone.0254395, meer
- Candela, Y.; Marion, J.-M.; Servais, T.; Wang, W.; Wolvers, M.; Mottequin, B. (2021). New linguliformean brachiopods from the lower Tremadocian (Ordovician) of the Brabant Massif, Belgium, with comments on contemporaneous faunas from the Stavelot–Venn Massif. Riv. ital. paleontol. stratigr. (Testo stamp.) 127(2): 383-395, meer
- Collareta, A.; Peri, E.; Carnevale, G.; Bosselaers, M.; Bianucci, G. (2021). On the presence of an ocean sunfish (Tetraodontiformes, Molidae) in the Miocene Pietra Leccese formation of Southern Italy. N. Jb. Geol. Paläont. Abh. 301(2): 147-155. https://dx.doi.org/10.1127/njgpa/2021/1003, meer
- Collareta, A.; Tsai, C.-H.; Coletti, G.; Bosselaers, M. (2021). Thatchtelithichnus on a Pliocene grey whale mandible and barnacles as possible tracemakers. N. Jb. Geol. Paläont. Abh. 302(1): 53-61. https://dx.doi.org/10.1127/njgpa/2021/1018, meer
- Collareta, A.; Lambert, O.; Marx, F.G.; de Muizon, C.; Varas-Malca, R.; Landini, W.; Bosio, G.; Malinverno, E.; Gariboldi, K.; Gioncada, A.; Urbina, M.; Bianucci, G. (2021). Vertebrate palaeoecology of the Pisco Formation (Miocene, Peru): glimpses into the ancient Humboldt Current ecosystem. J. Mar. Sci. Eng. 9(11): 1188. https://dx.doi.org/10.3390/jmse9111188, meer
- Collareta, A.; Di Celma, C.; Bosio, G.; Pierantoni, P.P.; Malinverno, E.; Lambert, O.; Marx, F.G.; Landini, W.; Urbina, M.; Bianucci, G. (2021). Distribution and paleoenvironmental framework of middle Miocene marine vertebrates along the western side of the lower Ica Valley (East Pisco Basin, Peru). Journal of Maps 17(2): 7-17. https://hdl.handle.net/10.1080/17445647.2020.1850535, meer
- Denayer, J.; Prestianni, C.; Mottequin, B.; Hance, L.; Poty, E. (2021). The Devonian-Carboniferous boundary in Belgium and surrounding areas. Palaeobiodiversity and palaeoenvironments 101: 313-356. https://hdl.handle.net/10.1007/s12549-020-00440-5, meer
- Folie, A.; Mees, F.; De Putter, T.; Smith, T. (2021). Presence of the large aquatic snake Palaeophis africanus in the middle Eocene marine margin of the Congo Basin, Cabinda, Angola. Géobios 66-67: 45-54. https://dx.doi.org/10.1016/j.geobios.2020.11.002, meer
- Gale, A.S.; Jagt, J.W.M.; Goolaerts, S. (2021). Cirripedes (Thoracica, Crustacea) from the Maastrichtian of Kalaat Senan, Tunisia. Cretac. Res. 118: 104650. https://hdl.handle.net/10.1016/j.cretres.2020.104650, meer
- Hoffmann, R.; Slattery, J.S.; Kruta, I.; Linzmeier, B.J.; Lemanis, R.E.; Mironenko, A.; Goolaerts, S.; De Baets, K.; Peterman, D.J.; Klug, C. (2021). Recent advances in heteromorph ammonoid palaeobiology. Biol. Rev. 96(2): 576-610. https://hdl.handle.net/10.1111/brv.12669, meer
- Lambert, O.; Collareta, A.; Benites-Palomino, A.; Di Celma, C.; de Muizon, C.; Urbina, M.; Bianucci, G. (2021). A new small, mesorostrine inioid (Cetacea, Odontoceti, Delphinida) from four upper Miocene localities in the Pisco Basin, Peru. Papers in Palaeontology 7(2): 1043-1064. https://hdl.handle.net/10.1002/spp2.1332, meer
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