Sur des dents d'élasmobranches de divers gisements sénoniens (Villedieu, Meudon, FoIx-les-Caves). Bulletin de la Société géologique de France, (Serie 3), 25, 40–56
Les Sélaciens des terrains néocrétacés et paléocènes de Belgique et des contrées limitrophes. Eléments d'une biostratigraphie intercontinentale. Mémoires pour servir à l'explication des Cartes géologiques et minières de la Belgique, 15, 1–401
A guide to fossil sharks, skates, and rays from the Chesapeake and Delaware Canal area, Delaware. Open File Report, 21, 6–95
Haaie- en Roggentanden uit het Tertiair van Belgie. Institut royal des Sciences naturelles de Belgique, 1–171
Fossiles de Belgique. Dents de Requins et de Raies du Tertiaire de la Belgique. Institut royal des Sciences naturelles de Belgique, 184 pp.
Die marinen Faunen des Tertiärs aus den Schächten des Steinkohlenbergbaues der Niederrheinischen Bucht. Teil 1. Zur tertiären Fauna des Schachtes Erkelenz. Eine Ichthyofauna aus dem Paläozän des Schachtes Sophia Jacoba 8 (Erkelenz, Niederrhein, NW-Deutschland). Decheniana, Beihefte, 30, 213–231
Fossil Sharks of the Chesapeake Bay Region. Egan Rees and Boyer, Inc. Columbia. 146 pp.
The selachian fauna from Geschiebe of the Lower Selandian basal conglomerate (Thanetian, Late Paleocene) in the Danish subbasin (Sealand, Scania, Western Baltic Sea). Erratica, 2, 3–45
Fossiele rijkdom uit het Laat-Krijt en vroegste Paleoceen van de voormalige groeve Curfs in Geulhem. Natuurhistorisch Maandblad, 101(4), 57–62
Oxygen and carbon stable isotope records of marine vertebrates from the type Maastrichtian, The Netherlands and northeast Belgium (Late Cretaceous). Palaeogeography, Palaeoclimatology, Palaeoecology, 392, 71–78
DOI: 10.1016/j.palaeo.2013.08.020
Cenomanian–Campanian (Late Cretaceous) mid-palaeolatitude sharks of Cretalamna appendiculata type. Acta Palaeontologica Polonica, 60(2), 339–384
DOI: 10.4202/app.2012.0137
Upper Cretaceous neoselachians from the Basque-Cantabrian Region (Northern Spain). Unpublished doctoral thesis, University of the Basque Country (UPV/EHU), Leioa, 479 pp.
Climate cooling and clade competition likely drove the decline of lamniform sharks. Proceedings of the National Academy of Sciences of the United States of America, 116(41), 20584–20590
DOI: 10.1073/pnas.1902693116
Fossils in Iberian prehistory: A review of the palaeozoological evidence. Quaternary Science Reviews, 250, Aticle 106676
DOI: 10.1016/j.quascirev.2020.106676
Feeding ecology has shaped the evolution of modern sharks. Current Biology, 31(23), 5138–5148
DOI: 10.1016/j.cub.2021.09.028
Campanian sharks, rays and other fossils from a long-gone Basque-Cantabrian sea. Publica, Autor & Editor, Vitoria-Gasteiz, 274 pp. [ISBN: 978-84-09-30406-6]
Marine Fishes (Chondrichthyes, Holocephali, Actinopterygii) from the Upper Cretaceous (Campanian) Rybushka Formation near Beloe Ozero, Saratov Oblast, Russia. Rivista Italiana di Paleontologia e Stratigrafia, 128(2): 369–409
DOI: 10.54103/2039-4942/16954
Santonian-Campanian neoselachian faunas of the Upper Cretaceous Yezo Group in Nakagawa Town, Hokkaido, Japan. Cretaceous Research, 133, Article 105139
DOI: 10.1016/j.cretres.2022.105139
Global impact and selectivity of the Cretaceous-Paleogene mass extinction among sharks, skates, and rays. Science, 379, 802–806
DOI: 10.1126/science.abn2080
Elasmobranch assemblages from a bathyal environment spanning the Cretaceous-Paleogene boundary in Austria. Austrian Journal of Earth Sciences, 117(1), 1–11
DOI: 10.17738/ajes.2024.0001