Monographie de la tribu des Scylliens ou Roussettes (poissons plagiostomes) comprenant deux espèces nouvelles. Revue et Magasin de Zoologie Pure et Appliquée, (serie 2) 5: 8–25, 73–87,119–130, pl.
Histoire naturelle des poissons ou ichthyologie générale. Tome Premier. Elasmobranchés. Plagiostomes et Holocéphales ou Chimères. Librairie Encyclopédique de Roret, Paris. 720 pp
Catalogue of the fishes in the British Museum. London, British Museum(Natural History). Vol. 8: 549 p.
Fishes of New Zealand. Catalogue with diagnoses of the species [Followed by an article by J. Hector, Notes on the edible fishes, pp. 95-133] Colonial Museum and Geological Survey Department. Wellington. Fishes of New Zealand. Catalogue with diagnoses of the species.: 1–93 + 95–133, Pls. 1–12. [Plates used for both articles; new taxa by Hutton.]
Notes on sharks from the coast of California. Proceedings of the United States National Museum, 3, 51–52
On the occurrence of Cephaloscyllium laticeps (Duméril) Gill, on the coast of California. Proceedings of the United States National Museum, 3, 40–42
A descriptive catalogue of the fishes of Australia. Part IV. Proceedings of the Linnean Society of New South Wales, ser. 1, 6, 202–387
Redogörelse för den Japanska Fisksamlingen i Upsala Universitets Zoologiska Museum. Bihang till Kongl. Svenska vetenskaps–akademiens handlingar, 13(4), 1–54
A basic list of the fishes of New Zealand. Whitcombe and Tombs. Records of the Canterbury Museum, 1(1), 131–155
A synopsis of the sharks of the Family Scyliorhinidae. Annals and Magazine of Natural History, (Series 8), 1(6), 453–465
Pisces. Part I. In: Scientific results of the New Zealand government trawling expedition, 1907. Records of the Canterbury Museum, 1(2), 131–155
Studies in Ichthyology. No. 6. Records of the Australian Museum, 18(6), 321–348
DOI: 10.3853/j.0067-1975.18.1932.737#sthash.A1OYs2vG.dpuf
Catalogue des types de Poissons du Muséum National d'Histoire Naturelle. 1re Partie. Cyclostomes et Sélaciens. Bulletin du Muséum National d'Histoire Naturelle, (Série 2), 11(6), 51–98
The fishes of Australia. Part 1. The sharks, rays, devil fishes and other primitive fishes of Australia and New Zealand. Sydney: Royal Zoological Society of New South Wales, 230 pp.
Observations on some Tasmanian fishes: Part XI. Papers and Proceedings of the Royal Society of Tasmania, 97, 1–31
Presidential address. A survey of Australian ichthyology. Proceedings of the Linnean Society of New South Wales, 89(1), 11–127
Studies on western Australian sharks and rays of the Families Scyliorhinidae, Urolophidae, and Torpedinidae. Journal of the Royal Society of Western Australia, 49(3), 65–82
A revision of the catsharks, Family Scyliorhinidae. NOAA Technical Report NMFS, Circular, 422: 1–152
FAO Species Catalogue. Vol 4: Sharks of the world, Part 2 - Carcharhiniformes. FAO Fisheries Synopsis No. 125, 4(2): 251–633
FAO Species Catalogue. Vol 4: Sharks of the world, Part 2 - Carcharhiniformes. FAO Fisheries Synopsis No. 125, 4(2): 251–633
Mercury concentrations of the axial muscle tissues of some marine fishes of the continental shelf adjacent to Tasmania. Australian Journal of Marine and Freshwater Research, 36(4), 509–518
Sharks of the order Carcharhiniformes. Princeton University Press, New Jersey 1988
Sharks of the order Carcharhiniformes. Princeton University Press, New Jersey 1988
A revision of the Calicotylinae Monticelli, 1903 (Monogenea: Monocotylidae). Systematic Parasitology, 38(3), 159–183
DOI: 10.1023/A:1005844306178
Classification of the recent Elasmobranchii. Copyright Brian Mould 1997
On the phylogenetic relationships among tetraphyllidean, lecanicephalidean and diphyllidean tapeworm genera. Systematic Parasitology, 42(2), 77–151
DOI: 10.1023/A:1006192603349
Checklist of the fishes of Western Australia. Records of the Western Australian Museum, Supplement 63, 9–50
Freshwater and estuarine elasmobranchs of Australia. In Elasmobranch Biodiversity, Conservation and Management. Proceedings of the conference on Shark and Ray Biodiversity, Conservation and Management, Sabah, Malaysia, July 1997. IUCN, Gland, Switzerland: 185–193
The Conservation Status of Australasian Chondrichthyans. Report of the IUCN Shark Specialist Group Australia and Oceania Regional Red List Workshop. The University of Queensland, School of Biomedical Sciences, Brisbane, Australia
Cephaloscyllium laticeps IUCN 2012, IUCN Red List of Threatened Species, Version 2012.2, https://www.iucnredlist.org
Movement patterns of the draughtboard shark Cephaloscyllium laticeps using acoustic telemetry and conventional tagging [Abstract]. American Elasmobranch Society 21th Annual Meeting, Tampa, Florida
Endocrine correlates of the reproductive biology of the oviparous catshark, Cephaloscyllium laticeps (Duméril, 1853) [Abstract]. American Elasmobranch Society 21th Annual Meeting, Tampa, Florida
Checklist of living Chondrichthyes. In W.C. Hamlett (Ed.), Reproductive biology and phylogeny of chondrichthyes: sharks, rays and chimaeras, Vol. 3 (pp. 503–548). Science Publishers, Endfield, USA
Catch Evaluation of Target, By-product and By-catch Species Taken by Gillnets and Longlines in the Shark Fishery of South-eastern Australia. Journal of Northwest Atlantic Fishery Science, 35, 505–530
DOI: 10.2960/J.v35.m515
The reproductive biology and movement patterns of the draughtboard shark, (Cephaloscyllium laticeps): implications for bycatch management. PhD thesis, University of Tasmania
Variation in Brain Organization and Cerebellar Foliation in Chondrichthyans: Sharks and Holocephalans. Brain, Behavior and Evolution, 69(4), 280–300
DOI: 10.1159/000100037
Evolutionary changes of astroglia in Elasmobranchii comparing to amniotes: a study based on three immunohistochemical markers (GFAP, S-100, and glutamine synthetase). Brain, Behavior and Evolution, 71(4), 305–324
DOI: 10.1159/000129654
Non-lethal assessment of reproductive characteristics for management and conservation of sharks. Marine Ecology Progress Series, 355, 277–285
DOI: 10.3354/meps07227
Endocrine and Morphological Correlates of Reproduction in the Draughtboard Shark Cephaloscyllium laticeps (Elasmobranchii: Scyliorhinidae). Journal of Experimental Zoology Part A, Comparative Experimental Biology, 309, 184–197
DOI: 10.1002/jez.445
DNA barcoding Australasian chondrichthyans: results and potential uses in conservation. Marine and Freshwater Research, 59(1), 57–71
DOI: 10.1071/MF07148
Reproductive seasonality and embryo development in the draughtboard shark Cephaloscyllium laticeps. Marine and Freshwater Research, 60(12), 1265–1272
DOI: 10.1071/MF09030
Sharks and Rays of Australia. CSIRO Publishing, Collingwood, Vic.
Distribution of leukocytes as indicators of stress in the Australian swellshark, Cephaloscyllium laticeps. Fish & Shellfish Immunology, 29(3), 534–538
DOI: 10.1016/j.fsi.2010.04.016
Does more maternal investment mean a larger brain? Evolutionary relationships between reproductive mode and brain size in chondrichthyans. Marine and Freshwater Research, 62(6), 567–575
DOI: 10.1071/MF10145
Shark tales: A molecular species-level phylogeny of sharks (Selachimorpha, Chondrichthyes). Molecular Phylogenetics and Evolution, 58(2), 207–217
DOI: 10.1016/j.ympev.2010.11.018
Movement patterns of the draughtboard shark Cephaloscyllium laticeps (Scyliorhinidae) determined by passive tracking and conventional tagging. Journal of Fish Biology, 80(5), 1417–1435
DOI: 10.1111/j.1095-8649.2012.03249.x
High Post-Capture Survival for Sharks, Rays and Chimaeras Discarded in the Main Shark Fishery of Australia? PLoS ONE, 7(2), Article e32547
DOI: 10.1371/journal.pone.0032547
Synopsis of the species of Chloromyxum Mingazinni, 1890 (Myxozoa: Myxosporea: Chloromyxidae). Systematic Parasitology, 83(3), 203–225
DOI: 10.1007/s11230-012-9380-9
Phylogenetic relationships amongst Chloromyxum Mingazzini, 1890 (Myxozoa: Myxosporea), and the description of six novel species from Australian elasmobranchs. Parasitology International, 61(2), 267–274
DOI: 10.1016/j.parint.2011.10.008
A DNA sequence based approach to the identification of shark and ray species and its implications for global elasmobranch diversity and parasitology. Bulletin of the American Museum of Natural History, 367, 1–262
Allometric Scaling of the Optic Tectum in Cartilaginous Fishes. Brain, Behavior and Evolution, 80(2), 108–126
DOI: 10.1159/000339875
Trophic ecology of an abundant predator and its relationship with fisheries. Marine Ecology Progress Series, 494, 241–248
DOI: 10.3354/meps10577
Sharks of the World – A fully illustrated guide. Wild Nature Press, ISBN 978–0–9573946–0–5: 528pp
Shark and Ray Handling Practices. A guide for commercial fishers in southern Australia. Australian Fisheries Management Authority (AFMA), Canberra, 26pp
The effect of habitat on modern shark diversification. Journal of Evolutionary Biology, 27(8), 1536–1548
DOI: 10.1111/jeb.12405
Global pattern of phylogenetic species composition of shark and its conservation priority. Ecology and Evolution, 5(19), 4455–4465
DOI: 10.1002/ece3.1724
Comparison of baited longlines and baited underwater cameras for assessing the composition of continental slope deepwater fish assemblages off southeast Australia. Deep Sea Research Part I: Oceanographic Research Papers, 98, 10–20
DOI: 10.1016/j.dsr.2014.11.013
Post-Capture Survival and Implications for By-Catch in a Multi-Species Coastal Gillnet Fishery. PLoS ONE, 11(11), Article e0166632
DOI: 10.1371/journal.pone.0166632
Annotated checklist of the living sharks, batoids and chimaeras (Chondrichthyes) of the world, with a focus on biogeographical diversity. Journal of Fish Biology, 88(3), 837–1037
DOI: 10.1111/jfb.12874
Evaluating time-depth recorders as a tool to measure the behaviour of sharks captured on longlines. Journal of Experimental Marine Biology and Ecology, 497, 120–126
DOI: 10.1016/j.jembe.2017.09.011
Behavioural responses of draughtboard sharks (Cephaloscyllium laticeps) to rare earth magnets: Implications for shark bycatch management within the Tasmanian southern rock lobster fishery. Fisheries Research, 200, 84–92
DOI: 10.1016/j.fishres.2018.01.001
From sea monsters to charismatic megafauna: Changes in perception and use of large marine animals. PLoS ONE, 14(12), Article e0226810
DOI: 10.1371/journal.pone.0226810
Effects of on-deck holding conditions and air exposure on post-release behaviours of sharks revealed by a remote operated vehicle. Journal of Experimental Marine Biology and Ecology, 511, 10–18
DOI: 10.1016/j.jembe.2018.11.003
A Report Card for Australia’s Sharks. https://www.sharkreportcard.org/
Within-genus differences in catchability of elasmobranchs during trawling. Fisheries Research, 211, 141–147
DOI: 10.1016/j.fishres.2018.11.015
A data-limited method for assessing cumulative fishing risk on bycatch. ICES Journal of Marine Science, 76(4), 837–847
DOI: 10.1093/icesjms/fsy206
Steroid hormones and chondrichthyan reproduction: physiological functions, scientific research, and implications for conservation. PeerJ, 8, Article e9686
DOI: 10.7717/peerj.9686
Marine and estuarine leeches (Hirudinida : Ozobranchidae and Piscicolidae) of Australia and New Zealand with a key to the species. Invertebrate Systematics, 34(3), 235–259
DOI: 10.1071/is19048
Distinct Responses of Elasmobranchs and Ray-Finned Fishes to Long-Term Global Change. Frontiers in Ecololgy and Evolution, 7, Article 513
DOI: 10.3389/fevo.2019.00513
Body forms in sharks (Chondrichthyes: Elasmobranchii) and their functional, ecological, and evolutionary implications. Zoology, 140, Article 125799
DOI: 10.1016/j.zool.2020.125799
Sharing the waves: An exploration of surfer and shark interactions. Marine Policy, 145, 4
DOI: 10.1016/j.marpol.2022.105260
Gillnet selectivity for non-targeted shark species in temperate Australia. Fisheries Management and Ecology, 29(5), 724–733
DOI: 10.1111/fme.12570
Combining palaeontological and neontological data shows a delayed diversification burst of carcharhiniform sharks likely mediated by environmental change. Scientific Reports, 12, Article 21906
DOI: 10.1038/s41598-022-26010-7
Assessing the Relative Vulnerability of Chondrichthyan Species as Bycatch Using Spatially Reported Catch Data Series. Diversity, 15(6), Article 752
DOI: 10.3390/d15060752
Scaling of Activity Space in Marine Organisms across Latitudinal Gradients. American Naturalist, 201(4), 586–602
DOI: 10.1086/723405