Description of a new species of ray, Raia rhina, from the coast of California. Proceedings of the United States National Museum, 3(141), 251–253.
List of the fishes of the Pacific coast of the United States, with a table showing the distribution of the species. Proceedings of the United States National Museum, 3, 452–458
Notes on the fishes of the Pacific coast of the United States. Proceedings of the United States National Museum, 4, 29–70
A catalogue of the fishes known to inhabit the waters of North America, north of the Tropic of Cancer, with notes on the species discovered in 1883 and 1884. U.S. Comm. of Fish and Fisheries: Rept. of Commissioner for 1884 11:1–185
A catalogue of the fishes of the Pacific coast of America north of Cerros Island. Annals of the New York Academy of Sciences, 6, 349–358
DOI: 10.1111/j.1749-6632.1892.tb55407.x
The ichthyological collections of the steamer Albatross during the years 1890 and 1891. Report of the United States Fish Commission, 1893(17), 393–476
The fishes of Puget Sound. Proceedings of the California Academy of Sciences, (Series 2), 5, 785–855
The fishes of North and Middle America: a descriptive catalogue of the species of fish-like vertebrates found in the waters of North America, north of the Isthmus of Panama. Part I. Bulletin of the United States National Museum, 47, 1–1240
Results of an ichthyological survey about the San Juan Islands, Washington. Annals of the Carnegie Museum, 7(2), 162–213
The Plagiostomia (Sharks, Skates and Rays). Memoirs of the Museum of Comparative Zoology at Harvard College, 36, 1–528
Fishes collected by the United States Fisheries steamer "Albatross" in southern California in 1904. Proceedings of the United States National Museum, 48(2075), 305–380
The skates and rays of California, with an account of the ratfish. California Fish and Game, 4(1), 1–16
Check list of the fishes and fishlike vertebrates of North and Middle America north of the northern boundary of Venezuela and Colombia. Report of the United States Fish Commission, 1928(2), 1–670
Notes on some elasmobranchs of Puget Sound, with descriptions of their egg cases. Copeia, 1935(2), 63–67
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
A synopsis of the monogenetic trematodes. Transactions of the Zoological Society of London, 25, 185–600
Observations on the Nidamental Glands of Hydrolagus colliei, Raja rhina and Platyrhinoidis triseriatus. Copeia, 1, 54–57
Official common names of certain marine fishes of California. California Fish and Game, 39(2), 251–262
Studies on cestode parasites of sharks and skates. Journal of the Tennessee Academy of Science, 30, 265–311
Some monogenetic trematodes from marine fishes from the Pacific. Transactions of the American Microscopical Society, 80(3), 235–266
Aldosterone and other corticosteroids from chondrichthyean interrenal glands. General and Comparative Endocrinology, 2(5), 490–494
DOI: 10.1016/0016-6480(62)90047-3
Egg-cases of some elasmobranchs and a cyclostome from California waters. California Fish and Game, 49(4), 271–289
Presence of corticotropin activity in the pituitary gland of chondrichthyean fish. General and Comparative Endocrinology, 9(2), 267–275
DOI: 10.1016/0016-6480(67)90061-5
The magnesium potentiation of the oxytocic activity of pituitary extracts from an elasmobranch (Raia rhina). General and Comparative Endocrinology, 12(1), 168–171
DOI: 10.1016/0016-6480(69)90150-6
Elasmobranch oxytocin-like principles: Comparisons with synthetic glumitocin. General and Comparative Endocrinology, 12(2), 387–390
DOI: 10.1016/0016-6480(69)90212-3
Differential Blood Flow Through the Afferent Branchial Arteries of the Skate, Raja rhina. Journal of Experimental Biology, 52(1), 721–726
Nuclear Basic Protein Changes During Spermiogenesis in the Longnose Skate and the Spiny Dogfish. Journal of Experimental Zoology, 212, 423–433
DOI: 10.1002/jez.1402120315
Rukovodstvo po opredeleniyu khryashchevykh ryb dal'nevostochnykh morei SSSR i sopredel'nykh vod. [Manual for identification of cartilaginous fishes of Far East seas of USSR and adjacent waters.] TINRO, Vladivostok. Rukovodstvo po opredeleniyu khryashchevykh ryb dal'nevostochnykh morei SSSR i sopredel'nykh vod.: 92 pp.
A field guide to Pacific coast fishes North America. Houghton Mifflin Co., Boston, MA. 336 p.
Sphaerospora araii n. sp. (Myxosporea: Sphaerosporidae) from the kidney of a longnose skate (Raja rhina Jordan and Gilbert) from the Pacific Ocean off Canada. Canadian Journal of Zoology, 63(12), 2902–2906
DOI: 10.1139/z85-434
Systematics and distribution of the skates of the north Pacific. In Uyeno, T. & Arai, R. & Taniuchi, T. & Matsuura, K. (Eds) Proceedings of the second international conference on Indo-Pacific fishes. Ichthyological Society of Japan, Tokyo: 269–280
Interrelationships within a putative monophyletic groups of skates (Chondrichthyes, Rajoidei, Rajini). In Uyeno, T. & Arai, R. & Taniuchi, T. & Matsuura, K. (Eds) Proceedings of the second international conference on Indo-Pacific fishes. Ichthyological Society of Japan, Tokyo: 281–290
A morphological analysis of the ampullae of Lorenzini in selected skates (Pisces, Rajoidei). Journal of Morphology, 189(3), 225–247
DOI: 10.1002/jmor.1051890303
Guide to the parasites of fishes of Canada. Part II - Crustacea. Canadian Special Publication in Fisheries and Aquatic Sciences, 101, 1–184
Bombesin-like immunoreactivity in skates and the in vitro effect of bombesin on coronary vessels from the longnose skate, Raja rhina. Regulatory Peptides, 35(3), 207–219
DOI: 10.1016/0167-0115(91)90084-T
Neuropeptide Y-related Peptides from the pancreas of a teleostean (eel), holostean (bowfin) and elasmobranch (skate) fish. Peptides, 12(2), 221–226
DOI: 10.1016/0196-9781(91)90003-8
Serotoninergic and enkephalinergic cell groups in the reticular formation of the bat ray and two skates. Brain, Behavior and Evolution, 38(1), 39–52
DOI: 10.1159/000114378
Growth characteristics and estimates of age at maturity of two species of skates (Raja binoculata and Raja rhina) from Monterey Bay, California. M.S. Thesis, California State Universiy Stanislaus. 53 p.
Convergent Evolution of Nasal Structure in Sedentary Elasmobranchs. Copeia, 1993(1), 144–158
Neuropeptide Y potentiates contractile response to norepinephrine in skate coronary artery. American Journal of Physiology. Heart and Circulatory Physiology, 265(2), 661–665
Status and review of the California skate fishery. In Conservation Biology of Elasmobranchs. Ed. by S. Branstetter. NOAA Technical Report NMFS, 115: 39–52
Purification and characterization of urotensin II from the brain of a teleost (trout, Oncorhynchus mykiss) and an elasmobranch (skate, Raja rhina). General and Comparative Endocrinology, 92(3), 419–427
DOI: 10.1006/gcen.1993.1178
Growth characteristics and estimates of age at maturity of two species of skates (Raja binoculata and Raja rhina) from Monterey Bay, California. In Conservation Biology of Elasmobranchs. Ed. by S. Branstetter. NOAA Technical Report NMFS, 115: 87–99
Novel tachykinins from the brain of the sea lamprey, Petromyzon marinus, and the skate, Raja rhina. Peptides, 15(1), 155–161
DOI: 10.1016/0196-9781(94)90185-6
Le revêtement cutané des raies (Chondrichthyes, Elasmobranchii, Batoidea). I- Morphologie et arrangement des denticules cutanés. Annales des Sciences Naturelles – Zoologie et Biologie Animale, 17(2), 65–83
Survey of the variation of alar and malar thorns in skates: phylogenetic implications (Chondrichthyes: Rajoidei). Journal of Morphology, 228(2), 165–178
DOI: 10.1002/(SICI)1097-4687(199605)228:2<165::AID-JMOR5>3.0.CO;2-4
Oregon skate and ray identification key. Newport, published by the author himself
Classification of the recent Elasmobranchii. Copyright Brian Mould 1997
Sperm nuclear basic proteins (SNBPs) of agnathans and chondrichthyans: variability and evolution of sperm proteins in fish. Journal of Molecular Evolution, 44(4), 422–431
DOI: 10.1007/PL00006162
Sharks and their relatives. Ecology and conservation. Occasional papers of the IUCN species survival commission, 20, 39p.
Le revêtement cutané des raies (Chondrichthyes, Elasmobranchii, Batoidea). II. Morphologie et arrangement des tubercules cutanés. Annales des Sciences Naturelles – Zoologie et Biologie Animale, 19(3–4), 155–172
DOI: 10.1016/S0003-4339(99)80004-5
Geographical and bathymetric distribution of the skates of the Rajidae family in the Far Eastern Seas of Russia and adjacent waters. Journal of Ichthyology, 39(4), 340–342
Les denticules myrmécoïdes, un nouveau caractère diagnostique pour les Rajidae (Chondrichtyes, Batoidea). Annales des Sciences Naturelles – Zoologie et Biologie Animale, 21(2), 65–80
DOI: 10.1016/S0003-4339(00)00106-4
Bioaccumulation and distribution of silver in four marine teleosts and two marine elasmobranchs: influence of exposure duration, concentration, and salinity. Aquatic Toxicology, 49(1–2), 111–129
DOI: 10.1016/S0166-445X(99)00063-6
Patterns of nitrogenous waste excretion and gill urea transporter mRNA expression in several species of marine fish. Marine Biology, 139(5), 839–844
DOI: 10.1007/s002270100639
An investigation of carbonic anhydrase activity in the gills and blood plasma of brown bullhead (Ameiurus nebulosus), longnose skate (Raja rhina), and spotted raffish (Hydrolagus colliei). Journal of Comparative Physiology B: Biochemical, Systemic, and Environmental Physiology, 172, 77–86
DOI: 10.1007/s003600100229
The Trypanorhyncha Diesing, 1863. PKSPL–IPB Press ISBN 979–9336–39–2
Reproductive biology of California (Raja inornata) and longnose (R. rhina) skates off central California [Abstract]. American Elasmobranch Society 20th Annual Meeting, Norman, Oklahoma
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
Size, age, and growth of the skates from family Rajidae in the Far-Eastern Seas of Russia. Izvestiya TINRO, 143, 84–89
Phylogenetic relationships among the major lineages of modern elasmobranchs. In W.C. Hamlett (Ed.), Reproductive biology and phylogeny of chondrichthyes: sharks, rays and chimaeras, Vol. 3 (pp. 1–25). Science Publishers, Endfield, USA
Food habits of the Longnose Skate, Raja rhina (Jordan and Gilbert, 1880), in central California waters [Abstract]. American Elasmobranch Society 21th Annual Meeting, Tampa, Florida
Age and growth of big skate (Raja binoculata) and longnose skate (Raja rhina) in British Columbia waters. Fisheries Research, 78(2–3), 169–178
DOI: 10.1016/j.fishres.2006.01.009
DNA-based identification of Alaska skates (Amblyraja, Bathyraja and Raja: Rajidae) using cytochrome c oxidase subunit I (coI) variation. Journal of Fish Biology, 69(Sb), 283–292
DOI: 10.1111/j.1095-8649.2006.01286.x
Assemblage structure of eastern pacific groundfishes on the US continental slope in relation to physical and environmental variables. Transactions of the American Fisheries Society, 135(2), 317–332
DOI: 10.1577/t05-092.1
Comparative feeding ecology of four sympatric skate species off central California, USA. Environmental Biology of Fishes, 80(2–3), 197–220
DOI: 10.1007/s10641-007-9241-6
Hemoflagellates of oregon marine fishes with the description of new species of Trypanosoma and Trypanoplasma. Journal of Parasitology, 93(6), 1442–1451
DOI: 10.1645/GE-1220.1
Standardized diet compositions and trophic levels of skates (Chondrichthyes: Rajiformes: Rajoidei). Environmental Biology of Fishes, 80(2–3), 221–237
DOI: 10.1007/s10641-007-9227-4
Descriptions of skate egg cases (Chondrichthyes: Rajiformes: Rajoidei) from the eastern North Pacific. Zootaxa, 1393, 1–18
Age and growth of big skate (Raja binoculata) and longnose skate (R. rhina) in the Gulf of Alaska. Environmental Biology of Fishes, 80(2–3), 337–349
DOI: 10.1007/s10641-007-9231-8
A Collation and summarization of available data on deepwater Chondrichthyans: Biodiversity, life history and fisheries. Biodiversity, Life History and Fisheries IUCN SSC Shark Specialist Group for the Marine Conservation Biology Institute, 1–137.
Food habits of the longnose skate, Raja rhina (Jordan and Gilbert, 1880), in central California waters. Environmental Biology of Fishes, 80(2–3), 165–179
DOI: 10.1007/s10641-007-9222-9
Reproductive biology of two commercially exploited skates, Raja binoculata and R. rhina, in the western Gulf of Alaska. Fisheries Research, 94(1), 48–57
DOI: 10.1016/j.fishres.2008.06.016
All their eggs in one basket: a rocky reef nursery for the longnose skate (Raja rhina Jordan & Gilbert, 1880) in the southern California Bight. Fishery Bulletin, 106(4), 471–475
Composición taxonómica y relaciones zoogeográficas de los peces demersales de la costa occidental de Baja California Sur, México [Taxonomic composition and zoogeographic relations of demersal in the western coast of Baja California Sur, Mexico]. Revista de Biología Tropical, 56(4): 1765–1783
Plasma non-esterified fatty acids of elasmobranchs: comparisons of temperate and tropical species and effects of environmental salinity.. Comparative Biochemistry and Physiology – Part A, Molecular & Integrative Physiology, 149(2), 209–216
DOI: 10.1016/j.cbpa.2007.12.003
Emerging patterns of species richness, diversity, population density, and distribution in the skates (Rajidae) of Alaska. Fishery Bulletin, 106(1), 24–39
Aspects of the biology and species composition of skates (Rajiformes) from Insular Waters of Southeastern Alaska. Northwestern Naturalist, 90, 247–256
The population dynamics of the longnose skate, Raja rhina, in the northeast Pacific Ocean. Fisheries Research, 95(2–3), 139–145
DOI: 10.1016/j.fishres.2008.08.006
Groundfish species associations with distinct oceanographic habitats in the Northern California Current. Fisheries Oceanography, 18(1), 1–19
DOI: 10.1111/j.1365-2419.2008.00489.x
Raja rhina IUCN 2012, IUCN Red List of Threatened Species, Version 2012.2, https://www.iucnredlist.org
Observer-reported skate bycatch in the commercial groundfish fisheries of Alaska. Fishery Bulletin, 108(2), 208–217
Exploring Adaptive Evolution in the Brains of Bathyal Skates (Family: Rajidae): Phylogenetic and Ecological Perspectives [Abstract]. Brain, Behavior and Evolution, 75(4), 316
DOI: 10.1159/000318756
Decreasing Urea: Trimethylamine N-Oxide Ratios with Depth in Chondrichthyes: A Physiological Depth Limit? Physiological and Biochemical Zoology, 84(5), 494–505
DOI: 10.1086/661774
Molecular systematics of the skate subgenus Arctoraja (Bathyraja: Rajidae) and support for an undescribed species, the leopard skate, with comments on the phylogenetics of Bathyraja. Ichthyological Research, 58(1), 77–83
DOI: 10.1007/s10228-010-0185-z
Preliminary chemical and nutritional characterization of liver from longnose skates (Raja rhina). Journal of Food Composition and Analysis, 24(3), 356–361
DOI: 10.1016/j.jfca.2010.09.014
Metabolic enzyme activities in shallow- and deep-water chondrichthyans: implications for metabolic and locomotor capacity. Marine Biology, 159(8), 1713–1731
DOI: 10.1007/s00227-012-1960-3
The Comparative Morphology of Skate Egg Capsules (Chondrichthyes: Elasmobranchii: Rajiformes). Bulletin of the Kanagawa Prefectural Museum, Natural Science, 41, 9–25
Methods to collect, preserve, and prepare elasmobranch tissues for stable isotope analysis. Environmental Biology of Fishes, 95(1), 53–63
DOI: 10.1007/s10641-011-9860-9
The Conservation Status of North American, Central American, and Caribbean Chondrichthyans. IUCN Species Survival Commission Shark Specialist Group, Vancouver, Canada.
Development of a FINS- based method for the identification of skates species of commercial interest. Food Control, 24(1–2), 38–43
DOI: 10.1016/j.foodcont.2011.08.034
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
Length–Length and Width–Length Conversion of Longnose Skate and Big Skate Off the Pacific Coast: Implications for the Choice of Alternative Measurement Units in Fisheries Stock Assessment. North American Journal of Fisheries Management, 33(5), 887–893
DOI: 10.1080/02755947.2013.818080
Species diversity and conservation status of cartilaginous fishes (Chondrichthyes) of Russian waters. Journal of Ichthyology, 53(11), 923–936
DOI: 10.1134/S0032945213110040
Identifying ecological and fishing drivers of bycatch in a U.S. groundfish fishery. Ecological Applications, 23(7), 1645–1658
DOI: 10.1890/12-2225.1
Spatial Segregation in Eastern North Pacific Skate Assemblages. PLoS ONE, 9(10), Article e109907
DOI: 10.1371/journal.pone.0109907
The secret of the mermaid’s purse: Phylogenetic affinities within the Rajidae and the evolution of a novel reproductive strategy in skates. Molecular Phylogenetics and Evolution, 75, 245–251
DOI: 10.1016/j.ympev.2014.01.012
Species richness and distribution of chondrichthyan fishes in the Arctic Ocean and adjacent seas. Biodiversity, 14(1), 57–66
DOI: 10.1080/14888386.2012.706198
Impact of light on catch rate of four demersal fish species during the 2009-2010 US west coast groundfish bottom trawl survey. Fisheries Research, 164, 193–200
DOI: 10.1016/j.fishres.2014.11.010
Annotated checklist of the sharks, batoids and chimaeras (Chondrichthyes: Elasmobranchii, Holocephali) from waters of Russia and adjacent areas. Publications of the Seto Marine Biological Laboratory, 43, 40–91
Nutritional content, mercury, and trace element analyses of two skate (Rajidae) species in the Gulf of Alaska. Journal of Food Composition and Analysis, 42, 152–163
DOI: 10.1016/j.jfca.2015.03.013
Can observer sampling validate industry catch reports from trawl fisheries? Fisheries Research, 172, 34–43
DOI: 10.1016/j.fishres.2015.06.007
Do by-catch reduction devices in longline fisheries reduce capture of sharks and rays? A global meta-analysis. Fish and Fisheries, 16(2), 300–309
DOI: 10.1111/faf.12055
The complete mitochondrial genome of the Longnose skate: Raja rhina (Rajiformes, Rajidae). Mitochondrial DNA, 26(1), 123–124
DOI: 10.3109/19401736.2013.814113
Bathymetric Limits of Chondrichthyans in the Deep Sea: a Re-evaluation. Deep Sea Research Part II: Topical Studies in Oceanography, 115, 73–80
DOI: 10.1016/j.dsr2.2014.10.010i
Fishes of the Salish Sea: a compilation and distributional analysis. NOAA Professional Paper NMFS, 18: 1–95
Lista patrón de los tiburones, rayas y quimeras (Chondrichthyes, Elasmobranchii, Holocephali) de México. Arxius de Miscel·lània Zoològica, 13, 47–163
Proton conductivity in ampullae of Lorenzini jelly. Science Advances, 2(5), Article e1600112
DOI: 10.1126/sciadv.1600112
Skates, Family Rajidae. In Last, P.R., White, W.T., Carvalho, M.R. de, Séret, B., Stehmann, M.F.W & Naylor, G.J.P(Eds.) Rays of the World. CSIRO Publishing, Melbourne: 204–363
Changes to the nomenclature of the skates (Chondrichthyes: Rajiformes). In Rays of the World: Supplementary information(Last, P. R. & Yearsley, G. K., eds), CSIRO Special Publication: 11–34
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
Diversidad y afinidades biogeográficas de los tiburones, rayas y quimeras (Chondrichthyes: Elasmobranchii, Holocephali) de México [Diversity and biogeographic affinities of sharks, rays and chimaeras (Chondrichthyes: Elasmobranchii, Holocephali) of Mexico. Revista de Biología Tropical, 64(4): 1469–1486
DOI: 10.15517/rbt.v64i4.22774
Interactive effects of urea and lipid content confound stable isotope analysis in elasmobranch fishes. Canadian Journal of Fisheries and Aquatic Sciences, 74(3), 419–428
DOI: 10.1139/cjfas-2015-0584
Chapter Two - Biodiversity, Life History, and Conservation of Northeastern Pacific Chondrichthyans. Advances in Marine Biology, 77, 9–78
DOI: 10.1016/bs.amb.2017.07.001
Structure and mechanical implications of the pectoral fin skeleton in the Longnose Skate (Chondrichthyes, Batoidea). Acta Biomaterialia, 51, 393–407
DOI: 10.1016/j.actbio.2017.01.026
An Introduction to Modelling Abundance and Life History Parameters in Shark Populations. Advances in Marine Biology, 78, 45–87
DOI: 10.1016/bs.amb.2017.08.001
Dietary variability in two common Alaskan skates (Bathyraja interrupta and Raja rhina). Marine Biology, 164(3), Article 52
DOI: 10.1007/s00227-017-3078-0
Bomb radiocarbon analyses validate and inform age determination of longnose skate (Raja rhina) and big skate (Beringraja binoculata) in the north Pacific Ocean. Fisheries Research, 193, 195–206
DOI: 10.1016/j.fishres.2017.04.004
Chapter Six - Age and Growth of Elasmobranchs and Applications to Fisheries Management and Conservation in the Northeast Pacific Ocean. Advances in Marine Biology, 77, 179–220
DOI: 10.1016/bs.amb.2017.06.002
The mitogenomic phylogeny of the Elasmobranchii (Chondrichthyes). Mitochondrial DNA Part A, 29(6), 867–878
DOI: 10.1080/24701394.2017.1376052
Comparative analysis of feeding habits and dietary niche breadth in skates: the importance of body size, snout length, and depth. Reviews in Fish Biology and Fisheries, 28(3), 625–636
DOI: 10.1007/s11160-018-9522-5
Sustainability of threatened species displayed in public aquaria, with a case study of Australian sharks and rays. Reviews in Fish Biology and Fisheries, 28(1), 137–151
DOI: 10.1007/s11160-017-9501-2
Updated checklist of the extant Chondrichthyes within the Exclusive Economic Zone of Mexico. ZooKeys, 774, 17–39
DOI: 10.3897/zookeys.774.25028
Batoid nurseries: definition, use and importance. Marine Ecology Progress Series, 595, 253–267
DOI: 10.3354/meps12545
In situ observations of deep-living skates in the eastern North Pacific. Deep Sea Research Part I: Oceanographic Research Papers, 152, Article 103104
DOI: 10.1016/j.dsr.2019.103104
Interactions between fisheries and early life stages of skates in nursery areas of the eastern Bering Sea. Fishery Bulletin, 117(1–2), 8–14
DOI: 10.7755/FB.117.1.2
Ecological specialization is associated with high conservation concern in skates (Chondrichthyes, Rajiformes). Animal Conservation, 23(2), 222–228
DOI: 10.1111/acv.12531
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
Rapid age estimation of longnose skate (Raja rhina) vertebrae using near-infrared spectroscopy. Marine and Freshwater Research, 73(1), 71–80
DOI: 10.1071/mf21054
Right on target: using data from targeted stocks to reconstruct removals of bycatch species, a case study of longnose skate from Northeast Pacific Ocean. Fisheries Research, 236, Article 105841
DOI: 10.1016/j.fishres.2020.105841
Diversity and conservation of Chondrichthyes in the Gulf of California. Marine Biodiversity, 51(3), Article 46
DOI: 10.1007/s12526-021-01186-9
Checklist of marine and estuarine fishes from the Alaska-Yukon Border, Beaufort Sea, to Cabo San Lucas, Mexico. Zootaxa, 5053(1), 1–285
DOI: 10.11646/zootaxa.5053.1.1
Advances in the study of the trophic niche of batoids with distribution in Mexican waters. Marine Ecology, 42(6), Article e12687
DOI: 10.1111/maec.12687
Evolution of realized Eltonian niches across Rajidae species. Ecosphere, 12(2), Article e03368
DOI: 10.1002/ecs2.3368
The comparative energetics of the chondrichthyans reveals universal links between respiration, reproduction and lifespan. Journal of Sea Research, 185, Article 102228
DOI: 10.1016/j.seares.2022.102228
Caliraja gen. nov., a new skate genus (Rajiformes: Rajidae) from the eastern North Pacific [Caliraja gen. nov., un nuevo género de rayas (Rajiformes: Rajidae) del este del Pacífico Norte]. Revista de Biología Marina y Oceanografía, 57, 271–275
DOI: 10.22370/rbmo.2022.57.Especial.3209
Interspecific Differences in the Flow Regimes and Drag of North Pacific Skate Egg Cases. Integrative and Comparative Biology, 62(3), 805–816
DOI: 10.1093/icb/icac108
Sniffing out Stingray Noses: The Functional Morphology of Batoid Olfaction. Integrative Organismal Biology, 4(1), Article obac043
DOI: 10.1093/iob/obac043
Tropical rays are intrinsically more sensitive to overfishing than the temperate skates. Biological Conservation, 281, Article 110003
DOI: 10.1016/j.biocon.2023.110003
A multi-predator trophic database for the California Current Large Marine Ecosystem. Scientific Data, 10(1), Article 496
DOI: 10.1038/s41597-023-02399-2
Carbonic anhydrase in elasmobranchs and current climate change scenario implications. Comparative Biochemistry and Physiology – Part A, Molecular & Integrative Physiology, 281, Article 111435
DOI: 10.1016/j.cbpa.2023.111435
Review of the parasitic nematodes of marine fishes from off the American continent. Parasitology, 149(14), 1928–1941
DOI: 10.1017/s0031182022001287
Unveiling the batoid plight: insights from global stranding data and future directions. Reviews in Fish Biology and Fisheries, in press
DOI: 10.1007/s11160-024-09837-3