Kinematics and energetics of foraging behavior in Rice’s whales of the Gulf of Mexico
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Anthony Martinez | L. Garrison | M. Soldevilla | Annebelle C. M. Kok | J. Hildebrand | Maya J. Hildebrand | Maria MacArdle
[1] M. Heithaus,et al. Critically endangered Rice’s whales (Balaenoptera ricei) selectively feed on high-quality prey in the Gulf of Mexico , 2023, Scientific reports.
[2] Lijun Dong,et al. First Suction Cup Tagging on a Small and Coastal Form Bryde’s Whale (Balaenoptera edeni edeni) in China to Investigate Its Dive Profiles and Foraging Behaviours , 2022, Journal of Marine Science and Engineering.
[3] William T. Gough,et al. High‐speed chases along the seafloor put Bryde's whales at risk of entanglement , 2022, Conservation Science and Practice.
[4] R. Constantine,et al. Feeding tactics of resident Bryde's whales in New Zealand , 2022, Marine Mammal Science.
[5] E. Hazen,et al. The advantages of diving deep: Fin whales quadruple their energy intake when targeting deep krill patches , 2020, Functional Ecology.
[6] J. Goldbogen,et al. Predator-informed looming stimulus experiments reveal how large filter feeding whales capture highly maneuverable forage fish , 2019, Proceedings of the National Academy of Sciences.
[7] Marla M. Holt,et al. Why whales are big but not bigger: Physiological drivers and ecological limits in the age of ocean giants , 2019, Science.
[8] R. Shadwick,et al. Lunge Feeding in Rorqual Whales. , 2019, Physiology.
[9] P. Madsen,et al. Low energy expenditure and resting behaviour of humpback whale mother-calf pairs highlights conservation importance of sheltered breeding areas , 2019, Scientific Reports.
[10] Theresa A. Kirchner,et al. Hierarchical foraging movement of humpback whales relative to the structure of their prey , 2018, Marine Ecology Progress Series.
[11] P. Madsen,et al. The evolution of foraging capacity and gigantism in cetaceans , 2018, Journal of Experimental Biology.
[12] T. Akamatsu,et al. Tread-water feeding of Bryde’s whales , 2017, Current Biology.
[13] Kaitlin E. Frasier,et al. Spatial distribution and dive behavior of Gulf of Mexico Bryde’s whales: potential risk of vessel strikes and fisheries interactions , 2017 .
[14] A. Goldizen,et al. Potential energy gain by whales outside of the Antarctic: prey preferences and consumption rates of migrating humpback whales (Megaptera novaeangliae) , 2017, Polar Biology.
[15] C. Ware,et al. Prey density and depth affect the fine-scale foraging behavior of humpback whales Megaptera novaeangliae in Sitka Sound, Alaska, USA , 2016 .
[16] A. Friedlaender,et al. Kinematic Diversity in Rorqual Whale Feeding Mechanisms , 2016, Current Biology.
[17] P. Miller,et al. Correction: Body density and diving gas volume of the northern bottlenose whale (Hyperoodon ampullatus) , 2016, Journal of Experimental Biology.
[18] A. Goldizen,et al. Effect of prey type on the fine-scale feeding behaviour of migrating east Australian humpback whales , 2015 .
[19] E. Hazen,et al. Blue whales (Balaenoptera musculus) optimize foraging efficiency by balancing oxygen use and energy gain as a function of prey density , 2015, Science Advances.
[20] P. Rosel,et al. Genetic evidence reveals a unique lineage of Bryde’s whales in the northern Gulf of Mexico , 2014 .
[21] C. Ware,et al. Bottom side‐roll feeding by humpback whales (Megaptera novaeangliae) in the southern Gulf of Maine, U.S.A , 2014 .
[22] Carolyn A. Miller,et al. Effects of Body Condition on Buoyancy in Endangered North Atlantic Right Whales* , 2013, Physiological and Biochemical Zoology.
[23] P. Miller,et al. Neutral buoyancy is optimal to minimize the cost of transport in horizontally swimming seals , 2013, Scientific Reports.
[24] S. DeRuiter,et al. Underwater acrobatics by the world's largest predator: 360° rolling manoeuvres by lunge-feeding blue whales , 2013, Biology Letters.
[25] M. McKenna,et al. Scaling of lunge‐feeding performance in rorqual whales: mass‐specific energy expenditure increases with body size and progressively limits diving capacity , 2012 .
[26] V. Lesage,et al. Optimal foraging theory predicts diving and feeding strategies of the largest marine predator , 2011 .
[27] G. Ellis,et al. Linking killer whale survival and prey abundance: food limitation in the oceans' apex predator? , 2010, Biology Letters.
[28] Colin Ware,et al. Diel changes in humpback whale Megaptera novaeangliae feeding behavior in response to sand lance Ammodytes spp. behavior and distribution , 2009 .
[29] I. Cascão,et al. Bryde's whale (Balaenoptera brydei) stable associations and dive profiles: New insights into foraging behavior , 2009 .
[30] John Calambokidis,et al. Kinematics of foraging dives and lunge-feeding in fin whales , 2006, Journal of Experimental Biology.
[31] Peter L Tyack,et al. Swimming gaits, passive drag and buoyancy of diving sperm whales Physeter macrocephalus , 2004, Journal of Experimental Biology.
[32] Yasuhiko Naito,et al. Factors affecting stroking patterns and body angle in diving Weddell seals under natural conditions , 2003, Journal of Experimental Biology.
[33] D. Croll,et al. High feeding costs limit dive time in the largest whales. , 2002, The Journal of experimental biology.
[34] W. Gurney,et al. The metabolic cost of swimming in marine homeotherms. , 1997, The Journal of experimental biology.
[35] C. Lockyer,et al. Body weights of some species of large whales , 1976 .