105
Phillips RA, Silk JRD, Croxall JP et al (2004) Accuracy of geolocation estimates for flying seabirds. Mar Ecol Prog Ser 266:265–272.
https://doi.org/10.3354/meps266265
Piatt JF, Sydeman W, Wiese F (2007) Introduction: a modern role for
seabirds as indicators. Mar Ecol Prog Ser 352:199–204
Pinaud D, Weimerskirch H (2007) At-sea distribution and scaledependent foraging behaviour of petrels and albatrosses:
a comparative study. J Anim Ecol 76:9–19. https://doi.
org/10.1111/j.1365-2656.2006.01186.x
Pinaud D, Cherel Y, Weimerskirch H (2005) Effect of environmental variability on habitat selection, diet, provisioning behaviour
and chick growth in yellow-nosed albatrosses. Mar Ecol Prog Ser
298:295–304. https://doi.org/10.3354/meps298295
Pistorius P, Hindell M, Crawford R et al (2017) At-sea distribution and
habitat use in king penguins at sub-Antarctic Marion Island. Ecol
Evol 7:3894–3903. https://doi.org/10.1002/ece3.2833
Ponganis PJ (2013) Diving physiology. J Exp Biol 2016:3381–3383.
https://doi.org/10.1242/jeb.076455
Ponganis PJ, Van Dam RP, Marshall G et al (2000) Sub-ice foraging
behavior of emperor penguins. J Exp Biol 203:3275–3278
Priede IG (1984) A basking shark (Cetorhinus maximus) tracked by satellite together with simultaneous remote sensing. Fish Res 2:201–
216. https://doi.org/10.1016/0165-7836(84)90003-1
Priede IG, Miller PI (2009) A basking shark (Cetorhinus maximus)
tracked by satellite together with simultaneous remote sensing
II: new analysis reveals orientation to a thermal front. Fish Res
95:370–372. https://doi.org/10.1016/j.fishres.2008.09.038
Putman NF, Scanlan MM, Billman EJ et al (2014) An inherited magnetic map guides ocean navigation in juvenile pacific salmon. Curr
Biol 24:446–450. https://doi.org/10.1016/j.cub.2014.01.017
Pyke GH (1984) Optimal foraging theory : a critical review. Annu Rev
Ecol Syst 15:523–575
Quinn TP (2005) The behavior and ecology of Pacific salmon and trout.
University of Washington Press, Seattle
Raymond B, Lea MA, Patterson T et al (2015) Important marine habitat off east Antarctica revealed by two decades of multi-species
predator tracking. Ecography 38:121–129. https://doi.org/10.1111/
ecog.01021
Reisinger RR, Oosthuizen WC, Péron G et al (2014) Satellite tagging
and biopsy sampling of killer whales at subantarctic Marion Island:
effectiveness, immediate reactions and long-term responses. PLoS
One 9:e111835. https://doi.org/10.1371/journal.pone.0111835
Reisinger RR, Keith M, Andrews RD et al (2015) Movement and
diving of killer whales (Orcinus orca) at a Southern Ocean archipelago. J Exp Mar Bio Ecol 473:90–102. https://doi.org/10.1016/j.
jembe.2015.08.008
Reisinger RR, Raymond B, Hindell MA et al (2018) Habitat modelling
of tracking data from multiple marine predators identifies important areas in the Southern Indian Ocean. Divers Distrib. https://doi.
org/10.1111/ddi.12702
Rishworth GM, Tremblay Y, Green DB et al (2014) Drivers of timeactivity budget variability during breeding in a pelagic seabird. PLoS
One 9:e116544. https://doi.org/10.1371/journal.pone.0116544
Robinson RA, Learmonth JA, Hutson AM et al (2005) Climate change
and migratory species. BTO Research Report 414
Robinson PW, Costa DP, Crocker DE et al (2012) Foraging behavior and success of a mesopelagic predator in the northeast Pacific
Ocean: insights from a data-rich species, the northern elephant seal.
PLoS One 7:e36728. https://doi.org/10.1371/journal.pone.0036728
Ropert-Coudert Y, Kato A (2006) Are stomach temperature recorders
a useful tool to determine feeding activity. Polar Biosci 20:63–72
Ropert-Coudert Y, Wilson R (2005) Trends and perspectives in animalattached remote sensing. Front Ecol Environ 3:437–444. https://doi.
org/10.1890/1540-9295(2005)003
Ropert-Coudert Y, Kato A, Baudat J et al (2001) Feeding strategies of
free-ranging Adélie penguins Pygoscelis adeliae analysed by multiple data recording. Polar Biol 24:460–466. https://doi.org/10.1007/
s003000100234
Ropert-Coudert Y, Kato A, Liebsch N et al (2004) Monitoring jaw
movements: a cue to feeding activity. Game Wildl Sci 20:1–19
Roquet F, Wunsch C, Forget G et al (2013) Estimates of the
Southern Ocean general circulation improved by animal-borne
instruments. Geophys Res Lett 40:6176–6180. https://doi.
org/10.1002/2013GL058304
Rosen DAS, Gerlinsky CG, Trites AW (2017) Telemetry tags increase
the costs of swimming in northern fur seals, Callorhinus ursinus.
Mar Mammal Sci. https://doi.org/10.1111/mms.12460
Rosenbaum HC, Maxwell SM, Kershaw F et al (2014) Long-range
movement of humpback whales and their overlap with anthropogenic activity in the South Atlantic Ocean. Conserv Biol 28:604–
615. https://doi.org/10.1111/cobi.12225
Ryan PG, Petersen SL, Peters G et al (2004) GPS tracking a marine
predator: the effects of precision, resolution and sampling rate on
foraging tracks of African Penguins. Mar Biol 145:215–223. https://
doi.org/10.1007/s00227-004-1328-4
Sakamoto KQ, Sato K, Ishizuka M et al (2009a) Can ethograms be
automatically generated using body acceleration data from freeranging birds? PLoS One 4:e5379. https://doi.org/10.1371/journal.
pone.0005379
Sakamoto KQ, Takahashi A, Iwata T et al (2009b) From the eye of
the albatrosses: a bird-borne camera shows an association between
albatrosses and a killer whale in the Southern Ocean. PLoS One
4:e7322. https://doi.org/10.1371/journal.pone.0007322
Sato K, Mitani Y, Cameron MF et al (2003) Factors affecting stroking
patterns and body angle in diving Weddell seals under natural conditions. J Exp Biol 206:1461–1470. https://doi.org/10.1242/jeb.00265
Schoener TW (1971) Theory of feeding strategies. Annu Rev Ecol Syst
2:369–404
Scholander PF (1940) Experimental investigations on the respiratory
function in diving mammals and birds. Hvalrådets Skr 22:1–131
Shaffer SA, Tremblay Y, Awkerman JA et al (2005) Comparison of
light- and SST-based geolocation with satellite telemetry in freeranging albatrosses. Mar Biol 147:833–843. https://doi.org/10.1007/
s00227-005-1631-8
Shamoun-Baranes J, Bouten W, van Loon EE et al (2016) Flap or
soar? how a flight generalist responds to its aerial environment.
Philos Trans R Soc Lond B 371:415–422. https://doi.org/10.1098/
rstb.2015.0395
Shepard ELC, Wilson RP, Quintana F et al (2008) Identification of
animal movement patterns using tri-axial accelerometry. Endanger
Species Res 10:47–60. https://doi.org/10.3354/esr00084
Shoji A, Aris-Brosou S, Fayet A et al (2015) Dual foraging and pair
coordination during chick provisioning by Manx shearwaters:
empirical evidence supported by a simple model. J Exp Biol
218:2116–2123. https://doi.org/10.1242/jeb.120626
Shoji A, Aris-Brosou S, Owen E et al (2016) Foraging flexibility and
search patterns are unlinked during breeding in a free-ranging seabird. Mar Biol 163:72. https://doi.org/10.1007/s00227-016-2826-x
Skórka P, Wójcik JD (2008) Habitat utilisation, feeding tactics and age
related feeding efficiency in the Caspian Gull Larus cachinnans.
J Ornithol 149:31–39. https://doi.org/10.1007/s10336-007-0208-3
Sommerfeld J, Kato A, Ropert-Coudert Y et al (2015) Flexible foraging behaviour in a marine predator, the Masked booby (Sula
dactylatra), according to foraging locations and environmental conditions. J Exp Mar Bio Ecol 463:79–86. https://doi.org/10.1016/j.
jembe.2014.11.005
Sommerfeld J, Mendel B, Fock HO et al (2016) Combining bird-borne
tracking and vessel monitoring system data to assess discard use by a
scavenging marine predator, the lesser black-backed gull Larus fuscus. Mar Biol 163:116. https://doi.org/10.1007/s00227-016-2889-8
Sonne C, Teilmann J, Wright AJ et al (2012) Tissue healing in two harbor porpoises (Phocoena phocoena) following long-term satellite
Bio-telemetry as an Essential Tool in Movement Ecology and Marine Conservation
Phillips RA, Silk JRD, Croxall JP et al (2004) Accuracy of geolocation estimates for flying seabirds. Mar Ecol Prog Ser 266:265–272.
https://doi.org/10.3354/meps266265
Piatt JF, Sydeman W, Wiese F (2007) Introduction: a modern role for
seabirds as indicators. Mar Ecol Prog Ser 352:199–204
Pinaud D, Weimerskirch H (2007) At-sea distribution and scaledependent foraging behaviour of petrels and albatrosses:
a comparative study. J Anim Ecol 76:9–19. https://doi.
org/10.1111/j.1365-2656.2006.01186.x
Pinaud D, Cherel Y, Weimerskirch H (2005) Effect of environmental variability on habitat selection, diet, provisioning behaviour
and chick growth in yellow-nosed albatrosses. Mar Ecol Prog Ser
298:295–304. https://doi.org/10.3354/meps298295
Pistorius P, Hindell M, Crawford R et al (2017) At-sea distribution and
habitat use in king penguins at sub-Antarctic Marion Island. Ecol
Evol 7:3894–3903. https://doi.org/10.1002/ece3.2833
Ponganis PJ (2013) Diving physiology. J Exp Biol 2016:3381–3383.
https://doi.org/10.1242/jeb.076455
Ponganis PJ, Van Dam RP, Marshall G et al (2000) Sub-ice foraging
behavior of emperor penguins. J Exp Biol 203:3275–3278
Priede IG (1984) A basking shark (Cetorhinus maximus) tracked by satellite together with simultaneous remote sensing. Fish Res 2:201–
216. https://doi.org/10.1016/0165-7836(84)90003-1
Priede IG, Miller PI (2009) A basking shark (Cetorhinus maximus)
tracked by satellite together with simultaneous remote sensing
II: new analysis reveals orientation to a thermal front. Fish Res
95:370–372. https://doi.org/10.1016/j.fishres.2008.09.038
Putman NF, Scanlan MM, Billman EJ et al (2014) An inherited magnetic map guides ocean navigation in juvenile pacific salmon. Curr
Biol 24:446–450. https://doi.org/10.1016/j.cub.2014.01.017
Pyke GH (1984) Optimal foraging theory : a critical review. Annu Rev
Ecol Syst 15:523–575
Quinn TP (2005) The behavior and ecology of Pacific salmon and trout.
University of Washington Press, Seattle
Raymond B, Lea MA, Patterson T et al (2015) Important marine habitat off east Antarctica revealed by two decades of multi-species
predator tracking. Ecography 38:121–129. https://doi.org/10.1111/
ecog.01021
Reisinger RR, Oosthuizen WC, Péron G et al (2014) Satellite tagging
and biopsy sampling of killer whales at subantarctic Marion Island:
effectiveness, immediate reactions and long-term responses. PLoS
One 9:e111835. https://doi.org/10.1371/journal.pone.0111835
Reisinger RR, Keith M, Andrews RD et al (2015) Movement and
diving of killer whales (Orcinus orca) at a Southern Ocean archipelago. J Exp Mar Bio Ecol 473:90–102. https://doi.org/10.1016/j.
jembe.2015.08.008
Reisinger RR, Raymond B, Hindell MA et al (2018) Habitat modelling
of tracking data from multiple marine predators identifies important areas in the Southern Indian Ocean. Divers Distrib. https://doi.
org/10.1111/ddi.12702
Rishworth GM, Tremblay Y, Green DB et al (2014) Drivers of timeactivity budget variability during breeding in a pelagic seabird. PLoS
One 9:e116544. https://doi.org/10.1371/journal.pone.0116544
Robinson RA, Learmonth JA, Hutson AM et al (2005) Climate change
and migratory species. BTO Research Report 414
Robinson PW, Costa DP, Crocker DE et al (2012) Foraging behavior and success of a mesopelagic predator in the northeast Pacific
Ocean: insights from a data-rich species, the northern elephant seal.
PLoS One 7:e36728. https://doi.org/10.1371/journal.pone.0036728
Ropert-Coudert Y, Kato A (2006) Are stomach temperature recorders
a useful tool to determine feeding activity. Polar Biosci 20:63–72
Ropert-Coudert Y, Wilson R (2005) Trends and perspectives in animalattached remote sensing. Front Ecol Environ 3:437–444. https://doi.
org/10.1890/1540-9295(2005)003
Ropert-Coudert Y, Kato A, Baudat J et al (2001) Feeding strategies of
free-ranging Adélie penguins Pygoscelis adeliae analysed by multiple data recording. Polar Biol 24:460–466. https://doi.org/10.1007/
s003000100234
Ropert-Coudert Y, Kato A, Liebsch N et al (2004) Monitoring jaw
movements: a cue to feeding activity. Game Wildl Sci 20:1–19
Roquet F, Wunsch C, Forget G et al (2013) Estimates of the
Southern Ocean general circulation improved by animal-borne
instruments. Geophys Res Lett 40:6176–6180. https://doi.
org/10.1002/2013GL058304
Rosen DAS, Gerlinsky CG, Trites AW (2017) Telemetry tags increase
the costs of swimming in northern fur seals, Callorhinus ursinus.
Mar Mammal Sci. https://doi.org/10.1111/mms.12460
Rosenbaum HC, Maxwell SM, Kershaw F et al (2014) Long-range
movement of humpback whales and their overlap with anthropogenic activity in the South Atlantic Ocean. Conserv Biol 28:604–
615. https://doi.org/10.1111/cobi.12225
Ryan PG, Petersen SL, Peters G et al (2004) GPS tracking a marine
predator: the effects of precision, resolution and sampling rate on
foraging tracks of African Penguins. Mar Biol 145:215–223. https://
doi.org/10.1007/s00227-004-1328-4
Sakamoto KQ, Sato K, Ishizuka M et al (2009a) Can ethograms be
automatically generated using body acceleration data from freeranging birds? PLoS One 4:e5379. https://doi.org/10.1371/journal.
pone.0005379
Sakamoto KQ, Takahashi A, Iwata T et al (2009b) From the eye of
the albatrosses: a bird-borne camera shows an association between
albatrosses and a killer whale in the Southern Ocean. PLoS One
4:e7322. https://doi.org/10.1371/journal.pone.0007322
Sato K, Mitani Y, Cameron MF et al (2003) Factors affecting stroking
patterns and body angle in diving Weddell seals under natural conditions. J Exp Biol 206:1461–1470. https://doi.org/10.1242/jeb.00265
Schoener TW (1971) Theory of feeding strategies. Annu Rev Ecol Syst
2:369–404
Scholander PF (1940) Experimental investigations on the respiratory
function in diving mammals and birds. Hvalrådets Skr 22:1–131
Shaffer SA, Tremblay Y, Awkerman JA et al (2005) Comparison of
light- and SST-based geolocation with satellite telemetry in freeranging albatrosses. Mar Biol 147:833–843. https://doi.org/10.1007/
s00227-005-1631-8
Shamoun-Baranes J, Bouten W, van Loon EE et al (2016) Flap or
soar? how a flight generalist responds to its aerial environment.
Philos Trans R Soc Lond B 371:415–422. https://doi.org/10.1098/
rstb.2015.0395
Shepard ELC, Wilson RP, Quintana F et al (2008) Identification of
animal movement patterns using tri-axial accelerometry. Endanger
Species Res 10:47–60. https://doi.org/10.3354/esr00084
Shoji A, Aris-Brosou S, Fayet A et al (2015) Dual foraging and pair
coordination during chick provisioning by Manx shearwaters:
empirical evidence supported by a simple model. J Exp Biol
218:2116–2123. https://doi.org/10.1242/jeb.120626
Shoji A, Aris-Brosou S, Owen E et al (2016) Foraging flexibility and
search patterns are unlinked during breeding in a free-ranging seabird. Mar Biol 163:72. https://doi.org/10.1007/s00227-016-2826-x
Skórka P, Wójcik JD (2008) Habitat utilisation, feeding tactics and age
related feeding efficiency in the Caspian Gull Larus cachinnans.
J Ornithol 149:31–39. https://doi.org/10.1007/s10336-007-0208-3
Sommerfeld J, Kato A, Ropert-Coudert Y et al (2015) Flexible foraging behaviour in a marine predator, the Masked booby (Sula
dactylatra), according to foraging locations and environmental conditions. J Exp Mar Bio Ecol 463:79–86. https://doi.org/10.1016/j.
jembe.2014.11.005
Sommerfeld J, Mendel B, Fock HO et al (2016) Combining bird-borne
tracking and vessel monitoring system data to assess discard use by a
scavenging marine predator, the lesser black-backed gull Larus fuscus. Mar Biol 163:116. https://doi.org/10.1007/s00227-016-2889-8
Sonne C, Teilmann J, Wright AJ et al (2012) Tissue healing in two harbor porpoises (Phocoena phocoena) following long-term satellite
Bio-telemetry as an Essential Tool in Movement Ecology and Marine Conservation
