Diving physiology of marine mammals and birds: the development of biologging techniques.

Cassondra L Williams, Paul J Ponganis
Author Information
  1. Cassondra L Williams: National Marine Mammal Foundation, 2240 Shelter Island Drive, Suite 200, San Diego, CA 92106, USA.
  2. Paul J Ponganis: Scripps Institution of Oceanography, University of California San Diego, La Jolla, CA 92093-0204, USA.

Abstract

In the 1940s, Scholander and Irving revealed fundamental physiological responses to forced diving of marine mammals and birds, setting the stage for the study of diving physiology. Since then, diving physiology research has moved from the laboratory to the field. Modern biologging, with the development of microprocessor technology, recorder memory capacity and battery life, has advanced and expanded investigations of the diving physiology of marine mammals and birds. This review describes a brief history of the start of field diving physiology investigations, including the invention of the time depth recorder, and then tracks the use of biologging studies in four key diving physiology topics: heart rate, blood flow, body temperature and oxygen store management. Investigations of diving heart rates in cetaceans and O store management in diving emperor penguins are highlighted to emphasize the value of diving physiology biologging research. The review concludes with current challenges, remaining diving physiology questions and what technologies are needed to advance the field. This article is part of the theme issue 'Measuring physiology in free-living animals (Part I)'.

Keywords

References

  1. J Exp Biol. 2011 Oct 15;214(Pt 20):3325-39 [PMID: 21957096]
  2. Front Physiol. 2018 Oct 25;9:1462 [PMID: 30459631]
  3. Comp Biochem Physiol A Mol Integr Physiol. 1999 Dec;124(4):523-30 [PMID: 10682251]
  4. Nature. 1966 Oct 22;212(5060):407-8 [PMID: 5970155]
  5. Anat Rec (Hoboken). 2017 Nov;300(11):1935-1941 [PMID: 28971623]
  6. J Acoust Soc Am. 1996 Oct;100(4 Pt 1):2531-9 [PMID: 8865656]
  7. J Exp Biol. 2017 Apr 15;220(Pt 8):1533-1540 [PMID: 28167807]
  8. J Exp Biol. 2011 Sep 1;214(Pt 17):2973-87 [PMID: 21832140]
  9. Am J Physiol Regul Integr Comp Physiol. 2016 Oct 1;311(4):R788-R796 [PMID: 27581813]
  10. Med Biol Eng Comput. 1995 Mar;33(2):145-51 [PMID: 7643651]
  11. J Exp Biol. 2014 May 1;217(Pt 9):1485-95 [PMID: 24790099]
  12. J Exp Biol. 2003 Jan;206(Pt 1):43-57 [PMID: 12456696]
  13. Compr Physiol. 2021 Jun 30;11(3):1979-2015 [PMID: 34190338]
  14. J Exp Biol. 1997;200(Pt 4):661-75 [PMID: 9318399]
  15. Science. 1999 Feb 12;283(5404):993-6 [PMID: 9974394]
  16. J Exp Biol. 2016 Jul 1;219(Pt 13):2066-77 [PMID: 27385756]
  17. J Appl Physiol (1985). 1986 Oct;61(4):1560-9 [PMID: 3096941]
  18. PLoS One. 2013 Dec 23;8(12):e83248 [PMID: 24376671]
  19. J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2012 Aug;198(8):583-91 [PMID: 22585422]
  20. Comp Biochem Physiol A Mol Integr Physiol. 2003 Jul;135(3):477-87 [PMID: 12829055]
  21. J Exp Biol. 2008 Apr;211(Pt 8):1169-79 [PMID: 18375841]
  22. J Exp Biol. 2011 Jun 1;214(Pt 11):1802-12 [PMID: 21562166]
  23. J Comp Physiol B. 2017 Jan;187(1):29-50 [PMID: 27686668]
  24. Science. 1981 Feb 13;211(4483):717-9 [PMID: 7192883]
  25. Nat Commun. 2015 Jan 16;6:6055 [PMID: 25592286]
  26. J Exp Biol. 1997 Jun;200(Pt 11):1623-6 [PMID: 9202449]
  27. J Exp Biol. 2017 Oct 15;220(Pt 20):3802-3811 [PMID: 29046419]
  28. Science. 1966 Mar 25;151(3717):1553-4 [PMID: 5909593]
  29. Proc Biol Sci. 2012 Mar 22;279(1731):1041-50 [PMID: 22189402]
  30. Science. 2017 Dec 08;358(6368):1328-1331 [PMID: 29217577]
  31. Physiol Biochem Zool. 2012 Mar-Apr;85(2):120-33 [PMID: 22418705]
  32. J Exp Biol. 1992 Apr;165:161-80 [PMID: 1588249]
  33. Acta Physiol Scand. 1983 Jun;118(2):109-16 [PMID: 6624500]
  34. J Exp Biol. 1993 Jan;174:139-54 [PMID: 8440964]
  35. Comp Biochem Physiol A Mol Integr Physiol. 2006 Sep;145(1):1-6 [PMID: 16846744]
  36. J Appl Physiol (1985). 2007 Mar;102(3):1220-8 [PMID: 17122378]
  37. Am J Physiol. 1986 Feb;250(2 Pt 2):R175-87 [PMID: 3511736]
  38. Br J Anaesth. 2003 Sep;91(3):397-407 [PMID: 12925481]
  39. J Exp Biol. 2010 Feb 15;213(4):585-92 [PMID: 20118309]
  40. Sci Am. 1963 Dec;209:92-106 [PMID: 14088073]
  41. Science. 1985 Aug 9;229(4713):556-8 [PMID: 4023700]
  42. Science. 1976 Jul 30;193(4251):411-2 [PMID: 935876]
  43. J Exp Biol. 2004 Oct;207(Pt 22):3917-26 [PMID: 15472022]
  44. J Exp Biol. 2016 Aug 15;219(Pt 16):2458-68 [PMID: 27296044]
  45. J Exp Biol. 2000 Sep;203(Pt 18):2819-32 [PMID: 10952881]
  46. Physiol Zool. 1998 Jan-Feb;71(1):74-84 [PMID: 9472815]
  47. J Exp Biol. 2005 Aug;208(Pt 15):2973-80 [PMID: 16043602]
  48. J Exp Biol. 2001 Dec;204(Pt 23):4081-92 [PMID: 11809782]
  49. Comp Biochem Physiol A Mol Integr Physiol. 2021 Feb;252:110841 [PMID: 33186706]
  50. J Exp Biol. 2013 Sep 1;216(Pt 17):3332-41 [PMID: 23926312]
  51. Curr Biol. 2016 Nov 21;26(22):R1175-R1176 [PMID: 27875692]
  52. J Exp Biol. 2008 Dec;211(Pt 23):3712-9 [PMID: 19011211]
  53. Respir Physiol. 2000 Oct;123(1-2):71-85 [PMID: 10996189]
  54. Comp Biochem Physiol A Mol Integr Physiol. 2007 Jun;147(2):438-44 [PMID: 17321772]
  55. J Appl Physiol. 1966 Sep;21(5):1633-6 [PMID: 4958831]
  56. J Exp Biol. 1993 Oct;183:341-6 [PMID: 8245765]
  57. Am J Physiol Regul Integr Comp Physiol. 2007 May;292(5):R2028-38 [PMID: 17218442]
  58. J Exp Biol. 2007 Dec;210(Pt 24):4279-85 [PMID: 18055617]
  59. PLoS One. 2014 Mar 26;9(3):e92633 [PMID: 24670984]
  60. J Exp Biol. 2018 Jan 9;221(Pt 1): [PMID: 29122951]
  61. J Exp Biol. 1992 Sep;170:35-42 [PMID: 1402612]
  62. J Exp Biol. 1999 Oct;202(Pt 20):2763-9 [PMID: 10504312]
  63. J Exp Biol. 2006 Nov;209(Pt 21):4238-53 [PMID: 17050839]
  64. Physiol Biochem Zool. 2010 May-Jun;83(3):531-40 [PMID: 20334547]
  65. J Exp Biol. 1984 Jan;108:419-28 [PMID: 6423763]
  66. J Appl Physiol (1985). 1963 May 01;18(3):471-477 [PMID: 31083864]
  67. Am J Physiol Regul Integr Comp Physiol. 2009 Oct;297(4):R927-39 [PMID: 19641132]
  68. J Exp Biol. 2000 Nov;203(Pt 21):3265-74 [PMID: 11023846]
  69. J Comp Physiol B. 1997 Jan;167(1):9-16 [PMID: 9051904]
  70. Proc Natl Acad Sci U S A. 2019 Dec 10;116(50):25329-25332 [PMID: 31767746]
  71. Comp Biochem Physiol A Mol Integr Physiol. 2005 Dec;142(4):478-84 [PMID: 16297646]
  72. Nature. 1972 Aug 4;238(5362):280 [PMID: 4558562]
  73. Respir Physiol Neurobiol. 2008 Jun 30;162(1):85-92 [PMID: 18534926]
  74. J Exp Biol. 2002 Dec;205(Pt 24):3769-74 [PMID: 12432000]
  75. Comp Biochem Physiol A Mol Integr Physiol. 2001 Jul;129(4):811-20 [PMID: 11440867]
  76. Comp Biochem Physiol A Comp Physiol. 1973 Oct 1;46(2):227-40 [PMID: 4147892]
  77. PLoS One. 2018 Jul 12;13(7):e0200287 [PMID: 30001369]
  78. J Appl Physiol. 1968 Feb;24(2):252-3 [PMID: 5637691]
  79. Physiol Rev. 1997 Jul;77(3):837-99 [PMID: 9234967]
  80. J Exp Biol. 2011 Sep 1;214(Pt 17):2854-63 [PMID: 21832128]
  81. J Comp Physiol B. 2004 Mar;174(2):139-47 [PMID: 14639484]
  82. Opt Lett. 2009 Nov 15;34(22):3556-8 [PMID: 19927209]
  83. Philos Trans R Soc Lond B Biol Sci. 2021 Aug 16;376(1831):20200225 [PMID: 34176321]
  84. J Exp Biol. 2004 May;207(Pt 11):1953-67 [PMID: 15107448]
  85. J Exp Biol. 1997 Aug;200(Pt 15):2083-95 [PMID: 9255950]
  86. Am J Physiol. 1987 Aug;253(2 Pt 2):R344-51 [PMID: 3618833]
  87. Am J Physiol Regul Integr Comp Physiol. 2006 Sep;291(3):R608-18 [PMID: 16627689]
  88. J Comp Physiol B. 1991;160(6):637-44 [PMID: 2045544]
  89. Philos Trans R Soc Lond B Biol Sci. 2021 Aug 16;376(1831):20200228 [PMID: 34176326]
  90. J Exp Biol. 2017 May 1;220(Pt 9):1626-1633 [PMID: 28202583]
  91. J Appl Physiol (1985). 1995 Oct;79(4):1148-55 [PMID: 8567556]
  92. J Exp Biol. 2010 Jan 1;213(1):52-62 [PMID: 20008362]
  93. Biol Lett. 2012 Dec 23;8(6):1047-9 [PMID: 22993241]
  94. J Appl Physiol (1985). 1986 Oct;61(4):1570-6 [PMID: 3781968]
  95. J Exp Biol. 2009 Jan;212(Pt 2):217-24 [PMID: 19112140]
  96. Science. 1966 Apr 15;152(3720):384-6 [PMID: 17775177]
  97. J Exp Biol. 2009 Oct;212(Pt 20):3330-8 [PMID: 19801437]
  98. Comp Biochem Physiol A Comp Physiol. 1972 Sep 1;43(1):31-6 [PMID: 4404585]
  99. J Exp Biol. 2020 Jun 25;223(Pt 12): [PMID: 32587107]
  100. J Exp Biol. 2004 Feb;207(Pt 6):973-82 [PMID: 14766956]
  101. J Exp Biol. 2019 Oct 2;222(Pt 19): [PMID: 31511341]
  102. Philos Trans R Soc Lond B Biol Sci. 2021 Aug 16;376(1831):20200229 [PMID: 34176328]
  103. Nature. 1975 Jul 3;256(5512):37-8 [PMID: 1134577]
  104. PLoS Biol. 2019 Jun 18;17(6):e3000306 [PMID: 31211787]
  105. J Exp Biol. 2014 May 1;217(Pt 9):1525-34 [PMID: 24790100]
  106. J Exp Biol. 2021 Jan 11;224(Pt 1): [PMID: 33257430]
  107. J Exp Biol. 2003 May;206(Pt 10):1751-63 [PMID: 12682106]
  108. J Exp Biol. 2002 May;205(Pt 9):1189-97 [PMID: 11948196]

MeSH Term

Animals
Aquatic Organisms
Birds
Blood Circulation
Body Temperature
Diving
Heart Rate
Mammals
Oxygen

Chemicals

Oxygen

Word Cloud

Created with Highcharts 10.0.0divingphysiologymarinebiologgingmammalsfieldheartstoremanagementbirdsresearchdevelopmentrecorderinvestigationsreviewratetemperatureoxygen1940sScholanderIrvingrevealedfundamentalphysiologicalresponsesforcedsettingstagestudySincemovedlaboratoryModernmicroprocessortechnologymemorycapacitybatterylifeadvancedexpandeddescribesbriefhistorystartincludinginventiontimedepthtracksusestudiesfourkeytopics:bloodflowbodyInvestigationsratescetaceansOemperorpenguinshighlightedemphasizevalueconcludescurrentchallengesremainingquestionstechnologiesneededadvancearticlepartthemeissue'Measuringfree-livinganimalsPart'Divingbirds:techniquesdiveresponsefree-rangingendotherms

Similar Articles

Cited By