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Cetacean ‘Navigation’ and the Geomagnetic Field

Published online by Cambridge University Press:  21 October 2009

M. Klinowska
Affiliation:
Research Group in Mammalian Ecology and Reproduction, Physiological Laboratory, University of Cambridge

Abstract

On ne sait pas pourquoi ils s'echouent parfois sur la plage; car on assure qu'ils le font assez souvent, quand la fantaisie leur en prend, et sans aucune cause appréciable.

Type
Research Article
Copyright
Copyright © The Royal Institute of Navigation 1988

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References

REFERENCES

1 Aristotle: Histoire des Animaux Book ix, Chapter xxxv Bartelémy-Saint-Hilaere, J. (Trans.) (1883), p. 289. Paris: Hachette.Google Scholar
2Schmidt-Koenig, K. and Keeton, W. T. (1978).Animal Migration, Navigation and Homing. Berlin, Heidelberg, New York:Springer-Verlag.Google Scholar
3Geraci, J. R. and St.Aubin, D. J. (1979). Biology of marine mammals: insights through strandings. Report No. MMC-77/13, US Marine Mammal Commission.Google Scholar
4RSPCA (1985).Report of the Stranded Whale Workshop. Horsham, Sussex.Google Scholar
5Klinowska, M. (1983). Is the cetacean map geomagnetic? Evidence from strandings. Aquatic Mammals, 10, 15.Google Scholar
6Klinowska, M. (1985). Cetacean live stranding sites relate to geomagnetic topography. Aquatic Mammals, 11, 2732.Google Scholar
7Klinowska, M. (1985). Interpretation of the UK cetacean stranding records. Rep. Int. Whal. Commn, 35, 459467.Google Scholar
8Klinowska, M. (1985). Cetacean live stranding dates relate to geomagnetic disturbances.Aquatic Mammals, 11, 109119Google Scholar
9Klinowska, M. (1985). Further analyses relating to the effect of geomagnetic fields. Appendix IX. Report of the Stranded Whale Workshop, p. 56. Horsham, Sussex: RSPCA.Google Scholar
10Klinowska, M. (1986). The cetacean magnetic sense – evidence from strandings.Research on Dolphins (Ed. Bryden, M. M. and Harrison, R. J.), pp. 401432.Oxford University Press.Google Scholar
11Klinowska, M. (1986). The cetacean travel strategy.Biophysical Effects of Steady Magnetic Fields (Ed. Maret, C., Boccara, N. and Kiepenheuer, J.), p. 206.Berlin, Heidelberg, New York: Springer-Verlag.Google Scholar
12Vacquier, V. (1972). Geomagnetism in Marine Geology. Amsterdam: Elsevier.Google Scholar
13Chernosky, E. J.Fougere, P. F. and Hutchinson, R. O. (1966). The geomagnetic field. Handbook of Geophysics and Space Environments (Ed. Valley, S. C.), pp. 11.111.61. New York, San Francisco, Toronto, Sydney: McGraw-Hill.Google Scholar
14Pittendrigh, C. S. (1981). Circadian organisation and the photoperiodic phenomenon.Biological Clocks in Seasonal Reproductive Cycles: Proceedings of the 32nd Symposium of the Colston Research Society (Ed. Follett, B. K. and Follett, D. E.), pp. 135Bristol: Scientechnica.Google Scholar
15Lincoln, J. V. (1967). Geomagnetic indices. Physics of Geomagnetic Phenomena, vol. 1 (Ed. Matsushita, S. and Campbell, W. H.), pp. 67100.New York and London: Academic Press.CrossRefGoogle Scholar
16Keeton, W. T., Larkin, T. S. and Windsor, D. M. (1974). Normal fluctuations in the Earth's magnetic field influence pigeon orientation. J. Comp. Physiol., 95, 95103.CrossRefGoogle Scholar
17Martin, H. and Lindauer, M. (1977) Der Einfluss der Erdmagnetfelds und die Schwereorientierung der Honigbiene. J. Comp. Physiol. 122, 145187.Google Scholar
18Easton, D. F., Klinowska, M. and Sheldrick, M. C. (1982). A preliminary analysis of the British stranding records of the harbour porpoise (Phocoena phocoena). Rep. Int. Whal. Commn, 32, 120121.Google Scholar
19Webb, W. (1976). Coastguard: An Official History of H.M. Coastguard. London: HMSO.Google Scholar
20Klecka, W. R. (1975). Discriminant analysis. Statistical Package for the Social Sciences, 2nd Edition (Ed. Nie, N. H., Hull, E. H., Jenkins, J. G., Steinbrenner, K. and Bent, D. H.), pp. 434467. New York, San Francisco, Toronto, Sydney: McGraw-Hill.Google Scholar
21Batschlet, E. (1981). Circular Statistics in Biology.London, New York: Academic Press.Google Scholar
22Geraci, J. R. (1978). The enigma of marine mammal strandings. Oceanus, 21, 3847.Google Scholar
23Best, P. B. (1982). Whales: why do they strand? African Wildlife, 36, 6101.Google Scholar
24Sergeant, D. E. (1982). Mass strandings of toothed whales (Odontoceti) as a population phenomenon. Sci. Rep. Whales Res. Inst., Tokyo, 34, 147.Google Scholar
25Dudok van Heel, W. H. (1962). Sound and Cetacea.Neth. J. Sea Res., 1, 407507.Google Scholar
26Banner, F. T., Collins, M. B. and Massie, K. S. (Eds) (1979). The North-west European Shelf Seas: the Sea Bed and the Sea in Motion. Vols. I and II. Elsevier Oceanography Series 24A. Amsterdam, Oxford, New York: Elsevier Scientific.Google Scholar
27Walcott, C. (1978). Anomalies in the Earth's magnetic field increase the scatter of pigeon's vanishing bearings. Animal Migration, Navigation and Homing (Ed. Schmidt-Koenig, K. and Keeton, W. T.), pp. 143151. Berlin: Springer-Verlag.CrossRefGoogle Scholar
28Graue, J. L. (1965). Initial orientation in pigeon homing related to magnetic contours. Am. Zool., 5, 704.Google Scholar
29Talkington, L. (1967). Bird navigation and geomagnetism. Am. Zool., 7, 199.Google Scholar
30Wagner, G. (1976). Das Orientierungsverhalten von Brieftauben im erdmagnetisch gestorten Gebiete das Chasserals. Rev. Suisse Zool., 83, 883–90.Google Scholar
31Gould, J. L. (1980). The case for magnetic sensitivity in birds and bees (such as it is). Am. Sci., 68, 256267.Google Scholar
32Gaskin, D. E. (1982). The Ecology of Whales and Dolphins. London: Heinemann.Google Scholar
33Kirschvink, J. L. (1982). Birds, bees and magnetism. Trends in Neurosci., 5, 160167.CrossRefGoogle Scholar
34Lockyer, C. H. and Brown, S. G. (1981). The migration of whales. Animal Migration (Ed. Aidley, D. J.). Society for Experimental Biology Seminar Series 13, pp. 1O5139. Cambridge University Press.Google Scholar
35Evans, W. E. (1974). Radiotelemetric studies of two species of small Odontocete cetaceans. The Whale Problem: a Status Report (Ed. Schevill, W. E.), pp. 385–94. Cambridge, USA: Harvard University Press.CrossRefGoogle Scholar
36Evans, W. E. (1984). Personal communication.Google Scholar
37Fraser, A. M. (1984). An analysis for Eastern Canada of the hypothesis that cetacean live strandings are due to mistakes made by the animals trying to use geomagnetic topography for orientation. MST Part 11 Project Report. Department of Applied Biology, Cambridge.Google Scholar
38Cornwell-Huston, C. (1985). Magnetic anomalous conditions affecting cetacean live mass strandings: the case of Cape Cod Bay, Massachusetts. M.S. Thesis, Department of Geography, Boston University, USA.Google Scholar
39Walker, M. M., Bitterman, M. E. and Kirschvink, J. L. (1986). Experimental and correlational studies of responses to magnetic field stimuli by different species. Biophysical Effects of Steady Magnetic Fields (Ed. Maret, G., Kiepenheur, J. and Boccara, N.), pp. 194205. Berlin: Springer-Verlag.Google Scholar
40Evans, P. G. H. (1980). Cetaceans in British waters. Mammal Rev., 10, 152.CrossRefGoogle Scholar
41Leatherwood, S. and Evans, W. E. (1979). Some recent uses and potentials of radiotelemetry in field studies of cetaceans. Behaviour of Marine Mammals, Vol. 3 (Ed. Winn, H. E. and Olla, B. L.) Cetaceans, pp. 132. New York, London: Plenum.Google Scholar
42Brown, F. A. and Scow, K. M. (1978). Magnetic induction of a circadian cycle in hamsters. J. Interdisciplinary Cycle Res., 9, 137145.Google Scholar
43Wever, R. (1968). Einfluss Schwacher electro-magnetischer Felder auf die circadiane Periodik des Menschen. Naturwissenschaften, 55, 2932.CrossRefGoogle Scholar
44Brown, F. A. (1978). Interrelations between biological rhythms and clocks. Aging and Biological Rhythms (Ed. Samis, H. V. and Capobianco, S.), pp. 215234. London and New York: Plenum.CrossRefGoogle ScholarPubMed
45Viguier, C. (1882). Le sens d’orientation et ses organes chez les animaux et chez 1’homme. Rev. Phil., 14, 136.Google Scholar
46Wojtusiak, R. J. (1949). Polish investigations on homing in birds and their orientation in space. proc. Linn. Soc. London, Session 160, Part 2, 99108.Google Scholar
47Davies, L. D., Pappajohn, K. and Piavnieks, M. (1962). Bibliography of biological effects of magnetic fields. Fed. Proc 21 338.Google Scholar
48Kirschvink, J. L., Jones, D. S. and MacFadden, B. J. (Eds) (1985). Magnetite Biomineralization and Magnetoreception in Organisms. New York: Plenum.CrossRefGoogle Scholar
49Maret, G.Kiepenheuer, J. and Boccara, N. (Eds) (1986). Biophysical Effects of Steady Magnetic Fields. Berlin: Springer-Verlag.CrossRefGoogle Scholar
50Frankel, R. B. (1986). Magnetite and magnetotaxis in bacteria and algae.Biophysical Effects of Steady Magnetic Fields, pp. 173–79. Berlin: Springer-Verlag.Google Scholar
51Bauer, G. B., Fuller, M., Perry, A.Dunn, J. R. and Zoeger, J. (1985). Magnetoreception and biomineralization of magnetite in cetaceans. Magnetite Biomineralization and Magnetoreception in Organisms (Ed. Kirschvink, J. L., Jones, D. S. and McFadden, B. J.). pp. 489508. New York: Plenum.CrossRefGoogle Scholar
52Kirschvink, J. L. and Walker, M. M. (1986). Biogenic magnetite in higher organisms and the current status of the hypothesis of ferrimagnetic magnetoreception. Biophysical Effects of Steady Magnetic Fields (Ed. Maret, G., Kiepenheur, J. and Boccara, N.), pp. 180–88. Berlin: Springer-Verlag.CrossRefGoogle Scholar
53Cremer-Bartels, G. and Krause, K. (1986). Retinal response to variations of the Earth'smagnetic field. Biophysical Effects of Steady Magnetic Fields (Ed. Maret, G.Kiepenheur, J. and Boccara, N.), pp. 107112. Berlin: Springer-Verlag.CrossRefGoogle Scholar
54Krause, K.Cremer-Bartels, G. and Hennekes, R. (1986). Influence of geomagnetic field alterations on electric retinal potentials and dark adaptation in humans. Biophysical Effects of Steady Magnetic Fields, pp. 113–16. Berlin: Springer-Verlag.CrossRefGoogle Scholar
55Semm, P. and Demaine, C. (1986). Effects of Earth-strength magnetic stimulion the pineal gland and central nervous neurons. Biophysical Effects of Steady Magnetic Fields (Ed. Maret, G., Kiepenheur, J. and Boccara, N.), pp. 117119Berlin: Springer-Verlag.Google Scholar
56Schulten, K. and Windemuth, A. (1986). Model for a physiological magnetic compass. Biophysical Effects of Steady Magnetic Fields (Ed. Maret, G., Kiepenheur, J. and Boccara, N.), pp. 99106. Berlin: Springer-Verlag.CrossRefGoogle Scholar