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External devices on penguins: how important is shape?

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Abstract

Many researchers use external recording or transmitting devices to elucidate the marine ecology of fish, mammals and birds. Deleterious effects of these instruments on the parameters researchers wish to measure are hardly ever discussed in the literature. Research has shown that, in penguins, volume and cross-sectional area of instruments negatively correlate with swimming speed. dive depth and breeding success, and that device colour affects bird behaviour. Here, a large (200 g, cross-sectional area 2100 mm2) streamlined device was attached to the lower back of Adélie penguins (Pygoscelis adeliae on Ardley Island, South Shetland Island in 1992) and its effects on bird swimming speed and energetics were measured in a water canal in Antarctica. Although the device was 10.5% of penguin cross-sectional area, swimming speed was reduced by only 8.3% and mean power input increased by only 5.6% while swimming. Although our streamlined device was five times more voluminous than one of our older units, the effect on swimming energetics could be reduced by 87%.

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References

  • Ancel, A., Kooyman, G. L., Ponganis, P. J., Gendner, J.-P., Lignon, J., Mestre, X., Huin, N., Thorson, P. H., Robisson, P., LeMaho, Y. (1992) Foraging behaviour of Emperor penguins as a resource detector in winter and summer. Nature, Lond. 360: 336–339

    Google Scholar 

  • Bannasch, R., (in press). Hydrodynamics of penguins — an experimental approach. In: Dann, P., Normann, I., Reilly, P. (eds.). Advances in penguin biology. Surrey Beatty, Sydney

  • Bannasch, R., Wilson, R. P., Culik, B. (in press). Hydrodynamic aspects of design and attachment of a back-mounted device in penguins. J. exp. Biol.

  • Culik, B., Wilson, R. P. (1991a). Swimming energetics and performance of instrumented Adélie penguins. J. exp. Biol. 158: 355–368

    Google Scholar 

  • Culik, B., Wilson, R. P. (1991b). Energetics of under-water swimming in Adélie penguins. J. comp. Physiol. (Sect. B) 161: 285–291

    Google Scholar 

  • Culik, B., Wilson, R. P. (1992). Field metabolic rates of instrumented penguins using doubly-labelled water. J. comp. Physiol. (Sect. B) 162: 567–573

    Google Scholar 

  • Culik, B., Woakes, A. J., Adelung, D., Wilson, R. P., Coria, N. R., Spairani, H. J. (1990). Energy requirements of Adélie penguin chicks. J. comp. Physiol. (Sect. B) 160: 61–70

    Google Scholar 

  • Gales, R., Williams, C., Ritz, D. (1990). Foraging behaviour of the Little penguin: initial results and assessment of instrument effect. J. Zool., Lond 220: 61–85

    Google Scholar 

  • Gentry, R. L., Kooyman, G. L. (1986). Fur seals. Maternal strategies on land and at sea. Princeton University Press, New Jersey

    Google Scholar 

  • Hammond, P. S., McConnell, B. J., Fedak, M. A., Nicholas, K. S. (1992). Grey seal activity patterns around the Farne Islands. In: Priede, I. G., Swift, S. M. (eds.) Wildlife telemetry. Remote monitoring and tracking of animals. Ellis Horwood, London, p 677–686

    Google Scholar 

  • McGovern, P., McCarthy, T. K. (1992). Local movements of freshwater eels (Anguilla anguilla) in Western Ireland. In: Priede, I. G., Swift, S. M. (eds.) Wildlife telemetry. Remote monitoring and tracking of animals. Ellis Horwood, London, p. 319–327

    Google Scholar 

  • Oehme, H., Bannasch, R. (1989). Energetics of locomotion in penguins. In: Wieser, W., Graiger, E. (eds.) Energy transformation in cells and organisms. Thieme Verlag, Stuttgart, p 230–240

    Google Scholar 

  • Priede, I. G., Swift, S. M. (1992). Wildlife telemetry. Remote monitoring and tracking of animals. Ellis Horwood, London

    Google Scholar 

  • Sadleir, R. M. F. S., Lay, K. M. (1990). Foraging movements of Adélie penguins (Pygoscelis adeliae) in McMurdo Sound. In: Darby, J., Davis, L. S. (eds.) Penguin Biology. Academic Press, San Diego, p. 157–179

    Google Scholar 

  • Whitehead, M. D. (1989). Maximum diving depth of the Adélie penguin, Pygoscelis adeliae, during the chick-rearing period in Prydz Bay, Antarctica. Polar Biol. 9: 329–332

    Google Scholar 

  • Williams, T. D., Briggs, D. R., Croxall, J. P., Naito, Y., Kato, A. (1992). Diving pattern and performance in relation to foraging ecology in the gentoo penguin (Pygoscelis papua). J. Zool., Lond. 227:211–230

    Google Scholar 

  • Wilson, R. P. (1989). Diving depths of Gentoo Pygoscelis papua and Adélie Pygoscelis adeliae penguins at Esperanza Bay, Antarctic Peninsula. Cormorant 17: 1–8

    Google Scholar 

  • Wilson, R. P., Culik, B. (1992). Packages on penguins and device-induced data. In Priede, I. G., Swift, S. (eds.) Wildlife telemetry, Ellis Horwood, New York, p. 573–580

    Google Scholar 

  • Wilson, R. P., Culik, B. M., Adelung, D., Spairani, H. J., Coria, N. R. (1991). Depth utilization by breeding Adélie penguins, Pygoscelis adeliae, at Esperanza Bay, Antarctica. Mar. Biol. 109: 181–189

    Google Scholar 

  • Wilson, R. P., Culik, B. M., Bannasch, R., Driesen, H. H. (1993a). Monitoring penguins at sea using data loggers. Biotelemetry XII: 205–214

    Google Scholar 

  • Wilson, R. P., Grant, W. S., Duffy, D. C. (1986). Recording devices on free-ranging marine animals:does measurement affect performance? Ecology 67:1091–1093

    Google Scholar 

  • Wilson, R. P., Pütz, K., Bost, C. A., Culik, B. M., Bannasch, R., Reins, T., Adelung, D. (1993b). Diel dive depth in penguins in relation to diel vertical migration of prey: whose dinner by candlelight? Mar. Ecol. Prog. Ser. 94: 101–104

    Google Scholar 

  • Wilson, R. P., Spairani, H. J., Coria, N. R., Culik, B. M., Adelung, D. (1990). Packages for attachment to seabirds: what colour do Adélie penguins dislike least? J. Wildl. Mgmt. 54: 447–451

    Google Scholar 

  • Wilson, R. P., Wilson, M.-P. (1989). Tape: a package attachment technique for penguins. Wildl. Soc. Bull. 17: 77–79

    Google Scholar 

  • Woakes, A. J., Butler, P. J. (1983). Swimming and diving in tufted ducks, Aythia fuligula with particular reference to gas exchange. J. exp. Biol. 107: 311–329

    Google Scholar 

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Communicated by O. Kinne, Oldendorf/Luhe

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Culik, B.M., Bannasch, R. & Wilson, R.P. External devices on penguins: how important is shape?. Marine Biology 118, 353–357 (1994). https://doi.org/10.1007/BF00350291

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  • DOI: https://doi.org/10.1007/BF00350291

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