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Influence of an electric light on the capture of deep-sea fish in Biscay

Published online by Cambridge University Press:  11 May 2009

G. N. Swinney
Affiliation:
Royal Scottish Museum, Edinburgh
M. R. Clarke
Affiliation:
The Laboratory, Marine Biological Association, Citadel Hill, Plymouth PL1 2PB
L. Maddock
Affiliation:
The Laboratory, Marine Biological Association, Citadel Hill, Plymouth PL1 2PB

Introduction

Recently the influence of an electric light on the capture of the main groups of deep sea animals by a midwater trawl was described and discussed (Clarke & Pascoe, 1985). With regard to fish it was shown that at depths close to 800 m the total number, the total volume, the volume of the ten largest and the volume of the single largest fish all increased significantly when an electric light was used on the headline of the trawl when compared with controls with the light off. These experiments were carried out both in the Bay of Biscay and off Madeira.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 1986

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References

REFERENCES

Badcock, J., 1982. A new species of the deep-sea fish genus Cyclothone Goode & Bean (Stomiatoidei, Gonostomatidae) from the tropical Atlantic. Journal of Fish Biology, 20, 197211.CrossRefGoogle Scholar
Badcock, J., 1986. Gonostomatidae, Sternophtychidae and Photichthyidae. In Fishes of the North East Atlantic and Mediterranean, in press.Google Scholar
Badcock, J. & Larcombe, R. A., 1980. The sequence of photophore development in Xenodermichthys copei (Pisces: Alepocephalidae). Journal of the Marine Biological Association of the United Kingdom, 60, 277294.CrossRefGoogle Scholar
Badcock, J. & Merrett, N. R., 1976. Midwater fishes in the eastern North Atlantic. 1. Vertical distribution and associated biology in 30° N, 23° W with developmental notes on certain myctophids. Progress in Oceanography, 7, 358.CrossRefGoogle Scholar
Bigelow, H. B., Cohen, D. M., Dick, M. M., Gibbs, R. H., Grey, M., Morrow, J. E., Schultz, L. P. & Walters, V., 1964. Fishes of the western North Atlantic. Memoirs. Sears Foundation for Marine Research, 1(4), 599 pp.Google Scholar
Blaxter, J. H. S. & Currie, R. I., 1967. The effect of artificial lights on acoustic scattering layers in the ocean. Symposia of the Zoological Society of London, no. 19, 114.Google Scholar
Boden, B. P. & Kampa, E. M., 1967. The influence of natural light on the vertical migrations of an animal community in the sea. Symposia of the Zoological Society of London, no. 19, 1526.Google Scholar
Clarke, M. R. & Pascoe, P. L., 1985. Influence of an electric light on the capture of deep-sea animals by a midwater trawl. Journal of the Marine Biological Association of the United Kingdom, 65, 373393.CrossRefGoogle Scholar
Hureau, J. C. & Monod, T. (ed.), 1973. Clofnam I. Checklist of the Fishes of the North-eastern Atlantic and of the Mediterranean. Paris: U.N.E.S.C.O.Google Scholar
Nafpaktitis, B. G., Backus, R. H., Craddock, J. E., Haedrich, R. L., Robison, B. H., Karnella, C., 1977. Fishes of the western North Atlantic. Memoirs. Sears Foundation for Marine Research, 1(7), 3265.Google Scholar
Roe, H. & Badcock, J., 1984. The diel migrations and distributions within a mesopelagic community in the North East Atlantic. 5. Vertical migrations and feeding offish. Progress in Oceanography, 13, 389–324.CrossRefGoogle Scholar
Sears Foundation, 1964. Fishes of the western North Atlantic. Memoirs. Sears Foundation for Marine Research, vols. 1–6.Google Scholar