Автор |
Carlotti, François |
Дата выпуска |
1996 |
dc.description |
AbstractThe time and space scales of biological and physical processes governing the patterns of the copepod Calanus finmarchicus are discussed with emphasis on individual-environment and population-environment relationships.A mathematical model of population dynamics coupling the processes at the individual level with the processes driving cohort development permits the construction of a hierarchy of processes and can be used to extract the most important processes and parameterize the others, under various environmental conditions.The outputs of the model are the physiological rates and the individual growth within the stages, as well as the abundances and the bio masses of stages.An example drawn from recent work on the dynamics of Calanus finmarchicus coupled with a physical and biological one-dimensional model in the North Sea is presented. An annual simulation shows three generations of Calanus finmarchicus during the year. The results suggest that growth, development and life strategy are intimately related to the environment |
Формат |
application.pdf |
Издатель |
Taylor & Francis Group |
Копирайт |
Copyright Taylor and Francis Group, LLC |
Название |
A realistic physical-biological model for Calanus finmarchicus in the North Atlantic |
Тип |
research-article |
DOI |
10.1080/00785326.1995.10429838 |
Print ISSN |
0078-5326 |
Журнал |
Ophelia |
Том |
44 |
Первая страница |
47 |
Последняя страница |
58 |
Аффилиация |
Carlotti, François; Station Zoologique, CNRS/URA 716 |
Выпуск |
1-3 |
Библиографическая ссылка |
Carlotti, F. and Sciandra, A. 1989. Population dynamics model of Euterpina acutifrons (Copepoda: Harpacticoida) coupling individual growth and larval development. Mar. Ecol. Prog. Ser., 56: 225–242. |
Библиографическая ссылка |
Carlotti, F., Krause, M. and Radach, G. 1993. Growth and development of Calanus finmarchicus taking into account the effect of temperature. Limnol. Oceanogr., 38: 1125–1134. |
Библиографическая ссылка |
Carlotti, F. and Radach, G. 1996. Seasonal dynamics of phytoplankton and Calanus finmarchicus in the North Sea as revealed by a coupled 1-D model. Limnol. Oceanogr., (in press) |
Библиографическая ссылка |
Colebrook, J. M. Continuous plankton records: the distribution and standing crop of the plankton of the shelf and ocean to the west of the British Isles. Proc. R. Soc. Edinburgh. Vol. 88B, pp.221–237. |
Библиографическая ссылка |
Corkett, C. J. 1984. Observations on development in copepods. Crustaceana Suppl., 7: 150–153. |
Библиографическая ссылка |
Corkett, C. J., McLaren, I.A. and Sévigny, J.M. 1986. The rearing of marine copepods Calanus finmarchicus (Gunnerus), C. glacialis (Jaschnov) and C. hyperboreus (Kröyer) with comment on the equiproportional rule. Syllogeus (National Museum of Canada), 58: 539–546. |
Библиографическая ссылка |
Davis, C. S. 1984. Predatory control of copepod seasonal cycles on Georges Bank. Mar. Biol., 82: 31–40. |
Библиографическая ссылка |
Davis, C. S. 1987. Components of the zooplankton production cycle in the temperate ocean. J. Mar. Res., 45: 947–983. |
Библиографическая ссылка |
Fransz, H. G., Colebrook, J.M., Gamble, J.C. and Krause, M. 1991. The zooplankton of the North Sea. Neth. J. Sea Res., 28: 1–52. |
Библиографическая ссылка |
GLOBEC Report 2. 1993. Population dynamics and physical variability, 104–104. Cambridge, UK, February 1-5, 1993. |
Библиографическая ссылка |
Harris, J. R. 1983. The development and growth of Calanus copepodites. Limnol. Oceanogr., 28: 142–147. |
Библиографическая ссылка |
Hirche, H.J. 1984. Seasonal distribution of Calanus finmarchicus (Gunnerus) and C. helgolandicus (Claus) in a Swedish fjord. Crustaceana Suppl., 7: 233–241. |
Библиографическая ссылка |
Krause, M. and Radach, G. 1989. On the relation of vertical distribution, diurnal migration and nutritional state of herbivorous zooplankton in the Northern North Sea during FLEX 1976. Int. Revue ges. Hydrobiol., 74: 371–417. |
Библиографическая ссылка |
Landry, M. R. 1983. The development of marine calanoid copepods with comment on the isochronal rule. Limnol. Oceanogr., 28: 614–624. |
Библиографическая ссылка |
Marine Zooplankton Colloquium I. 1989. Future marine zooplankton research - a perspective. Mar. Ecol. Prog. Ser., 55: 197–206. |
Библиографическая ссылка |
Marshall, S. M. and Orr, A. P. 1955. The biology of a marine copepod, 188–188. Edinburgh & London: Oliver & Boyd. |
Библиографическая ссылка |
McLaren, I. A. 1978. Generation lengths of some temperate marine copepods: estimation, production and implications. J. Fish. Res. Board Can., 345: 1330–1342. |
Библиографическая ссылка |
Miller, C. B., KJohnson, J. and Heinle, D.R. 1977. Growth rules in the marine copepod genus Acartia. Limnol. Oceanogr., 22: 326–335. |
Библиографическая ссылка |
Radach, G. and A., Moll. 1993. Estimation of the variability of production by simulating annual cycles of phytoplankton in the central North Sea. Prog. Oceanogr., 31: 339–419. |
Библиографическая ссылка |
Rothschild, B.J. and Osborn, T.R. 1988. Small-scale turbulence and plankton contact rates. J. Plankt. Res., 10: 465–474. |
Библиографическая ссылка |
Skinner, D. M. 1985. “Molting and regeneration”. In The Biology of Crustacea vol.9. Integument, pigments, and hormonal processes, Edited by: Bliss, D.E. and Mantel, L.H. 43–146. Academic Press. |
Библиографическая ссылка |
Vidal, J. 1980. Physioecology of zooplankton. I. Effects of phytoplankton concentration, temperature and body size on the growth rate of Calanus pacificus and Pseudocalanus . Mar. Biol., 56: 111–134. |