Náttúrufræðingurinn

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Náttúrufræðingurinn - 2010, Side 70

Náttúrufræðingurinn - 2010, Side 70
Náttúrufræðingurinn 70 Þakkir Ég vil þakka Birni Gunnarssyni, Elíasi Frey Guðmundssyni og Gróu Þ. Pétursdóttur, Hafrannsóknastofnuninni, og dr. Steven E. Campana, Bedford Institute of Oceanography, Darthmonth í Kanada, fyrir að leyfa afnot af myndum. Einnig vil ég þakka Jóni Sólmundssyni og Gróu Þ. Péturs- dóttur, Hafrannsóknastofnuninni, fyrir að lesa handritið og koma með góðar athugasemdir. Heim ild ir Campana, S.E. 1999. Chemistry and composition of fish otoliths: path-1. ways, mechanisms and applications. Marine Ecology Progress Series 188. 263–297. Degens, E.T., Deuser, E.G. & Haedrich, R.L. 1969. Molecular structure 2. and composition of fish otoliths. Marine Biology 2. 105–113. Sweeting, R.M., Beamish, R.J. & Neville, C.M. 2004. Crystalline otoliths 3. in teleosts: Comparisons between hatchery and wild coho salmon (Oncorhynchus kisutch) in the Strait of Georgia. Reviews in Fish Biology and Fisheries 14(3). 361–369. Campana, S.E. & Thorrold, S.R. 2001. Otoliths, increments, and elements: 4. keys to a comprehensive understanding of fish populations? Canadian Journal of Fisheries and Aquatic Sciences 58(1). 30–38. Lychakov, D.V. & Rebane, Y.T. 2000. Otolith regularities. Hearing 5. Research 143(1–2). 83–102. Popper, A.N., Ramcharitar, J. & Campana, S.E. 2005. Why otoliths? 6. Insights from inner ear physiology and fisheries biology. Marine and Freshwater Research 56(5). 497–504. Gauldie, R.W. & Crampton, J.S. 2002. An eco-morphological explanation 7. of individual variability in the shape of the fish otolith: comparison of the otolith of Hoplostethus atlanticus with other species by depth. Journal of Fish Biology 60(5). 1204–1221. Cardinale, M., Doering-Arjes, P., Kastowsky, M. & Mosegaard, H. 2004. 8. Effects of sex, stock, and environment on the shape of known-age Atlantic cod (Gadus morhua) otoliths. Canadian Journal of Fisheries and Aquatic Sciences 61(2). 158–167. Campana, S.E. & Casselman, J.M. 1993. Stock discrimination using otolith 9. shape analysis. Canadian Journal of Fisheries and Aquatic Sciences 50(5). 1062–1083. Ólöf D.B. Jónsdóttir, Albert K. Imsland, Ólöf Ýrr Atladóttir & Anna K. 10. Daníelsdóttir 2003. Nuclear DNA RFLP variation of Atlantic cod in the North Atlantic Ocean. Fisheries Research 63(3). 429–436. Wootton, R.J. 1998. Ecology of teleost fishes. Kluwer Academic Publish-11. ers, Dordrecht. 386 bls. Gróa Þ. Pétursdóttir 2001. Aldurslestur á kvörnum og hreistri helstu 12. nytjafiska. Í: Greinar um hafrannsóknir (ritstj. Gunnar Jónsson & Konráð Þórisson). Hafrannsóknastofnunin, Reykjavík. Bls. 72–74. Stephenson, R.L. 1999. Stock complexity in fisheries management: a 13. perspective of emerging issues related to population sub-units. Fisheries Research 43(1–3). 247–249. Bolles, K.L. & Begg, G.A. 2000. Distinction between silver hake (14. Merluc- cius bilinearis) stocks in US waters of the northwest Atlantic based on whole otolith morphometrics. Fishery Bulletin 98(3). 451–462. DeVries, D.A., Grimes, C.B. & Prager, M.H. 2002. Using otolith shape 15. analysis to distinguish eastern Gulf of Mexico and Atlantic Ocean stocks of king mackerel. Fisheries Research 57(1). 51–62. Ingibjörg G. Jónsdóttir, Campana, S.E. & Guðrún Marteinsdóttir 2006. 16. Stock structure of Icelandic cod Gadus morhua L. based on otolith chemistry. Journal of Fish Biology 69 (Supplement C). 136–150. Ingibjörg G. Jónsdóttir, Campana, S.E. & Guðrún Marteinsdóttir 2006. 17. Otolith shape and temporal stability of spawning groups of Icelandic cod (Gadus morhua L.). ICES Journal of Marine Science 63(8). 1501–1512. Pampoulie, C., Ruzzante, D.E., Chosson, V., Þóra D. Jörundsdóttir, 18. Taylor, L., Vilhjálmur Þorsteinsson, Anna K. Daníelsdóttir & Guðrún Marteinsdóttir 2006. The genetic structure of Atlantic cod (Gadus morhua) around Iceland: insight from microsatellites, the Pan I locus, and tag- ging experiments. Canadian Journal of Fisheries and Aquatic Sciences 63(12). 2660–2674. Kristinn Sæmundsson 2005. Geographical distribution and dispersal 19. of juvenile Icelandic cod (Gadus morhua). Ritgerð til meistaraprófs við Háskóla Íslands. 118 bls. Fowler, A.J., Gillanders, B.M. & Hall, K.C. 2005. Relationship between 20. elemental concentration and age from otoliths of adult snapper (Pagrus auratus, Sparidae): implications for movement and stock structure. Marine and Freshwater Research 56(5). 661–676. Helfman, G.S., Collette, B.B. & Facey, D.E.1997. The diversity of fishes. 21. Blackwell Science, Oxford, England. 528 bls. Konráð Þórisson, Ingibjörg G. Jónsdóttir, Guðrún Marteinsdóttir & 22. Campana, S.E. (í prentun). Use of otolith chemistry to determine the juvenile source of spawning cod in Icelandic waters. ICES Journal of Marine Science. Kawakami, Y., Mochioka, N., Morishita, K., Toh, H. & Nakazono, A. 23. 1998. Determination of the freshwater mark in otoliths of Japanese eel elvers using microstructure and Sr/Ca ratios. Environmental Biology of Fishes 53(4). 421–427. Um höfundinn Ingibjörg G. Jónsdóttir (f. 1972) lauk B.Sc.-prófi í líffræði frá Háskóla Íslands árið 1996, Cand.scient.-prófi í sjávar- líffræði við Kaupmannahafnarháskóla árið 2000 og doktorsprófi í fiskavistfræði frá Háskóla Íslands árið 2007. Ingibjörg starfar á Hafrannsóknastofnuninni. Póst- og netfang höfundar/Author’s address Ingibjörg G. Jónsdóttir Hafrannsóknastofnunin Skúlagötu 4 IS-101 Reykjavík ingibj@hafro.is 80 1-2#loka.indd 70 7/19/10 9:53:05 AM

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