128
A.P.A. Wohrmann
12. Sidell BD (1991) Physiological roles of high lipid content in tissues of
Antarctic fish species. In: di Prisco G, Maresca B, Tota B (eds) Biology of
Antarctic fish. Springer, Berlin, pp 220-232
13. DeVries AL, Eastman JT (1978) Lipid sacs as a buoyancy adaptation in an
Antarctic fish. Nature 271:352-353
14. Eastman JT, DeVries AL (1989) Ultrastructure of the lipid sac wall in the
Antarctic notothenioid fish Pleuragramma antarcticum. Polar Bioi 9:333335
15. Clarke A, Doherty N, DeVries AL, Eastman JT (1984) Lipid content and
composition of three species of Antarctic fish in relation to buoyancy. Polar
Bioi 3:77-83
16. Wohrmann APA, Hagen W, Kunzmann A (1997) Adaptations of
Pleuragramma antarcticum (Pisces: Nototheniidae) to pelagic life in highAntarctic waters. Mar Ecol Progr Ser 151 :205-218
17. Eastman JT, Grande L (1989) Evolution of the Antarctic fish fauna with
emphasis on the recent notothenioids. In: Crame JA (ed) Origins and
evolution of the Antarctic biota. Special Publications of the Geological
Society, No 47, London, pp 241-252
18. Rahmann H, Hilbig R (1983) Phylogenetic aspects of brain gangliosides in
vertebrates. J Comp Physiol B 151 :215-224
2+
19. Hayashi K, Mlihleisen M, Probst W, Rahmann H (1984) Binding of Ca to
phosphoinositols, phosphatidylserines and gangliosides. Chern Phys Lipids
34:317-322
20. Rahmann H (1992) Calcium - ganglioside interaction and modulation of
neuronal functions. In: Osborne NN (ed) Current aspects of the
neurosciences. Macmillan Press, London, pp 87-125
21. Wohrmann APA (1996) Antifreeze glycopeptides and peptides in Antarctic
fish species from the Weddell Sea and the Lazarev Sea. Mar Ecol Progr Ser
130:47-59
22. Lewis EL, Perkin RG (1985) The winter oceanography of McMurdo Sound,
Antarctica. In: Jacobs SS (ed) Antarctic Research Series, Vol 43,
Oceanology of the Antarctic continental shelf. American Geophysical
Union, Washington, pp 145-165
23. DeVries AL (1988) The role of antifreeze glycopeptides in the freezing
avoidance of Antarctic fishes. Comp Biochem Physiol B 90:611-621
24. Wohrmann APA (1997) Freezing resistance in Antarctic and Arctic fishes:
its relation to mode of life, ecology and evolution. Cybium 21 (4): 423-442
A.P.A. Wohrmann
12. Sidell BD (1991) Physiological roles of high lipid content in tissues of
Antarctic fish species. In: di Prisco G, Maresca B, Tota B (eds) Biology of
Antarctic fish. Springer, Berlin, pp 220-232
13. DeVries AL, Eastman JT (1978) Lipid sacs as a buoyancy adaptation in an
Antarctic fish. Nature 271:352-353
14. Eastman JT, DeVries AL (1989) Ultrastructure of the lipid sac wall in the
Antarctic notothenioid fish Pleuragramma antarcticum. Polar Bioi 9:333335
15. Clarke A, Doherty N, DeVries AL, Eastman JT (1984) Lipid content and
composition of three species of Antarctic fish in relation to buoyancy. Polar
Bioi 3:77-83
16. Wohrmann APA, Hagen W, Kunzmann A (1997) Adaptations of
Pleuragramma antarcticum (Pisces: Nototheniidae) to pelagic life in highAntarctic waters. Mar Ecol Progr Ser 151 :205-218
17. Eastman JT, Grande L (1989) Evolution of the Antarctic fish fauna with
emphasis on the recent notothenioids. In: Crame JA (ed) Origins and
evolution of the Antarctic biota. Special Publications of the Geological
Society, No 47, London, pp 241-252
18. Rahmann H, Hilbig R (1983) Phylogenetic aspects of brain gangliosides in
vertebrates. J Comp Physiol B 151 :215-224
2+
19. Hayashi K, Mlihleisen M, Probst W, Rahmann H (1984) Binding of Ca to
phosphoinositols, phosphatidylserines and gangliosides. Chern Phys Lipids
34:317-322
20. Rahmann H (1992) Calcium - ganglioside interaction and modulation of
neuronal functions. In: Osborne NN (ed) Current aspects of the
neurosciences. Macmillan Press, London, pp 87-125
21. Wohrmann APA (1996) Antifreeze glycopeptides and peptides in Antarctic
fish species from the Weddell Sea and the Lazarev Sea. Mar Ecol Progr Ser
130:47-59
22. Lewis EL, Perkin RG (1985) The winter oceanography of McMurdo Sound,
Antarctica. In: Jacobs SS (ed) Antarctic Research Series, Vol 43,
Oceanology of the Antarctic continental shelf. American Geophysical
Union, Washington, pp 145-165
23. DeVries AL (1988) The role of antifreeze glycopeptides in the freezing
avoidance of Antarctic fishes. Comp Biochem Physiol B 90:611-621
24. Wohrmann APA (1997) Freezing resistance in Antarctic and Arctic fishes:
its relation to mode of life, ecology and evolution. Cybium 21 (4): 423-442
