Geoscience Reference
In-Depth Information
Mallekh, R. and Lagardère, J.P. (2002). Effect of tempera-
ture and dissolved oxygen concentration on the meta-
bolic rate of the turbot and the relationship between
metabolic scope and feeding demand. Journal of Fish
Biology , 60 , 1105-15.
Marshall, W.S. and Grosell, M. (2006). Ion transport,
osmoregulation, and acid-base balance. In: D.H. Evans
and J.B. Claiborne (eds), The physiology of i shes , 3rd edn,
pp. 177-230. CRC Press, Boca Raton, FL.
Melzner, F., Gutowska, M.A., Langenbuch, M. et al . (2009a).
Physiological basis for high CO 2 tolerance in marine
ectothermic animals: pre-adaptation through lifestyle
and ontogeny? Biogeosciences , 6 , 2313-31.
Melzner, F., Göbel, S., Langenbuch, M., Gutowska, M.A.,
Pörtner, H.-O., and Lucassen, M. (2009b). Swimming
performance in Atlantic Cod ( Gadus morhua ) following
long-term (4-12 months) acclimation to elevated seawa-
ter p CO 2 . Aquatic Toxicology , 92 , 30-7.
Metzger, R., Sartoris, F.J., Langenbuch, M., and Pörtner,
H.-O. (2007). Inl uence of elevated CO 2 concentrations
on thermal tolerance of the edible crab Cancer pagurus .
Journal of Thermal Biology , 32 , 144-51.
Michaelidis, B., Ouzounis, C., Paleras, A., and Pörtner,
H.-O. (2005). Effects of long-term moderate hypercap-
nia on acid-base balance and growth rate in marine
mussels Mytilus galloprovincialis . Marine Ecology Progress
Series , 293 , 109-18.
Michaelidis, B., Spring, A., and Pörtner, H.-O. (2007).
Effects of long-term acclimation to environmental
hypercapnia on extracellular acid-base status and meta-
bolic capacity in Mediterranean i sh Sparus
Nikinmaa, M. (2006). Gas transport. In: D.H. Evans and
J.B. Claiborne (eds), The physiology of i shes , pp. 153-74.
CRC Press, Boca Raton, FL.
O'Dor, R. K. and Webber, D. M. (1986) The constraints on
cephalopods: why squid aren't i sh. Canadian Journal of
Zoology , 64 , 1591-605.
O'Dor, R.K. and Webber, D.M. (1991). Invertebrate ath-
letes: trade-offs between transport efi ciency and power
density in cephalopod evolution. Journal of Experimental
Biology , 160 , 93-112.
Orr, J.C., Fabry, V.J., Aumont, O. et al. (2005). Anthropogenic
ocean acidii cation over the twenty-i rst century and its
impact on calcifying organisms. Nature , 437 , 681-6.
Paulmier, A. and Ruiz-Pino, D. (2009). Oxygen minimum
zones (OMZs) in the modern ocean. Progress in
Oceanography , 80 , 113-28.
Perry, S.F. and Gilmour, K.M. (2006). Acid-base balance
and CO 2 excretion in i sh: unanswered questions and
emerging models. Respiration Physiology and Neurobiology ,
154 , 199-215.
Perry, S.F., Kinkead, R., Gallaugher, P., and Randall, D.J.
(1989). Evidence that hypoxemia promotes catecho-
lamine release during hypercapnic acidosis in rain-
bow trout ( Salmo gairdneri ). Respiration Physiology , 77 ,
351-64.
Perry, S.F., Furimsky, M., Bayaa, M. et al . (2003). Integrated
responses of Na + /HCO 3 - cotransporters and V-type
H + -ATPases in the i sh gill and kidney during res-
piratory acidosis. Biochimica Biophysica Acta ,
1618 ,
175-84.
Piermarini, P.M., Choi, I., and Boron, W.F. (2007). Cloning
and characterization of an electrogenic Na/HCO 3 -
cotransporter from the squid giant i ber lobe. American
Journal of Physiology , 292 , C2032-45.
Pörtner, H.-O. (1990). An analysis of the effects of pH on
oxygen binding by squid ( Illex illecebrosus , Loligo pealei )
haemocyanin. Journal of Experimental Biology ,
aurata .
Marine Biology , 150 , 1417-29.
Millero, F.J. (1996). Chemical oceanography , 469 pp. CRC
Press, Boca Raton, FL.
Mühlenbruch, K. (2004). Hyperkapnie-induzierte Veränderun-
gen des gewebespezii schen Aminosäurestoffwechsels beim
marinen Invertebraten Sipunculus nudus, 72 pp.
Diplomarbeit, Universität Bremen und Alfred-Wegener-
Institut, Bremerhaven.
Munday, P.L., Crawley, N.E., and Nilsson, G.E. (2009a).
Interacting effects of elevated temperature and ocean
acidii cation on the aerobic performance of coral reef
i shes. Marine Ecology Progress Series , 388 , 235-42.
Munday, P.L., Dixson, D.L., Donelson, J.M. et al . (2009b).
Ocean acidii cation impairs olfactory discrimination
and homing ability of a marine i sh. Proceedings of the
National Academy of Sciences USA , 106 ,1848-52.
Munday, P.L., Donelson, J.M., Dixson, D.L., and Endo,
G.G.K. (2009c). Effects of ocean acidii cation on the early
life history of a tropical marine i sh. Proceedings of the
Royal Society B: Biological Sciences , 276 , 3275-83.
150 ,
407-24.
Pörtner, H.-O. (1994). Coordination of metabolism acid-
base regulation and haemocyanin function in cephalo-
pods. In: H.O. Pörtner, R.K. O'Dor, and D.L. MacMillan
(eds), Physiology of cephalopod molluscs: lifestyle and per-
formance adaptations , pp. 131-48. Gordon and Breach,
London.
Pörtner, H.-O. (2002). Environmental and functional limits
to muscular exercise and body size in marine inverte-
brate athletes. Comparative Biochemistry and Physiology A ,
133 , 303-21.
Pörtner H.-O. (2006). Climate dependent evolution of
Antarctic ectotherms: an integrative analysis. Deep Sea
Research II , 53 , 1071-104.
Search WWH ::




Custom Search