The effects of temperature on aspects of respiratory physiology of the semi-terrestrial crabs, Uca inversa (Hoffmann) and Metopograpsus messor (Forskål) from the Red Sea☆
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[1] A. Taylor,et al. Physiological ecology of crabs from Saudi Arabian mangrove , 1995 .
[2] S. Funge‐Smith,et al. Temperature and Salinity Effects on Oxygen Transport by the Hemolymph of the Freshwater Prawn Macrobrachium rosenbergii (de Man) , 1994, Physiological Zoology.
[3] S. Morris,et al. Properties of Respiratory Pigments in Bimodal Breathing Animals: Air and Water Breathing by Fish and Crustaceans , 1994 .
[4] K. Zainal,et al. The effect of temperature and hypoxia on the respiratory physiology of the squat lobsters, Munida rugosa and Munida sarsi (anomura, galatheidae) , 1992 .
[5] S. Morris,et al. Blood gas transport and oxygen consumption in a supralittoral crab, Leptograpsus variegatus (Crustacea: Brachyura) , 1992 .
[6] J. Truchot. Respiratory Function of Arthropod Hemocyanins , 1992 .
[7] S. Morris. Respiratory gas exchange and transport in crustaceans: ecological determinants , 1991 .
[8] F. Lallier,et al. MODULATION OF HAEMOCYANIN OXYGEN-AFFINITY BY L-LACTATE AND URATE IN THE PRAWN PENAEUS JAPONICUS , 1989 .
[9] S. Morris. Effects of freezing on the function and association state of crustacean haemocyanins , 1988 .
[10] S. Morris,et al. Oxygen Binding by the Hemocyanin of the Terrestrial Hermit Crab Coenobita Clypeatus (Herbst): The Effect of Physiological Parameters in vitro , 1986, Physiological Zoology.
[11] S. Morris,et al. An in vitro investigation of the modulation of haemocyanin oxygen affinity in the land hermit crab Coenobita clypaetus Herbst , 1986 .
[12] M. Grieshaber,et al. A new role for uric acid: Modulator of haemocyanin oxygen affinity in crustaceans , 1985 .
[13] S. Morris,et al. An investigation of haemocyanin oxygen affinity in the semi-terrestrial crab Ocypode saratan Forsk , 1985 .
[14] W. Emmerson. Oxygen consumption in Palaemon pacificus (stimpson) (Decapoda: Palaemonidae) in relation to temperature, size and season , 1985 .
[15] C. Mangum,et al. The effect of organic acids on oxygen binding of hemocyanin from the crab Cancer magister , 1983 .
[16] C. Mangum. On the Relationship between P50 and the Mode of Gas Exchange in Tropical Crustaceans , 1982 .
[17] J. Truchot. Lactate increases the oxygen affinity of crab hemocyanin , 1980 .
[18] J. Bicudo,et al. Oxygen content measurement in blood containing haemocyanin , 1979 .
[19] A. C. Taylor. The respiratory responses of Carcinus maenas to declining oxygen tension. , 1976, The Journal of experimental biology.
[20] R. Newell. Factors Affecting the Respiration of Intertidal Invertebrates , 1973 .
[21] C. R. Boyden. Aerial respiration of the cockle Cerastoderma edule in relation to temperature , 1972 .
[22] J. C. Wallace. Activity and metabolic rate in the shore crab, Carcinus maenas (L.) , 1972 .
[23] F. Vernberg,et al. Environmental Physiology of Marine Animals , 1972, Springer Berlin Heidelberg.
[24] R. Newell. Effect of Fluctuations in Temperature on the Metabolism of Intertidal Invertebrates , 1969 .
[25] D. W. Ewer,et al. A comparative study of some aspects of the biology and ecology of Sesarma catenata Ort. and Cyclograpsus punctatus M.Edw., with additional observations on Sesarma meinerti De Man , 1969 .
[26] W. Macnae. A General Account of the Fauna and Flora of Mangrove Swamps and Forests in the Indo-West-Pacific Region , 1969 .
[27] V. Tucker. Method for oxygen content and dissociation curves on microliter blood samples. , 1967, Journal of applied physiology.
[28] E. R. Trueman,et al. Techniques for recording the Activity of Aquatic Invertebrates , 1967, Nature.
[29] P. Davies. A constant pressure respirometer for medium-sized animals. , 1966 .
[30] H. Bergmeyer. Methods of Enzymatic Analysis , 2019 .
[31] E. Edney. THE WATER AND HEAT RELATIONSHIPS OF FIDDLER CRABS (Uca spp.) , 1961 .