Agnisola, C. and Houlihan, D. F (1991). Oxygen supply and in vitro performance of the systemic heart of Octopus vulgaris : effects of haemocyanin. J. Exp. Biol 157, 523-.[Abstract/Free Full Text]
Alexandrowicz, J. S (1960). Innervation of the hearts of Sepia officinalis. Acta Zool 41, 65-.
Andrews, P. L. R., Messenger, J. B. and Tansey, E. M (1981). Colour changes in cephalopods after neurotransmitter injection into the cephalic aorta. Proc. R. Soc. Lond. B 213, 93-.[Medline]
Anton, A. H. and Sayre, D. F (1962). A study of the factors affecting the aluminium oxide\320trihydroxyindole procedure for the analysis of catecholamines. J. Pharmac. Exp. Ther 138, 360-.[Abstract/Free Full Text]
Awad, E. W. and Anctil, M (1993). Identification of-like adrenoreceptors associated with bioluminescence in the sea pansy Renilla koellikeri. J. Exp. Biol 177, 181-.[Abstract]
Bacq, Z. M., Fischer, P. and Ghiretti, F (1952). Action de la 5-hydroxytryptamine chez les cephalopodes. Arch. Int. Physiol 59, 165-.
Bolstad, G., Kalland, T., Srebro, B. and Stene-Larsen, G (1979). Modifications of the glyoxalic acid method for visualization of catecholamines in vertebrate and invertebrate species. Comp. Biochem. Physiol 62, 61-.
de la Torre, J. C. and Surgeon, J. W (1976). A methodological approach to rapid and sensitive monoamine histofluorescence using a modified glyoxylic acid technique: The SPG method. Histochemistry 49, 81-.[Medline]
Fiedler, A. and Schipp, R (1990). The effects of biogenic monoamines and related agonists and antagonists on the isolated, perfused branchial heart of Sepia officinalis L. (Cephalopoda). Comp. Biochem. Physiol 97, 71-.
Fiedler, A. and Schipp, R (1991). Localization of catecholamine-containing nerve fibres in the branchial heart and cardiac ganglion of the common cuttlefish Sepia officinalis L. (Cephalopoda). Tissue & Cell 23, 813-.[Medline]
Florey, E. and Florey, E (1954). \206ber die m\232gliche Bedeutung von Enteramin (5-Oxy-Tryptamin) als nerv\232ser Aktionssubstanz bei Cephalopoden und dekapoden Crustaceen. Z. Naturforsch 9, 58-.
Foti, L., Trara Genoino, I. and Agnisola, C (1985). In vitro cardiac performance in Octopus vulgaris (Lam). Comp. Biochem. Physiol 82, 483-.
Gerschenfeld, H. M. and Paupardin-Tritsch, D (1974). Ionic mechanisms and receptor properties underlying the responses of molluscan neurones to 5-hydroxytryptamine. J. Physiol .,. Lond 243, 427-.
Hanai, K. and Kitajima, M (1984). Two types of surface amine receptors modulating the feeding responses in Hydra japonica : the depressing action of dopamine and related amines. Chem. Senses 9, 355-.[Abstract/Free Full Text]
Johansen, K. and Martin, A. W (1962). Circulation in the cephalopod, Octopus dofleini. Comp. Biochem. Physiol 34, 263-.
Kabotyanskii, E. A. and Sakharov, D. A (1989). B. VERSENANDOTHERS1079 Monoamines and the auricle of Sepia officinalis L. Catecholaminergic neurons of the pteropod mollusc Clione limacia. J. Evol. Biochem. Physiol 25, 198-.
Kime, D. and Messenger, J. B (1990). Monoamines in the cephalopod CNS: an HPLC analysis. Comp. Biochem. Physiol 96, 49-.
Kling, G (1986). Histochemical localization of cholin-esterases and monoamines in the central heart of Sepia officinalis L. (Cephalopoda). Histochemistry 85, 241-.[Medline]
Kling, G. and Jakobs, P. M (1987). Cephalopod myocardial receptors: Pharmacological studies on the isolated heart of Sepia officinalis (L.). Experientia 43, 511-.
Kling, G. and Schipp, R (1987). Comparative ultrastructural and cytochemical analysis of the cephalopod systemic heart and its innervation. Experientia 43, 502-.
Lindvall, O. and Bj\232rklund, A (1974). The glyoxylic acid fluorescence histochemical method: a detailed account of the methodology for the visualization of central catecholamine neurones. Histochemistry 39, 97-.[Medline]
Mercer, A. R., Mobbs, P. G., Davenport, A. P. and Evans, P. D (1983). Biogenic amines in the brain of the honeybee, Apis mellifera. Cell Tissue Res 234, 655-.[Medline]
Messenger, J. B., Nixon, M. and Ryan, K. P (1985). Magnesium chloride as an anaesthetic for cephalopods. Comp. Biochem. Physiol 82, 203-.
Palacious, J. M., O'Dowd, B. F., Lotecchia, S., Hnatowich, M., Caron, M. G. and Lefkowitz, R. J (1989). Adrenergic receptor homologies in vertebrate and invertebrate species examined by DNA hybridization. Life Sci 44, 2057-.[Medline]
Prichard, B. N. C (1978). -Adrenergic receptor blockade in hypertension, past, present and future. Br. J. Clin. Pharmac 5, 379-.[Medline]
Schipp, R. and Sch\212fer, A (1969). Vergleichende elektronenmikroskopische Untersuchungen an den zentralen Herzorganen von Cephalopoden ( Sepia officinalis ). Die Feinstruktur des Herzens. Z. Zellforsch 98, 576-.[Medline]
Schipp, R., Jakobs, P. M. and Fiedler, A (1991). Monoaminergic\320peptidergic interactions in neuroregulatorycontrol of the cephalic aorta in Sepia officinalis L. (Cephalopoda). Comp. Biochem. Physiol 99, 421-.
Smith, P. J. S (1981). The role of the venous pressure in regulation of output from the heart of the octopus, Eledone cirrhosa (Lam.). J. Exp. Biol 93, 243-.[Abstract/Free Full Text]
Smith, P. J. S (1981). The octopod ventricular cardiogram. Comp. Biochem. Physiol 70, 103-.
Smith, P. J. S. and Boyle, P. R (1983). The cardiac innervation of Eledone cirrhosa (Lamarck) (Mollusca: Cephalopoda). Phil. Trans. R. Soc. B 300, 493-.[Medline]
van Rossum, J. M (1963). Cumulative dose\320response curves. II. Technique for making of dose\320response curves in isolated organs and the evaluation of drug parameters. Arch. Int. Pharmacodyn 143, 299-.
Wells, M. J (1980). Nervous control of the heart beat in Octopus. J. Exp. Biol 85, 111-.[Abstract/Free Full Text]
Wells, M. J. and Mangold, K (1980). The effects of extracts from neurosecretory cells in the anterior vena cava and pharyngo-opthalmic vein upon the hearts of intact, free-moving octopuses. J. Exp. Biol 84, 319-.[Abstract/Free Full Text]
Wells, M. J. and Smith, P. J. S (1987). The performance of the Octopus circulatory system: A triumph of engineering over design. Experientia 43, 487-.
Williamson, R (1989). Electrophysiological evidence for cholinergic and catecholaminergic efferent transmitters in the statocyst of Octopus. Comp. Biochem. Physiol 93, 23-.