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Bacigalupo, J. and Lisman, J. E (1983). Single channel currents activated by light in Limulus ventral photoreceptors. Nature 304, 268-.[Medline]

Baer, K. M. and Saibil, H. R (1988). Light-and GTP-activated hydrolysis of phosphatidylinositol bisphosphate in squid photoreceptor membranes. J. Biol. Chem 263, 17-.[Abstract/Free Full Text]

Benolken, R. M. and Russell, C. J (1967). Tetrodotoxin blocks agraded response of the eye of Limulus. Science 155, 1576-.[Abstract/Free Full Text]

Bloomquist, B. T., Shortridge, R. D., Schneuwly, S., Perdew, M., Montell, C., Steller, H., Rubin, G. and Pak, W. L (1988). Isolation of a putative phospholipase C gene of Drosophila , NorpA and its role in phototransduction. Cell 54, 723-.[Medline]

Boyle, P. R (1981). Methods for the aquarium maintenance of the common octopus of British waters, Eledone cirrhosa. Lab. Animals 15, 327-.[Abstract/Free Full Text]

Brown, H. M., Meech, R. W., Koike, H. and Hagiwara, S (1969). Current\320voltage relations during illumination: photoreceptor membrane of a barnacle. Science 166, 240-.[Abstract/Free Full Text]

Brown, H. M., Rydqvist, B. and Moser, H (1988). Intracellular calcium changes in Balanus photoreceptor. A study with calcium ion-selective electrodes and Arsenazo III. Cell Calcium 9, 101-.

Brown, J. E. and Blinks, J. R (1974). Changes in intracellular free calcium concentration during illumination of invertebrate photoreceptors: detection with aequorin. J. Gen. Physiol 64, 643-.[Abstract/Free Full Text]

Brown, J. E., Faddis, M. and Combs, A (1992). Light does not induce an increase in cyclic-GMP content of squid or Limulus photoreceptors. Exp. Eye Res 54, 403-.[Medline]

Brown, J. E. and Rubin, L. J (1984). A direct demonstration that inositol-trisphosphate induced an increase in intracellular calcium in Limulus photoreceptors. Biochem. Biophys. Res. Commun 125, 1137-.[Medline]

Brown, J. E., Rubin, L. J., Ghalayni, A. J., Tarver, A. P., Irvine, R. F., Berridge, M. J. and Anderson, R. E (1984). Myo -inositol polyphosphate may be a messenger for visual excitation in Limulus photoreceptors. Nature 311, 160-.[Medline]

Brown, J. E., Watkins, D. C. and Malbon, C. C (1987). Light-induced changes in the content of inositol phosphates in squid ( Loligo pealei ) retina. Biochem. J 247, 293-.[Medline]

Clarke, R. B. and Duncan, G (1978). Two components of extracellularly-recorded photoreceptor potentials in the cephalopod retina: differential effects of Na+, K+and Ca++. Biophys. Struct. Mechan 4, 263-.[Medline]

Cobb, C. S. and Williamson, R (1998). Electrophysiology and innervation of the photosensitive epistellar body in the lesser octopus Eledone cirrhosa. Biol. Bull 195, 78-.[Abstract]

Dong, C. J., Mcreynolds, J. S. and Qian, H. H (1990). Time-dependent differential effects of cobalt ions on rod-and cone-driven responses in the isolated frog retina. Visual Neurosci 4, 359-.[Medline]

Dowling, J. E (1968). Discrete potentials in the dark-adapted eye of the crab Limulus. Nature 217, 28-.[Medline]

Duncan, G. and Croghan, P. C (1973). Electrical activity of the isolated cephalopod retina: An equivalent circuit model. Exp. Eye Res 15, 401-.[Medline]

Duncan, G. and Pysent, P. B (1979). Dynamics of dark adaptation in the cephalopod retina. Vision Res 19, 359-.[Medline]

Duncan, G. and Weeks, F. I (1973). Photoreception by a cephalopod retina in vitro. Exp. Eye Res 17, 183-.[Medline]

Fein, A., Payne, R., Corson, W. D., Berridge, M. J. and Irvine, R. F (1984). Photoreceptor excitation and adaptation by inositol 1,4,5-trisphosphate. Nature 311, 157-.[Medline]

Fulpius, B. and Baumann, F (1969). Effects of sodium, potassium and calcium ions on slow and spike potentials in single photoreceptor cells. J. Gen. Physiol 53, 541-.[Abstract/Free Full Text]

Gotow, T. and Nishi, T (1991). Roles of cyclic GMP and inositol trisphosphate in phototransduction of the mollusc extraocular photoreceptor. Brain Res 557, 121-.[Medline]

Hagins, W. A (1965). Electrical signs of information flow in photoreceptors. Cold Spring Harbor Symp. Quant. Biol 30, 403-.[Medline]

Hagins, W. A (1972). The visual process: excitatory mechanisms in the primary receptor cells. Annu. Rev. Biophys. Bioeng 1, 131-.[Medline]

Hagins, W. A., Adams, R. G. and Wagner, H. G (1960). Light-induced current from the receptors of the squid retina. Biol. Bull 119, 317-.

Hagins, W. A., Zonana, H. V. and Adams, R. G (1962). Local membrane current in the outer segments of squid photoreceptors. Nature 194, 844-.[Medline]

Hardie, R. C (1991). Whole-cell recordings of the light induced current in dissociated Drosophila photoreceptors: Evidence for feedback by calcium permeating the light-sensitive channels. Proc. R. Soc. Lond. B 245, 203-.

Hardie, R. C. and Minke, B (1993). Novel Ca2+channels underlying transduction in Drosophila photoreceptors; implications for phosphoinositide-mediated Ca2+mobilization. Trends Neurosci 16, 371-.[Medline]

Hardie, R. C. and Minke, B (1994). Spontaneous activation of light sensitive channels in Drosophila photoreceptors. J. Gen. Physiol 103, 389-.[Abstract/Free Full Text]

Hochstrate, P. and Juse, A (1991). Intracellular free calcium concentration in the blowfly retina studied by Fura-2. Cell Calcium 12, 695-.[Medline]

Johnson, E., Robinson, P. and Lisman, J (1986). Involvement of cGMP in the excitation of invertebrate photoreceptors. Nature 324, 468-.[Medline]

Lisman, J (1976). Effects of removing extracellular Ca2+on excitation and adaptation in Limulus ventral photoreceptors. Biophys J 16, 1331-.[Abstract/Free Full Text]

Lisman, J. and Brown, J. E (1975). Light-induced changes of sensitivity in Limulus ventral photoreceptors. J. Gen. Physiol 66, 473-.[Abstract/Free Full Text]

Lisman, J. and Brown, J. E (1975). Effects of intracellular injection of calcium buffers on light adaptation in Limulus ventral photoreceptors. J. Gen. Physiol 66, 489-.[Abstract/Free Full Text]

Mauro, A. and Baumann, F (1968). Electrophysiological evidence of photoreceptors in the epistellar body of Eledone moschata. Nature 220, 1332-.[Medline]

Millecchia, R. and Mauro, A (1969). The ventral photoreceptor cells of Limulus. II. The basic photoresponse. J. Gen. Physiol 54, 310-.[Abstract/Free Full Text]

Millecchia, R. and Mauro, A (1969). The ventral photoreceptor cells of Limulus. III. A voltage-clamp study. J. Gen. Physiol 54, 331-.[Abstract/Free Full Text]

Minke, B. and Armon, E (1984). Activation of electrogenic Na\320Ca exchange by light in fly photoreceptors. Vision Res 24, 109-.[Medline]

Nagy, K (1993). Cyclic nucleotides and inositol trisphosphate activate distinct components of the receptor current in Limulus ventral nerve photoreceptors. Neurosci. Lett 152, 1-.[Medline]

Nagy, K. and Contzen, K (1997). Inhibition of phospholipase C by U-73122 blocks one component of the receptor current in Limulus photoreceptor. Visual Neurosci 4, 995-.

Nasi, E. and Gomez, M (1992). Electrophysiological recordings in solitary photoreceptors from the retina of squid, Loligo pealei. Visual Neurosci 8, 349-.[Medline]

Nishioka, R. S., Yasumasu, I. and Bern, H. A (1962). Ultrastructure of the epistellar body of the octopus. Z. Zellforsch 57, 406-.[Medline]

Nishioka, R. S., Yasumasu, I., Packard, A., Bern, H. A. and Young, J. Z (1966). Nature of vesicles associated with nervous system of cephalopods. Z. Zellforsch 75, 301-.[Medline]

O'Day, P. M. and Gray-Keller, M. P (1989). Evidence for electrogenic Na+/Ca2+exchange in Limulus ventral photoreceptors. J. Gen. Physiol 93, 473-.[Abstract/Free Full Text]

Payne, R., Corson, D. W., Fein, A. and Berridge, M. J (1986). Excitation and adaptation of Limulus ventral photoreceptors by inositol 1,4,5-trisphosphate result from a rise in intracellular calcium. J. Gen. Physiol 88, 127-.[Abstract/Free Full Text]

Perrelet, A. and Mauro, A (1972). Ultrastructure of nerves associated with the epistellar body of the octopod Eledone moschata and the parolfactory vesicles of the squid Todarodes sagittatus. Brain Res 37, 161-.[Medline]

Pinto, L. H. and Brown, J. E (1977). Intracellular recordings from photoreceptors of the squid ( Loligo pealii ). J. Comp. Physiol 122, 241-.

Saibil, H. R (1984). A light stimulated increase of cyclic GMP in squid photoreceptors. FEBS Lett 168, 213-.[Medline]

Sakakibara, M., Alkon, D. L., Kouchi, T., Inoue, H. and Yoshioka, T (1994). Induction of photoresponse by the hydrolysis ofpolyphosphoinositides in the Hermissenda type B photoreceptor. Biochem. Biophys. Res. Commun 202, 299-.[Medline]

Szuts, E. Z., Wood, S. F., Reid, M. A. and Fein, A (1986). Light stimulates the rapid formation of inositol trisphosphate in squid retinas. Biochem. J 240, 929-.[Medline]

Weeks, F. I. and Duncan, G (1974). Photoreception by a cephalopod retina: response dynamics. Exp. Eye Res 19, 483-.

Wulff, V. J. and Mendez, C (1973). Effect of manganous chloride and tetrodotoxin on Limulus lateral eye retinular cell. Vision Res 13, 2327-.[Medline]

Young, J. Z (1929). Sopra un nuovo organo dei cefalopodi. Boll. Soc. Ital. Biol. Sper 4, 1022-.

Young, J. Z (1936). The giant nerve fibres and epistellar body of cephalopods. Q. J. Microsc. Sci 78, 367-.




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