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Felmy, F., Neher, E., and Schneggenburger, R. (2003). Probing the intracellular calcium sensitivity of
transmitter release during synaptic facilitation. Neuron 37,
801-811.
Felmy, F., Neher, E., and Schneggenburger, R. (2003). The timing of phasic transmitter release is Ca 2 þ -
dependent and lacks a direct influence of presynaptic membrane potential. Proc. Natl. Acad. Sci. USA
100,
15200-15205.
Ferenczi, M. A., Goldman, Y. E., and Trentham, D. R. (1989). Relaxation of permeabilized, isolated
muscle-fibers of the rabbit by rapid chelation of Ca- 2 þ -ions through laser-pulse photolysis of caged-
Bapta. J. Physiol. (Lond.) 418,
P155.
Fischer, T. M., Zucker, R. S., and Carew, T. J. (1997). Activity-dependent potentiation of synaptic
transmission from L30 inhibitory interneurons of aplysia depends on residual presynaptic Ca 2 þ but
not on postsynaptic Ca 2 þ . J. Neurophysiol. 78, 2061-2071.
Fleet, A., Ellis-Davies, G., and Bolsover, S. (1998). Calcium bu V ering capacity of neuronal cell cytosol
measured by flash photolysis of calcium bu V er NP-EGTA. Biochem. Biophys. Res. Commun. 250,
786-790.
Fogelson, A. L., and Zucker, R. S. (1985). Presynaptic calcium di V usion from various arrays of single
channels. Implications for transmitter release and synaptic facilitation. Biophys. J. 48, 1003-1017.
Forbush, B., 3rd, and Klodos, I. (1991). Rate-limiting steps in Na translocation by the Na/K pump. Soc.
Gen. Physiol. Ser. 46, 210-225.
Fricker, M. D., Gilroy, S., Read, N. D., and Trewavas, A. J. (1991). Visualisation and measurement of
the calcium message in guard cells. Symp. Soc. Exp. Biol. 45, 177-190.
Fryer, M. W., and Zucker, R. S. (1993). Ca 2 þ -dependent inactivation of Ca 2 þ current in Aplysia
neurons: Kinetic studies using photolabile Ca 2 þ chelators. J. Physiol. (Lond.) 464, 501-528.
Gilroy, S., Fricker, M. D., Read, N. D., and Trewavas, A. J. (1991). Role of calcium in signal
transduction of Commelina guard cells. Plant Cell 3, 333-344.
Godwin, D. W., Che, D., O'Malley, D. M., and Zhou, Q. (1997). Photostimulation with caged
neurotransmitters using fiber optic lightguides. J. Neurosci. Methods 73,
91-106.
Goldman, Y. E., Hibberd, M. G., and Trentham, D. R. (1984). Relaxation of rabbit psoas muscle fibres
from rigor by photochemical generation of adenosine-5 0 -triphosphate.
J. Physiol. (Lond.) 354,
577-604.
Grell, E., Lewitzki, E., Ruf, H., Bamberg, E., Ellis-Davies, G. C., Kaplan, J. H., and de Weer, P. (1989).
Caged-Ca 2 þ : A new agent allowing liberation of free Ca 2 þ in biological systems by photolysis. Cell.
Mol. Biol. 35,
515-522.
Groigno, L., and Whitaker, M. (1998). An anaphase calcium signal controls chromosome disjunction in
early sea urchin embryos. Cell 92,
193-204.
Grynkiewicz, G., Poenie, M., and Tsien, R. Y. (1985). A new generation of Ca 2 þ indicators with greatly
improved fluorescence properties. J. Biol. Chem. 260, 3440-3450.
Gurney, A. (1991). Photolabile calcium bu V ers to selectively activate calcium-dependent processes.
In ''Cellular Neurobiology: A Practical Approach,'' (J. Chad, and H. Wheal, eds.), pp. 153-177. IRL
Press, New York.
Gurney, A. (1993). Photolabile caged compounds. In ''Fluorescent and Luminescent Probes for
Biological Activity—A Practical Guide to Technology for Quantitative Real-Time Analysis,''
(W. T. Mason, ed.), pp. 335-348. Academic Press, San Diego.
Gurney, A. M., Tsien, R. Y., and Lester, H. A. (1987). Activation of a potassium current by rapid
photochemically generated step increases of intracellular calcium in rat sympathetic neurons. Proc.
Natl. Acad. Sci. USA 84, 3496-3500.
Gurney, A. M., Charnet, P., Pye, J. M., and Nargeot, J. (1989). Augmentation of cardiac calcium
current by flash photolysis of intracellular caged-Ca 2 þ molecules. Nature 341, 65-68.
Gy¨ rke, S., and Fill, M. (1993). Ryanodine receptor adaptation: Control mechanism of Ca 2 þ -induced
Ca 2 þ release in heart. Science 260, 807-809.
Hadley, R. W., and Lederer, W. J. (1991). Ca 2 þ and voltage inactivate Ca 2 þ channels in guinea-pig
ventricular myocytes through independent mechanisms. J. Physiol. (Lond.) 444,
257-268.
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