RT PCR; Spiral ganglion cell; Subunit; Voltage gated calcium channel
Indexed keywords
CALCIUM CHANNEL L TYPE;
CALCIUM CHANNEL R TYPE;
COMPLEMENTARY DNA;
PRIMER DNA;
PROTEIN SUBUNIT;
RNA;
UNCLASSIFIED DRUG;
VOLTAGE GATED CALCIUM CHANNEL;
VOLTAGE GATED CALCIUM CHANNEL ALPHA1D;
VOLTAGE GATED CALCIUM CHANNEL ALPHA1E;
VOLTAGE GATED CALCIUM CHANNEL ALPHA2;
VOLTAGE GATED CALCIUM CHANNEL BETA1;
VOLTAGE GATED CALCIUM CHANNEL BETA3;
Glutamate neurotoxicity in the developing rat cochlea: Physiological and morphological approaches
Janssen R, Schweitzer L, Jensen KF. Glutamate neurotoxicity in the developing rat cochlea: physiological and morphological approaches. Brain Res 1991;552:255-64.
Comparison of the effects of trimethyltin on the intracellular calcium levels in spiral ganglion cells and outer hair cells
Liu Y, Fechter LD. Comparison of the effects of trimethyltin on the intracellular calcium levels in spiral ganglion cells and outer hair cells. Acta Otolaryngol (Stockh) 1996;116:417-21.
Measurement of intracellular free Ca2+ concentration in guinea pig spiral ganglion cells
Shimozono M, Tono T, Morimitsu T, Nakagawa T, Komune S. Measurement of intracellular free Ca2+ concentration in guinea pig spiral ganglion cells. Neuroreport 1995;6:421-4.
Molecular elements of ion permeation and selectivity within calcium channels
Varadi G, Strobeck M, Koch S, Caglioti L, Zucchi C, Palyi G. Molecular elements of ion permeation and selectivity within calcium channels. Crit Rev Biochem Mol Biol 1999;34:181-214.
Action potentials and underlying voltage-dependent currents studied in cultured spiral ganglion neurons of the postnatal gerbil
Lin X. Action potentials and underlying voltage-dependent currents studied in cultured spiral ganglion neurons of the postnatal gerbil. Hear Res 1997;108:157-79.
Molecular basis of R-type calcium channels in central amygdala neurons of the mouse
Lee SC, Choi S, Lee T, Kim HL, Chin H, Shin HS. Molecular basis of R-type calcium channels in central amygdala neurons of the mouse. Proc Natl Acad Sci U S A 2002;99:3276-81.
Normalization of current kinetics by interaction between the alpha 1 and beta subunits of the skeletal muscle dihydropyridine-sensitive Ca2+ channel
Lacerda AE, Kim HS, Ruth P, Perez-Reyes E, Flockerzi V, Hofmann F, et al. Normalization of current kinetics by interaction between the alpha 1 and beta subunits of the skeletal muscle dihydropyridine-sensitive Ca2+ channel. Nature 1991;352:527-30.