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Investigative Ophthalmology & Visual Science|June 1, 1988
Prostaglandins E1, E2, and D2 induce dark-adaptive retinomotor movements in teleost retinal cones and RPEB Cavallaro, B BurnsideThe Journal of Cell Biology|June 1, 1984
Regulation of reactivated contraction in teleost retinal cone models by calcium and cyclic adenosine monophosphateK Porrello, B BurnsideInvestigative Ophthalmology & Visual Science|March 1, 1981
Circadian rhythms in teleost retinomotor movement. A comparison of the effects of circadian rhythm and light condition on cone lengthG Levinson, B BurnsideThe Journal of General Physiology|April 1, 1984
Effects of extracellular Ca++, K+, and Na+ on cone and retinal pigment epithelium retinomotor movements in isolated teleost retinasA Dearry, B BurnsideInvestigative Ophthalmology & Visual Science|November 1, 1986
Pigment granule migration in isolated cells of the teleost retinal pigment epitheliumU Bruenner, B BurnsideJournal of Neurochemistry|April 1, 1986
Dopaminergic regulation of cone retinomotor movement in isolated teleost retinas: II. Modulation by gamma-aminobutyric acid and serotoninA Dearry, B BurnsideInvestigative Ophthalmology & Visual Science|May 1, 1984
Effects of circadian rhythm and cAMP on retinomotor movements in the green sunfish, Lepomis cyanellusB Burnside, N AcklandInvestigative Ophthalmology & Visual Science|January 1, 1983
Retinomotor pigment migration in the teleost retinal pigment epithelium. II. Cyclic-3',5'-adenosine monophosphate induction of dark-adaptive movement in vitroB Burnside, S BasingerThe Journal of Cell Biology|July 1, 1987
Calcium-independent contraction in lysed cell models of teleost retinal cones: activation by unregulated myosin light chain kinase or high magnesium and loss of cAMP inhibitionB Burnside, N AcklandThe Journal of Cell Biology|June 1, 1981
Actin-dependent cell elongation in teleost retinal rods: requirement for actin filament assemblyP O'Connor, B BurnsidePageof 14