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Neuroscience Letters|July 29, 1983
The compartment model for chronically implanted voltammetric electrodes in the rat brainW J Albery, M Fillenz, R D O'NeillNeuroscience Letters|December 30, 1982
Circadian changes in homovanillic acid and ascorbate levels in the rat striatum using microprocessor-controlled voltammetryR D O'Neill, M Fillenz, W J AlberyJournal of Neuroscience Methods|July 1, 1983
The development of linear sweep voltammetry with carbon paste electrodes in vivoR D O'Neill, M Fillenz, W J AlberyNeuroscience Letters|November 21, 1983
The effect of unilateral cortical lesions on the circadian changes in rat striatal ascorbate and homovanillic acid levels measured in vivo using voltammetryR D O'Neill, R A Grunewald, M Fillenz, et al.Neuroscience|May 1, 1983
The monitoring of ascorbate and monoamine transmitter metabolites in the striatum of unanaesthetised rats using microprocessor-based voltammetryR D O'Neill, M Fillenz, W J Albery, et al.Neurochemistry International|May 22, 2010
The origin of circadian and amphetamine-induced changes in the extracellular concentration of brain ascorbateR A Grünewald, R D O'Neill, M Fillenz, et al.Neuroscience|January 1, 1982
Linear sweep voltammetry with carbon paste electrodes in the rat striatumR D O'Neill, R A Grünewald, M Fillenz, et al.Neuroscience Letters|October 10, 1985
Circadian changes in extracellular ascorbate in rat cortex, accumbens, striatum and hippocampus: correlations with motor activityR D O'Neill, M FillenzNeuroscience|September 1, 1985
Simultaneous monitoring of dopamine release in rat frontal cortex, nucleus accumbens and striatum: effect of drugs, circadian changes and correlations with motor activityR D O'Neill, M FillenzNeuroscience|March 1, 1985
Detection of homovanillic acid in vivo using microcomputer-controlled voltammetry: simultaneous monitoring of rat motor activity and striatal dopamine releaseR D O'Neill, M FillenzPageof 15