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Updated: Aug 30, 2026

Dopamine Release at Individual Presynaptic Terminals Visualized with FFNs
Published on: August 31, 2009
Presynaptic regulation of dopaminergic neurotransmission
Yvonne Schmitz1, Marianne Benoit-Marand, François Gonon
1Department of Neurology, Columbia Univeristy, New York, NY 10032, USA. ys290@columbia.edu
Abstract:
The development of electrochemical recordings with small carbon-fiber electrodes has significantly advanced the understanding of the regulation of catecholamine transmission in various brain areas. Recordings in vivo or in slice preparations monitor diffusion of catecholamine following stimulated synaptic release into the surrounding tissue. This synaptic 'overflow' is defined by the amount of release, by the activity of reuptake, and by the diffusion parameters in brain tissue. Such studies have elucidated the complex regulation of catecholamine release and uptake, and how psychostimulants and anti-psychotic drugs interfere with it. Moreover, recordings with carbon-fiber electrodes from cultured neurons have provided analysis of catecholamine release and its plasticity at the quantal level.
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Synthesis: Catecholamine synthesis requires tyrosine, which is taken...

