Detection of dopamine in the presence of excess ascorbic acid at physiological concentrations through redox cycling at an unmodified microelectrode array
Author:
Publisher
Springer Science and Business Media LLC
Subject
Biochemistry,Analytical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00216-013-6738-z.pdf
Reference78 articles.
1. Benes FM (2001) Arvid Carlsson and the discovery of dopamine. Trends Pharmacol Sci 22(1):46–47
2. Berridge KC, Robinson TE (1998) What is the role of dopamine in reward: hedonic impact, reward learning, or incentive salience? Brain Res Rev 28(3):309–369
3. Pan WX, Schmidt R, Wickens JR, Hyland BI (2005) Dopamine cells respond to predicted events during classical conditioning: evidence for eligibility traces in the reward-learning network. J Neurosci 25(26):6235–6242
4. Tobler PN, Fiorillo CD, Schultz W (2005) Adaptive coding of reward value by dopamine neurons. Science 307(5715):1642–1645
5. Wise RA (1998) Drug-activation of brain reward pathways. Drug Alcohol Depend 51(1–2):13–22
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