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Methylphenidate and atomoxetine enhance prefrontal function through α2-adrenergic and dopamine D1 receptors.
J Am Acad Child Adolesc Psychiatry. 2010 Oct;49(10):1011-23. doi: 10.1016/j.jaac.2010.06.015. Epub 2010 Sep 1.
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In vivo electrophysiological effects of methylphenidate in the prefrontal cortex: involvement of dopamine D1 and alpha 2 adrenergic receptors.
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Catecholamine influences on dorsolateral prefrontal cortical networks.
Biol Psychiatry. 2011 Jun 15;69(12):e89-99. doi: 10.1016/j.biopsych.2011.01.027. Epub 2011 Apr 13.
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Receptor and circuit mechanisms underlying differential procognitive actions of psychostimulants.
Neuropsychopharmacology. 2019 Sep;44(10):1820-1827. doi: 10.1038/s41386-019-0314-y. Epub 2019 Jan 11.
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Dopamine vs noradrenaline: inverted-U effects and ADHD theories.
Aust N Z J Psychiatry. 2009 Feb;43(2):101-8. doi: 10.1080/00048670802607238.
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Cognition-enhancing doses of methylphenidate preferentially increase prefrontal cortex neuronal responsiveness.
Biol Psychiatry. 2008 Oct 1;64(7):626-35. doi: 10.1016/j.biopsych.2008.04.037. Epub 2008 Jun 30.

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Role of Methylphenidate Augmentation in Treatment-Resistant Obsessive-Compulsive Disorder: A Case Series.
Cureus. 2025 May 31;17(5):e85131. doi: 10.7759/cureus.85131. eCollection 2025 May.
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Dynamic Network Connectivity: from monkeys to humans.
Front Hum Neurosci. 2024 Feb 7;18:1353043. doi: 10.3389/fnhum.2024.1353043. eCollection 2024.
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Noradrenergic regulation of cue-guided decision making and impulsivity is doubly dissociable across frontal brain regions.
Psychopharmacology (Berl). 2024 Apr;241(4):767-783. doi: 10.1007/s00213-023-06508-2. Epub 2023 Nov 25.
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Methylphenidate modulates motor cortical dynamics and behavior.
bioRxiv. 2023 Oct 17:2023.10.15.562405. doi: 10.1101/2023.10.15.562405.
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Prefrontal modulation of anxiety through a lens of noradrenergic signaling.
Front Syst Neurosci. 2023 Apr 17;17:1173326. doi: 10.3389/fnsys.2023.1173326. eCollection 2023.

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Dynamic Network Connectivity: A new form of neuroplasticity.
Trends Cogn Sci. 2010 Aug;14(8):365-75. doi: 10.1016/j.tics.2010.05.003. Epub 2010 Jun 16.
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Learning and cognitive flexibility: frontostriatal function and monoaminergic modulation.
Curr Opin Neurobiol. 2010 Apr;20(2):199-204. doi: 10.1016/j.conb.2010.01.007. Epub 2010 Feb 16.
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Stress signalling pathways that impair prefrontal cortex structure and function.
Nat Rev Neurosci. 2009 Jun;10(6):410-22. doi: 10.1038/nrn2648.
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Dissociable effects of noradrenaline, dopamine, and serotonin uptake blockade on stop task performance in rats.
Psychopharmacology (Berl). 2009 Aug;205(2):273-83. doi: 10.1007/s00213-009-1537-0. Epub 2009 Apr 30.
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Noradrenergic genotype predicts lapses in sustained attention.
Neuropsychologia. 2009 Jan;47(2):591-4. doi: 10.1016/j.neuropsychologia.2008.10.003. Epub 2008 Oct 10.
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Differential contributions of dopamine and serotonin to orbitofrontal cortex function in the marmoset.
Cereb Cortex. 2009 Apr;19(4):889-98. doi: 10.1093/cercor/bhn136. Epub 2008 Aug 22.
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Neurobiology of attention deficit hyperactivity disorder.
Child Adolesc Psychiatr Clin N Am. 2008 Apr;17(2):285-307, viii. doi: 10.1016/j.chc.2007.11.012.
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Neurobehavioral mechanisms of impulsivity: fronto-striatal systems and functional neurochemistry.
Pharmacol Biochem Behav. 2008 Aug;90(2):250-60. doi: 10.1016/j.pbb.2007.12.021. Epub 2007 Dec 27.

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