Item does not contain fulltextBrain catecholamines have long been implicated in reinforcement learning, exemplified by catecholamine drug and genetic effects on probabilistic reversal learning. However, the mechanisms underlying such effects are unclear. Here we investigated effects of an acute catecholamine challenge with methylphenidate (20 mg, oral) on a novel probabilistic reversal learning paradigm in a within-subject, double-blind randomised design. The paradigm was designed to disentangle effects on punishment avoidance from effects on reward perseveration. Given the known large individual variability in methylphenidate’s effects, we stratified our effects by working memory capacity and trait impulsivity, putatively modulating the ef...
The remarkable expedience of human learning is thought to be underpinned by meta-learning, whereby s...
Complete understanding of the neural mechanisms by which stimulants such as methylphenidate ameliora...
Methylphenidate (MPH), introduced more than 60 years ago, accounts for two-thirds of current prescri...
Brain catecholamines have long been implicated in reinforcement learning, exemplified by catecholami...
Rationale: Brain catecholamines have long been implicated in reinforcement learning, exemplified by ...
Contains fulltext : 238956.pdf (Publisher’s version ) (Open Access)Rationale: Brai...
Contains fulltext : 128584.pdf (publisher's version ) (Closed access)Increased use...
Contains fulltext : 173053.pdf (publisher's version ) (Open Access)A balance has t...
A balance has to be struck between supporting distractor-resistant representations in working memory...
Contains fulltext : 198509.pdf (publisher's version ) (Closed access)The catechola...
Psychostimulants such as methylphenidate are widely used for their cognitive enhancing effects, but ...
Psychostimulants such as methylphenidate are widely used for their cognitive enhancing effects, but ...
Psychostimulants such as methylphenidate are widely used for their cognitive enhancing effects, but ...
Contains fulltext : 69272.pdf (publisher's version ) (Open Access)Complete underst...
Complete understanding of the neural mechanisms by which stimulants such as methylphenidate ameliora...
The remarkable expedience of human learning is thought to be underpinned by meta-learning, whereby s...
Complete understanding of the neural mechanisms by which stimulants such as methylphenidate ameliora...
Methylphenidate (MPH), introduced more than 60 years ago, accounts for two-thirds of current prescri...
Brain catecholamines have long been implicated in reinforcement learning, exemplified by catecholami...
Rationale: Brain catecholamines have long been implicated in reinforcement learning, exemplified by ...
Contains fulltext : 238956.pdf (Publisher’s version ) (Open Access)Rationale: Brai...
Contains fulltext : 128584.pdf (publisher's version ) (Closed access)Increased use...
Contains fulltext : 173053.pdf (publisher's version ) (Open Access)A balance has t...
A balance has to be struck between supporting distractor-resistant representations in working memory...
Contains fulltext : 198509.pdf (publisher's version ) (Closed access)The catechola...
Psychostimulants such as methylphenidate are widely used for their cognitive enhancing effects, but ...
Psychostimulants such as methylphenidate are widely used for their cognitive enhancing effects, but ...
Psychostimulants such as methylphenidate are widely used for their cognitive enhancing effects, but ...
Contains fulltext : 69272.pdf (publisher's version ) (Open Access)Complete underst...
Complete understanding of the neural mechanisms by which stimulants such as methylphenidate ameliora...
The remarkable expedience of human learning is thought to be underpinned by meta-learning, whereby s...
Complete understanding of the neural mechanisms by which stimulants such as methylphenidate ameliora...
Methylphenidate (MPH), introduced more than 60 years ago, accounts for two-thirds of current prescri...