Publications
Reprint Requests
A role for the medial temporal lobes in category learning.
Learning & Memory. 27, 441-450.
(2020). Cortical and striatal contributions to automaticity in information-integration categorization..
Neuroimage. 56(3), 1791-802.
(2011). The effects of concurrent task interference on category learning: Evidence for multiple category learning systems.
Psychonomic Bulletin & Review. 8, 168–176.
(2001). A computational model of the temporal dynamics of plasticity in procedural learning: Sensitivity to feedback timing.
Frontiers in Psychology. 5, 643.
(2014). Dopamine dependence in aggregate feedback learning: A computational cognitive neuroscience approach.
Brain & Cognition. 109, 1-18.
(2016). Spatiotemporal activity estimation for multivoxel pattern analysis with rapid event-related designs.
NeuroImage. 62(3), 1429-1438.
(2012). Hierarchical control of procedural and declarative category-learning systems.
NeuroImage. 150, 150-161.
(2017). Methods of modeling capacity in simple processing systems.
Cognitive theory. 3, 200–239.
(1978). Measurement scales and statistics: The misconception misconceived..
Psychological Bulletin. 96, 394 401.
(1984). Experimental test of contemporary mathematical models of visual letter recognition..
Journal of Experimental Psychology: Human Perception and Performance. 8, 834.
(1982). Perceptual sampling of orthogonal straight line features.
Psychological Research. 43, 259–275.
(1981). A test of visual feature sampling independence with orthogonal straight lines.
Bulletin of the Psychonomic Society. 15, 163–166.
(1980).
(1983). Initial training with difficult items facilitates information integration, but not rule-based category learning.
Psychological Science. 19(11), 1169-1177.
(2008). Response processes in information-integration category learning.
Neurobiology of Learning and Memory. 90(2), 330-338.
(2008). Categorization training increases the perceptual separability of novel dimensions.
Cognition. 139, 105-129.
(2015). Linking signal detection theory and encoding models to reveal independent neural representations from neuroimaging data.
PLOS Computational Biology. 14(10), e1006470.
(2018). Brain activity across the development of automatic categorization: a comparison of categorization tasks using multi-voxel pattern analysis.
NeuroImage. 71, 284-297.
(2013). Dissociable changes in functional network topology underlie early category learning and development of automaticity.
NeuroImage. 141, 220-241.
(2016). Testing separability and independence of perceptual dimensions with general recognition theory: A tutorial and new R package (grtools).
Frontiers in Psychology. 8, 696.
(2017). General recognition theory with individual differences: a new method for examining perceptual and decisional interactions with an application to face perception.
Psychonomic Bulletin & Review. 22(1), 88-111.
(2015). Novel representations that support rule-based categorization are acquired on-the-fly during category learning.
Psychological Research. 83, 544-566.
(2019). Encoding models in neuroimaging.
In F. G. Ashby, H. Colonius, & E. Dzhafarov (Eds.), The new handbook of mathematical psychology, Volume 3 (pp. 421-472). Cambridge University Press.
(2023). The time course of explicit and implicit categorization.
Attention, Perception, & Psychophysics. 77(7), 2476-2490.
(2015). Deferred feedback sharply dissociates implicit and explicit category learning.
Psychological Science. 25(2), 447-457.
(2014).