Rapid event-related, BOLD fMRI, non-human primates (NHP): choose two out of three.
Journal article
Pelekanos V. et al, (2020), Sci Rep, 10
Behavioral flexibility is associated with changes in structure and function distributed across a frontal cortical network in macaques.
Journal article
Sallet J. et al, (2020), PLoS Biol, 18
Preserved extrastriate visual network in a monkey with substantial, naturally occurring damage to primary visual cortex.
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Bridge H. et al, (2019), Elife, 8
Functional reorganisation and recovery following cortical lesions: A preliminary study in macaque monkeys.
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Ainsworth M. et al, (2018), Neuropsychologia, 119, 382 - 391
Methods matter: A primer on permanent and reversible interference techniques in animals for investigators of human neuropsychology.
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Bell AH. and Bultitude JH., (2018), Neuropsychologia, 115, 211 - 219
Individual Differences in the Alignment of Structural and Functional Markers of the V5/MT Complex in Primates.
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Large I. et al, (2016), Cereb Cortex, 26, 3928 - 3944
Encoding of Stimulus Probability in Macaque Inferior Temporal Cortex.
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Bell AH. et al, (2016), Curr Biol, 26, 2280 - 2290
A Putative Multiple-Demand System in the Macaque Brain.
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Mitchell DJ. et al, (2016), J Neurosci, 36, 8574 - 8585
Contrasting Roles for Orbitofrontal Cortex and Amygdala in Credit Assignment and Learning in Macaques.
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Chau BKH. et al, (2015), Neuron, 87, 1106 - 1118
Connectivity between the superior colliculus and the amygdala in humans and macaque monkeys: virtual dissection with probabilistic DTI tractography.
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Rafal RD. et al, (2015), J Neurophysiol, 114, 1947 - 1962
Hierarchical Encoding of Social Cues in Primate Inferior Temporal Cortex.
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Morin EL. et al, (2015), Cereb Cortex, 25, 3036 - 3045
A neural circuit covarying with social hierarchy in macaques.
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Noonan MP. et al, (2014), PLoS Biol, 12
Relationship between functional magnetic resonance imaging-identified regions and neuronal category selectivity.
Journal article
Bell AH. et al, (2011), J Neurosci, 31, 12229 - 12240
Uncovering the visual "alphabet": advances in our understanding of object perception.
Journal article
Ungerleider LG. and Bell AH., (2011), Vision Res, 51, 782 - 799
The effect of spatial-temporal audiovisual disparities on saccades in a complex scene.
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Van Wanrooij MM. et al, (2009), Exp Brain Res, 198, 425 - 437
Object representations in the temporal cortex of monkeys and humans as revealed by functional magnetic resonance imaging.
Journal article
Bell AH. et al, (2009), J Neurophysiol, 101, 688 - 700
Activity in the superior colliculus reflects dynamic interactions between voluntary and involuntary influences on orienting behaviour.
Journal article
Bell AH. and Munoz DP., (2008), Eur J Neurosci, 28, 1654 - 1660
Stimulus intensity modifies saccadic reaction time and visual response latency in the superior colliculus.
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Bell AH. et al, (2006), Exp Brain Res, 174, 53 - 59
Crossmodal integration in the primate superior colliculus underlying the preparation and initiation of saccadic eye movements.
Journal article
Bell AH. et al, (2005), J Neurophysiol, 93, 3659 - 3673
Neural correlates of the automatic and goal-driven biases in orienting spatial attention.
Journal article
Fecteau JH. et al, (2004), J Neurophysiol, 92, 1728 - 1737