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Cortex 14 , — Ishai, A. Distributed neural systems for the generation of visual images.

Mental imagery training improves multiple sclerosis patients' cognition

Neuron 28 , — Goebel, R. The constructive nature of vision: direct evidence from functional magnetic resonance imaging studies of apparent motion and motion imagery. Mellet, E. Functional anatomy of spatial mental imagery generated from verbal instructions. Kosslyn, S. Neural foundations of imagery. Hassabis, D. Using imagination to understand the neural basis of episodic memory. Bird, C. Establishing the boundaries: the hippocampal contribution to imagining scenes.

Patients with hippocampal amnesia cannot imagine new experiences.


Kreiman, G. Imagery neurons in the human brain. Nature , — Maguire, E. Imagining fictitious and future experiences: evidence from developmental amnesia. Neuropsychologia 48 , — Kim, S.

Imagery and Cognition | Cesare Cornoldi | Springer

Sparing of spatial mental imagery in patients with hippocampal lesions. The heterogeneity of mental representation: ending the imagery debate. A functional MRI study of mental image generation. Neuropsychologia 35 , — Knauff, M. Cortical activation evoked by visual mental imagery as measured by fMRI.

Neuroreport 11 , — Trojano, L. Matching two imagined clocks: the functional anatomy of spatial analysis in the absence of visual stimulation.

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Cortex 10 , — Wheeler, M. USA 97 , Formisano, E. Neuron 35 , — Sack, A. Le Bihan, D. Activation of human primary visual cortex during visual recall: a magnetic resonance imaging study. USA 90 , — Sabbah, P. Functional magnetic resonance imaging at 1. Chen, W. Human primary visual cortex and lateral geniculate nucleus activation during visual imagery.

Neuroreport 9 , — Visual imagery of famous faces: effects of memory and attention revealed by fMRI.

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Neuroimage 17 , — Ganis, G. Brain areas underlying visual mental imagery and visual perception: an fMRI study. Brain Res. Klein, I. Transient activity in the human calcarine cortex during visual-mental imagery: an event-related fMRI study. Lambert, S. Neural substrates of animal mental imagery: calcarine sulcus and dorsal pathway involvement — an fMRI study.

Cui, X. Vividness of mental imagery: individual variability can be measured objectively. Vision Res. Amedi, A. Negative BOLD differentiates visual imagery and perception. Neuron 48 , — Reddy, L. Neuroimage 50 , — Vividness of visual imagery depends on the neural overlap with perception in visual areas. When is early visual cortex activated during visual mental imagery?

Imagination, Cognition and Personality

Albers, A. Shared representations for working memory and mental imagery in early visual cortex. This paper shows that both imagery and visual working memory can be decoded in the brain based on training on either, showing evidence of a common brain representation. Koenig-Robert, R. Decoding the contents and strength of imagery before volitional engagement. Naselaris, T. A voxel-wise encoding model for early visual areas decodes mental images of remembered scenes. This study shows that mental imagery content can be decoded in the early visual cortex when the decoding model is based on depictive perceptual features.

Fox, M. The human brain is intrinsically organized into dynamic, anticorrelated functional networks. Smith, S. Mental time travel and default-mode network functional connectivity in the developing brain. Andrews-Hanna, J. Neuron 65 , — Deconstructing episodic memory with construction. Gerlach, K. Solving future problems: default network and executive activity associated with goal-directed mental simulations. Neuroimage 55 , — Levine, D. Two visual systems in mental imagery.

Neurology 35 , Keogh, R. The blind mind: no sensory visual imagery in aphantasia. Cortex , 53—60 Sakai, K. Neural organization for the long-term memory of paired associates.

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Messinger, A. Neuronal representations of stimulus associations develop in the temporal lobe during learning. USA 98 , — Schlack, A. Remembering visual motion: neural correlates of associative plasticity and motion recall in cortical area MT. Neuron 53 , — Bannert, M. Decoding the yellow of a gray banana. Hansen, T. Memory modulates color appearance. Meng, M. Filling-in of visual phantoms in the human brain. Sasaki, Y. The primary visual cortex fills in color. Kok, P. Prior expectations evoke stimulus templates in the primary visual cortex. Bergmann, J. Smaller primary visual cortex is associated with stronger, but less precise mental imagery.

Cortex 26 , — This study shows that stronger but less precise imagery is associated with a smaller primary and secondary visual cortex. Stensaas, S. The topography and variability of the primary visual cortex in man.

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