The distributed nature of working memory TB Christophel, PC Klink, B Spitzer, PR Roelfsema, JD Haynes Trends in cognitive sciences 21 (2), 111-124, 2017 | 756 | 2017 |
Decoding the Contents of Visual Short-Term Memory from Human Visual and Parietal Cortex TB Christophel, MN Hebart, JD Haynes The Journal of Neuroscience 32 (38), 12983-12989, 2012 | 333 | 2012 |
Cortical specialization for attended versus unattended working memory TB Christophel, P Iamshchinina, C Yan, C Allefeld, JD Haynes Nature neuroscience 21 (4), 494, 2018 | 183 | 2018 |
Parietal and early visual cortices encode working memory content across mental transformations TB Christophel, RM Cichy, MN Hebart, JD Haynes Neuroimage 106, 198-206, 2015 | 114 | 2015 |
Decoding complex flow-field patterns in visual working memory TB Christophel, JD Haynes Neuroimage 91, 43-51, 2014 | 76 | 2014 |
Visual working memory enhances the neural response to matching visual input S Gayet, M Guggenmos, TB Christophel, JD Haynes, CLE Paffen, ... Journal of Neuroscience 37 (28), 6638-6647, 2017 | 68 | 2017 |
Essential considerations for exploring visual working memory storage in the human brain P Iamshchinina, TB Christophel, S Gayet, RL Rademaker Visual Cognition 29 (7), 425-436, 2021 | 39 | 2021 |
Increasing the spatial resolution and sensitivity of magnetic resonance elastography by correcting for subject motion and susceptibility‐induced image distortions A Fehlner, S Hirsch, M Weygandt, T Christophel, E Barnhill, ... Journal of Magnetic Resonance Imaging 46 (1), 134-141, 2017 | 37 | 2017 |
View-independent working memory representations of artificial shapes in prefrontal and posterior regions of the human brain TB Christophel, C Allefeld, C Endisch, JD Haynes Cerebral Cortex 28 (6), 2146-2161, 2018 | 28 | 2018 |
Multiple routes to mental animation: Language and functional relations drive motion processing for static images KR Coventry, TB Christophel, T Fehr, B Valdés-Conroy, M Herrmann Psychological science 24 (8), 1379-1388, 2013 | 27 | 2013 |
Decoding pattern motion information in V1 BM Van Kemenade, K Seymour, TB Christophel, M Rothkirch, P Sterzer cortex 57, 177-187, 2014 | 13 | 2014 |
Decoding verbal working memory representations of Chinese characters from Broca's area C Yan, TB Christophel, C Allefeld, JD Haynes NeuroImage 226, 117595, 2021 | 12 | 2021 |
No evidence for mnemonic modulation of interocularly suppressed visual input S Gayet, M Guggenmos, TB Christophel, JD Haynes, CLE Paffen, ... NeuroImage 215, 116801, 2020 | 12 | 2020 |
Working memory signals in early visual cortex are present in weak and strong imagers S Weber, T Christophel, K Görgen, J Soch, JD Haynes Human Brain Mapping 45 (3), e26590, 2024 | 7 | 2024 |
Categorical working memory codes in human visual cortex C Yan, TB Christophel, C Allefeld, JD Haynes NeuroImage 274, 120149, 2023 | 6 | 2023 |
Working memory signals in early visual cortex do not depend on visual imagery S Weber, T Christophel, K Görgen, J Soch, JD Haynes bioRxiv, 2023.02. 13.528298, 2023 | 3 | 2023 |
Early EEG signals predict choices several seconds before they are made: Further evidence for unconscious determinants of “free” decisions T Christophel, JD Haynes NeuroImage 47, S95, 2009 | 2 | 2009 |
Nonfrontal Control of Working Memory T Christophel, S Weber, C Yan, L Stopak, S Hetzer, JD Haynes Journal of Cognitive Neuroscience 36 (6), 1037-1047, 2024 | 1 | 2024 |
Distinct functional roles of distributed cortical representations for working memory storage V Chopurian, SB Weber, T Christophel bioRxiv, 2024.02. 02.578618, 2024 | 1 | 2024 |
Understanding how analysis choices are essential for the meaningful interpretation of visual working memory data P Iamshchinina, TB Christophel, S Gayet, RL Rademaker Journal of Vision 21 (9), 2721-2721, 2021 | 1 | 2021 |