Allefeld, C., Gorgen, K., & Haynes, J. D. (2016). Valid population inference for information-based imaging: From the second-level t-test to prevalence inference. Neuroimage, 141, 378-392.
Andersson, J. L., Hutton, C., Ashburner, J., Turner, R., & Friston, K. (2001). Modeling geometric deformations in EPI time series. Neuroimage, 13, 903-919.
Asplund, C. L., Todd, J. J., Snyder, A. P., & Marois, R. (2010). A central role for the lateral prefrontal cortex in goal directed and stimulus-driven attention. Nature Neuroscience, 13, 507-512.
Barrouillet, P., Bernardin, S., & Camos, V. (2004). Time constraints and resource sharing in adults’ working memory spans. Journal of Experimental Psychology: General, 133, 83-100.
Bhatarah, P., Ward, G., Smith, J., & Hayes, L. (2009). Examining the relationship between free recall and immediate serial recall: Similar patterns of rehearsal and similar effects of word length, presentation rate, and articulatory suppression. Memory & Cognition, 37, 689-713.
Bisley, J. W., & Goldberg, M. E. (2010). Attention, intention, and priority in the parietal lobe. Annual Review of Neuroscience, 33, 1-21.
Booth, J. R., Mehdiratta, N., Burman, D. D., & Bitan, T. (2008). Developmental increases in effective connectivity to brain regions involved in phonological processing during tasks with orthographic demands. Brain Research, 1189, 78-89.
Broadway, J. M., & Engle, R. W. (2010). Validating running memory span: Measurement of working memory capacity and links with fluid intelligence. Behavioral Research Methods, 42, 563-570.
Brophy, A. L. (1986). Alternatives to a table of criterion values in signal detection theory. Behavioral Research Methods, Instruments and Computers, 18, 285-286.
Bulthe, J., De Smedt, B., & Op de Beeck, H. P. (2015). Visual number beats abstract numerical magnitude: Format-dependent representation of Arabic digits and dot patterns in human parietal cortex. Journal of Cognitive Neuroscience, 27, 1376-1387.
Burges, C. J. C. (1998). A tutorial on support vector machines for pattern recognition. Boston: Kluwer Academic Publishers.
Cabeza, R., Ciaramelli, E., & Moscovitch, M. (2012). Cognitive contributions of the ventral parietal cortex: An integrative theoretical account. Trends in Cognitive Sciences, 16, 338-352.
Chelazzi, L., Estocinova, J., Calletti, R., Lo Gerfo, E., Sani, I., Della Libera, C., et al. (2014). Altering spatial priority maps via reward-based learning. Journal of Neuroscience, 34, 8594-8604.
Corbetta, M., Kincade, J. M., Ollinger, J. M., McAvoy, M. P., & Shulman, G. L. (2000). Voluntary orienting is dissociated from target detection in human posterior parietal cortex. Nature Neuroscience, 3, 292-297.
Corbetta, M., & Shulman, G. L. (2002). Control of goal-directed and stimulus-driven attention in the brain. Nature Reviews Neuroscience, 3, 201-215.
Cowan, N. (1988). Evolving conceptions of memory storage, selective attention, and their mutual constraints within the human information-processing system. Psychological Bulletin, 104, 163-191.
Cowan, N. (1995). Attention and memory: An integrated framework. New York: Oxford University Press.
Cowan, N. (2001). The magical number 4 in short-term memory: A reconsideration of mental storage capacity. Behavioral and Brain Sciences, 24, 87-185.
Cowan, N., Elliott, E. M., Saults, J. S., Morey, C. C., Mattox, S., Hismjatullina, A., et al. (2005). On the capacity of attention: Its estimation and its role in working memory and cognitive aptitudes. Cognitive Psychology, 51, 42-100.
Cowan, N., Fristoe, N. M., Elliott, E. M., Brunner, R. P., & Saults, J. S. (2006). Scope of attention, control of attention, and intelligence in children and adults. Memory and Cognition, 34, 1754-1768.
Cowan, N., Li, D., Moffitt, A., Becker, T. M., Martin, E. A., Saults, J. S., et al. (2011). A neural region of abstract working memory. Journal of Cognitive Neuroscience, 23, 2852-2863.
Deng, Y., Chou, T. L., Ding, G. S., Peng, D. L., & Booth, J. R. (2011). The involvement of occipital and inferior frontal cortex in the phonological learning of Chinese characters. Journal of Cognitive Neuroscience, 23, 1998-2012.
D’Esposito, M., & Postle, B. R. (2015). The cognitive neuroscience of working memory. Annual Review of Psychology, 66, 115-142.
Eklund, A., Nichols, T. E., & Knutsson, H. (2016). Cluster failure: Why fMRI inferences for spatial extent have inflated false-positive rates. Proceedings of the National Academy of Sciences, U.S.A., 113, 7900-7905.
Emrich, S. M., Riggall, A. C., LaRocque, J. J., & Postle, B. R. (2013). Distributed patterns of activity in sensory cortex reflect precision of multiples items maintained in visual short-term memory. Journal of Neuroscience, 33, 6516-6523.
Engle, R. W., Kane, M. J., & Tuholski, S. W. (1999). Individual differences in working memory capacity and what they tell us about controlled attention, general fluid intelligence, and functions of the prefrontal cortex. In A. Miyake & P. Shah (Eds.), Models of working memory: Mechanisms of active maintenance and executive control (pp. 102-134). Cambridge: Cambridge University Press.
Esterman, M., Chiu, Y. C., Tamber-Rosenau, B. J., & Yantis, S. (2009). Decoding cognitive control in human parietal cortex. Proceedings of the National Academy of Sciences, U.S.A., 106, 17974-17979.
Fougnie, D., & Marois, R. (2007). Executive working memory load induces inattentional blindness. Psychonomic Bulletin and Review, 14, 142-147.
Friston, K. J., Penny, W. D., & Glaser, D. E. (2005). Conjunction revisited. Neuroimage, 25, 661-667.
Gardumi, A., Ivanov, D., Hausfeld, L., Valente, G., Formisano, E., & Uludag, K. (2012). The effect of spatial resolution on decoding accuracy in fMRI multivariate pattern analysis. Neuroimage, 132, 32-42.
Gillebert, C. R., Dyrholm, M., Vangkilde, S., Kyllingsbaek, S., Peeters, R., & Vandenberghe, R. (2012). Attentional priorities and access to short-term memory: Parietal interactions. Neuroimage, 62, 1551-1562.
Gillebert, C. R., Mantini, D., Peeters, R., Dupont, P., & Vandenberghe, R. (2013). Cytoarchitectonic mapping of attentional selection and reorienting in parietal cortex. Neuroimage, 67, 257-272.
Gottlieb, J. (2007). From thought to action: The parietal cortex as a bridge between perception, action, and cognition. Neuron, 53, 9-16.
Gray, S., Green, S., Alt, M., Hogan, T. P., Kuo, T., Brinkley, S., et al. (2017). The structure of working memory in young children and its relation to intelligence. Journal of Memory and Language, 92, 183-201.
Guntupalli, J. S., Wheeler, K. G., & Gobbini, M. I. (2017). Disentangling the representation of identity from head view along the human face processing pathway. Cerebral Cortex, 27, 46-53.
Hockey, R. (1973). Changes in information-selection patterns in multisource monitoring as a function of induced arousal shifts. Journal of Experimental Psychology, 101, 35-42.
Hutton, C., Bork, A., Josephs, O., Deichmann, R., Ashburner, J., & Turner, R. (2002). Image distortion correction in fMRI: A quantitative evaluation. Neuroimage, 16, 217-240.
Konoike, N., Kotozaki, Y., Jeong, H., Miyazaki, A., Sakaki, K., Shinada, T., et al. (2015). Temporal and motor representation of rhythm in fronto-parietal cortical areas: An fMRI study. PLoS One, 10, e0130120.
Kriegeskorte, N., Goebel, R., & Bandettini, P. (2006). Information-based functional brain mapping. Proceedings of the National Academy of Sciences, U.S.A., 103, 3863-3868.
Kurth, S., Majerus, S., Bastin, C., Collette, F., Jaspar, M., Bahri, M. A., et al. (2016). Effects of aging on task- and stimulus-related cerebral attention networks. Neurobiology of Aging, 44, 85-95.
Lee, M. D., & Wagenmakers, E. J. (2013). Bayesian modeling for cognitive science: A practical course. Cambridge, UK: Cambridge University Press.
Majerus, S., Attout, L., D’Argembeau, A., Degueldre, C., Fias, W., Maquet, P., et al. (2012). Attention supports verbal short-term memory via competition between dorsal and ventral attention networks. Cerebral Cortex, 22, 1086-1097.
Majerus, S., Cowan, N., Peters, F., Van Calster, L., Phillips, C., & Schrouff, J. (2016). Cross-modal decoding of neural patterns associated with working memory: Evidence for attention-based accounts of working memory. Cerebral Cortex, 26, 166-179.
Majerus, S., D’Argembeau, A., Martinez, T., Belayachi, S., Van der Linden, M., Collette, F., et al. (2010). The commonality of neural networks for verbal and visual short-term memory. Journal of Cognitive Neuroscience, 22, 2570-2593.
Mathy, F., & Feldman, J. (2012). What’s magic about numbers? Chunking and data compression in short-term memory. Cognition, 122, 346-362.
Mikl, M., Marecek, R., Hlustik, P., Pavlicova, M., Drastich, A., Chlebus, P., et al. (2008). Effects of spatial smoothing on fMRI group inferences. Magnetic Resonance Imaging, 26, 490-503.
Moore, T. M., Reise, S. P., Depaoli, S., & Haviland, M. G. (2015). Iteration of partially specified target matrices: Applications in exploratory and Bayesian confirmatory factor analysis. Multivariate Behavioral Research, 50, 149-161.
Noirhomme, Q., Lesenfants, D., Gomez, F., Soddu, A., Schrouff, J., Garraux, G., et al. (2014). Biased binomial assessment of cross-validated estimation of classification accuracies illustrated in diagnosis predictions. Neuroimage Clinical, 4, 687-694.
Phillips, P. J., Wechsler, H., Huang, J., & Rauss, P. (1998). The FERET database and evaluation procedure for face recognition algorithms. Image and Vision Computing, 16, 295-306.
Piazza, M., Izard, V., Pinel, P., Le Bihan, D., & Dehaene, S. (2004). Tuning curves for approximate numerosity in the human intraparietal sulcus. Neuron, 44, 547-555.
Piazza, M., Pinel, P., Le Bihan, D., & Dehaene, S. (2007). A magnitude code common to numerosities and number symbols in human intraparietal cortex. Neuron, 53, 293-305.
Pollack, I., Johnson, L. B., & Knaff, P. R. (1959). Running memory span. Journal of Experimental Psychology, 57, 137-146.
Postle, B. R. (2016). Working memory as an emergent property of the mind and brain. Neuroscience, 139, 23-28.
Rauschecker, J. P., & Scott, S. K. (2009). Maps and streams in the auditory cortex: Nonhuman primates illuminate human speech processing. Nature Neuroscience, 12, 718-724.
Ravizza, S. M., Delgado, M. R., Chein, J. M., Becker, J. T., & Fiez, J. A. (2004). Functional dissociations within the inferior parietal cortex in verbal working memory. Neuroimage, 22, 562-573.
Riggall, A. C., & Postle, B. R. (2012). The relationship between working memory storage and elevated activity as measured with functional magnetic resonance imaging. Journal of Neuroscience, 32, 12990-12998.
Rossion, B., Caldara, R., Seghier, M., Schuller, A. M., Lazeyras, F., & Mayer, E. (2003). A network of occipito-temporal face-sensitive areas besides the right middle fusiform gyrus is necessary for normal face processing. Brain, 126, 2381-2395.
Savini, N., Brunetti, M., Babiloni, C., & Ferretti, A. (2012). Working memory of somatosensory stimuli: An fMRI study. International Journal of Psychophysiology, 86, 220-228.
Schrouff, J., Kussé, C., Wehenkel, L., Maquet, P., & Phillips, C. (2012). Decoding semi-constrained brain activity from fMRI using support vector machines and Gaussian processes. PLoS One, 7, e35860.
Schrouff, J., Rosa, M. J., Rondina, J. M., Marquand, M. F., Chu, C., Ashburner, J., et al. (2013). PRoNTo: Pattern Recognition for Neuroimaging Toolbox. Neuroinformatics, 11, 319-337.
Shulman, G. L., Astafiev, S. V., Franke, D., Pope, D. L., Snyder, A. Z., McAvoy, M. P., et al. (2009). Interaction of stimulus-driven reorienting and expectation in ventral and dorsal frontoparietal and basal ganglia-cortical networks. Journal of Neuroscience, 29, 4392-4407.
Skeide, M. A., & Friederici, A. D. (2016). The ontogeny of the cortical language network. Nature Reviews Neuroscience, 17, 323-332.
Sneve, M. H., Alnaes, D., Endestad, T., Greenlee, M. W., & Magnussen, S. (2012). Visual short-term memory: Activity supporting encoding and maintenance in retinotopic visual cortex. Neuroimage, 63, 166-178.
Sneve, M. H., Sreenivasan, K. K., Alnaes, D., Endestad, T., & Magnussen, S. (2015). Short-term retention of visual information: Evidence in support of feature-based attention as an underlying mechanism. Neuropsychologia, 66, 1-9.
Todd, J. J., Fougnie, D., & Marois, R. (2005). Visual short-term memory load suppresses temporo-parietal junction activity and induces inattentional blindness. Psychological Science, 16, 965-972.
Todd, J. J., & Marois, R. (2004). Capacity limit of visual short-term memory in human posterior parietal cortex. Nature, 428, 751-754.