Adolphs, Ralph, ‘Cognitive Neuroscience: Cognitive Neuroscience of Human Social Behaviour’, Nature Reviews Neuroscience, 4.3 (2003), pp. 165–78, doi:10.1038/nrn1056
Bandettini, Peter A., ‘What’s New in Neuroimaging Methods?’, Annals of the New York Academy of Sciences, 1156.1 (2009), pp. 260–93, doi:10.1111/j.1749-6632.2009.04420.x
Bechara, A., H Damasio, and AR Damasio, ‘Emotion, Decision Making and the Orbitofrontal Cortex’, Cerebral Cortex, 10.3 (2000), pp. 295–307, doi:10.1093/cercor/10.3.295
Behrens, Timothy E.J., and others, ‘What Is the Most Interesting Part of the Brain?’, Trends in Cognitive Sciences, 17.1 (2013), pp. 2–4, doi:10.1016/j.tics.2012.10.010
Benton, Arthur L., ‘Neuropsychological Assessment’, Annual Review of Psychology, 45.1 (1994), pp. 1–23, doi:10.1146/annurev.ps.45.020194.000245
Bueti, D., and V. Walsh, ‘The Parietal Cortex and the Representation of Time, Space, Number and Other Magnitudes’, Philosophical Transactions of the Royal Society B: Biological Sciences, 364.1525 (2009), pp. 1831–40, doi:10.1098/rstb.2009.0028
Burgess, PW, and others, ‘Mesulam’s Frontal Lobe Mystery Re-Examined’, Restorative Neurology and Neuroscience, 27.5 (2009), pp. 493–506, doi:10.3233/RNN-2009-0511
Butterworth, Brian, and Vincent Walsh, ‘Neural Basis of Mathematical Cognition’, Current Biology, 21.16 (2011), pp. R618–21, doi:10.1016/j.cub.2011.07.005
Cappelletti, Marinella, and others, ‘Commonalities for Numerical and Continuous Quantity Skills at Temporo-Parietal Junction’, Journal of Cognitive Neuroscience, 17 December 2013, pp. 1–14, doi:10.1162/jocn_a_00546
Cognitive Neuroscience: The Biology of the Mind, (W. W. Norton & Company; 5th International student edition edition (5 Nov 2013), n.d.) <https://www.amazon.co.uk/Cognitive-Neuroscience-Biology-Michael-Gazzaniga/dp/0393667812/ref=sr_1_3?crid=1TP7LE7TAQUZF&keywords=gazzaniga+cognitive+neuroscience+the+biology+of+the+mind&qid=1579090487&sprefix=gazza%2Caps%2C146&sr=8-3>
Cohen, Noga, and others, ‘Peri-Encoding Predictors of Memory Encoding and Consolidation’, Neuroscience & Biobehavioral Reviews, published online November 2014, doi:10.1016/j.neubiorev.2014.11.002
Coles, Michael G. H. and Rugg, M. D., Event-Related Brain Potentials: An Introduction. Chapter 1 in Electrophysiology of Mind: Event-Related Brain Potentials and Cognition (Oxford University Press, 1995), Oxford psychology series
Corkin, Suzanne, ‘TIMELINEWhat’s New with the Amnesic Patient H.M.?’, Nature Reviews Neuroscience, 3.2 (2002), pp. 153–60, doi:10.1038/nrn726
Cyranoski, David, ‘Neuroscience: Thought Experiment’, Nature, 469.7329 (2011), pp. 148–49, doi:10.1038/469148a
Decision Making. Chapter 24 of Principles of Cognitive Neuroscience, (Sinauer Associates, 2008)
Devlin, J. T., and K. E. Watkins, ‘Stimulating Language: Insights from TMS’, Brain, 130.3 (2007), pp. 610–22, doi:10.1093/brain/awl331
Duncan, John, ‘An Adaptive Coding Model of Neural Function in Prefrontal Cortex’, Nature Reviews Neuroscience, 2.11 (2001), pp. 820–29 <https://www.nature.com/articles/35097575>
Duncan, Keith J., Chotiga Pattamadilok, and Joseph T. Devlin, ‘Investigating Occipito-Temporal Contributions to Reading with TMS’, Journal of Cognitive Neuroscience, 22.4 (2010), pp. 739–50, doi:10.1162/jocn.2009.21207
Duverne, Sandrine, Shahab Motamedinia, and Michael D. Rugg, ‘Effects of Age on the Neural Correlates of Retrieval Cue Processing Are Modulated by Task Demands’, Journal of Cognitive Neuroscience, 21.1 (2009), pp. 1–17, doi:10.1162/jocn.2009.21001
Frith, Uta, and Francesca Happé, ‘Autism Spectrum Disorder’, Current Biology, 15.19 (2005), pp. R786–90, doi:10.1016/j.cub.2005.09.033
Functional Magnetic Resonance Imaging. Chapter 9 in Methods in Mind (Cognitive Neuroscience). Bandettini, P. A., (MIT Press (18 Sep 2009), n.d.) <http://www.amazon.co.uk/Methods-Mind-Cognitive-Neuroscience-Senior/dp/0262513439>
Galli, Giulia, A. Dorothea Gebert, and Leun J. Otten, ‘Available Processing Resources Influence Encoding-Related Brain Activity before an Event’, Cortex, 49.8 (2013), pp. 2239–48, doi:10.1016/j.cortex.2012.10.011
Gazzaniga, Ivry and Mangun., ‘A Brief History of Cognitive Neuroscience. Chapter 1 of the Textbook.’, in A Brief History of Cognitive Neuroscience. Chapter 1 in Cognitive Neuroscience: The Biology of the Mind [Paperback] (W. W. Norton & Company; 5th International student edition edition (5 Nov 2013), n.d.), pp. 2–21
Gazzaniga, Michael S., Richard B. Ivry, and George R. Mangun, ‘Cognitive Control. Chapter 12 of Cognitive Neuroscience: The Biology of the Mind [Paperback]’, in Cognitive Neuroscience: The Biology of the Mind (W. W. Norton & Co.; 4th International student edition, 2014)
——, Richard B. Ivry, and George R. Mangun, ‘Language. Chapter 11 of Cognitive Neuroscience: The Biology of the Mind [Paperback]’, in Cognitive Neuroscience: The Biology of the Mind (W. W. Norton & Company; 4th International student edition, 2014)
——, Richard B. Ivry, and George R. Mangun, ‘Memory. Chapter 9 of Cognitive Neuroscience: The Biology of the Mind [Paperback]’, in Cognitive Neuroscience: The Biology of the Mind (W. W. Norton & Company; 4th International student edition, 2014)
——, Richard B. Ivry, and George R. Mangun, ‘Social Cognition. Chapter 13 of Cognitive Neuroscience: The Biology of the Mind [Paperback]’, in Cognitive Neuroscience: The Biology of the Mind (W. W. Norton & Company; 4th International student edition, 2014)
Gilbert, Sam J., and others, ‘Atypical Recruitment of Medial Prefrontal Cortex in Autism Spectrum Disorders: An fMRI Study of Two Executive Function Tasks’, Neuropsychologia, 46.9 (2008), pp. 2281–91, doi:10.1016/j.neuropsychologia.2008.03.025
——, and others, ‘Functional Specialization within Rostral Prefrontal Cortex (Area 10): A Meta-Analysis’, Journal of Cognitive Neuroscience, 18.6 (2006), pp. 932–48, doi:10.1162/jocn.2006.18.6.932
——, and Paul W. Burgess, ‘Executive Function’, Current Biology, 18.3 (2008), pp. R110–14, doi:10.1016/j.cub.2007.12.014
Gratton, Gabriele, and Monica Fabiani, ‘Shedding Light on Brain Function: The Event-Related Optical Signal’, Trends in Cognitive Sciences, 5.8 (2001), pp. 357–63, doi:10.1016/S1364-6613(00)01701-0
Gruber, M. J., and L. J. Otten, ‘Voluntary Control over Prestimulus Activity Related to Encoding’, Journal of Neuroscience, 30.29 (2010), pp. 9793–800, doi:10.1523/JNEUROSCI.0915-10.2010
Harvey, B. M., and others, ‘Topographic Representation of Numerosity in the Human Parietal Cortex’, Science, 341.6150 (2013), pp. 1123–26, doi:10.1126/science.1239052
Hutchinson, J. B., M. R. Uncapher, and A. D. Wagner, ‘Posterior Parietal Cortex and Episodic Retrieval: Convergent and Divergent Effects of Attention and Memory’, Learning & Memory, 16.6 (2009), pp. 343–56, doi:10.1101/lm.919109
Johnsrude, I., & Hauk, O., Neuroimaging: Techniques for Examining Human Brain Function. Chapter 4 in Cognitive Psychology: A Methods Companion (Oxford University Press in association with the Open University, 2005)
Kim, Hongkeun, ‘Neural Activity That Predicts Subsequent Memory and Forgetting: A Meta-Analysis of 74 fMRI Studies’, NeuroImage, 54.3 (2011), pp. 2446–61, doi:10.1016/j.neuroimage.2010.09.045
Klein, Colin, ‘Philosophical Issues in Neuroimaging’, Philosophy Compass, 5.2 (2010), pp. 186–98, doi:10.1111/j.1747-9991.2009.00275.x
Kosslyn, Stephen M, If Neuroimaging Is the Answer, What Is the Question?, n.d. <http://rstb.royalsocietypublishing.org/content/354/1387/1283.full.pdf>
Landmarks in Human Functional Brain Imaging, n.d. <https://wellcome.ac.uk/sites/default/files/wtvm052606.pdf>
Lee, Victoria K., and Lasana T. Harris, ‘How Social Cognition Can Inform Social Decision Making’, Frontiers in Neuroscience, 7 (2013), doi:10.3389/fnins.2013.00259
Levy, I., and others, ‘Choice from Non-Choice: Predicting Consumer Preferences from Blood Oxygenation Level-Dependent Signals Obtained during Passive Viewing’, Journal of Neuroscience, 31.1 (2011), pp. 118–25, doi:10.1523/JNEUROSCI.3214-10.2011
Logothetis, Nikos K., ‘What We Can Do and What We Cannot Do with fMRI’, Nature, 453.7197 (2008), pp. 869–78, doi:10.1038/nature06976
Mauk, Michael D., and Dean V. Buonomano, ‘THE NEURAL BASIS OF TEMPORAL PROCESSING’, Annual Review of Neuroscience, 27.1 (2004), pp. 307–40, doi:10.1146/annurev.neuro.27.070203.144247
Michael S. Gazzaniga, et al, ‘Methods of Cognitive Neuroscience. Chapter 3 of Textbook.’, in Methods of Cognitive Neuroscience.The Biology of the Mind (W. W. Norton & Company; 4th International student edition edition (5 Nov 2013), n.d.), pp. 72–123
——, ‘Structure and Function of the Nervous System’, in Cognitive Neuroscience: The Biology of the Mind, 4th ed., International student ed (W.W. Norton, 2014), pp. 22–79
Miller, Earl K., and Jonathan D. Cohen, ‘An Integrative Theory of Prefrontal Cortex Function’, Annual Review of Neuroscience, 24.1 (2001), pp. 167–202, doi:10.1146/annurev.neuro.24.1.167
Moran, Joseph M., and Jamil Zaki, ‘Functional Neuroimaging and Psychology: What Have You Done for Me Lately?’, Journal of Cognitive Neuroscience, 25.6 (2013), pp. 834–42, doi:10.1162/jocn_a_00380
‘Neuroimaging: Separating the Promise from the Pipe Dreams - Dana Foundation’, n.d. <https://www.dana.org/article/neuroimaging-separating-the-promise-from-the-pipe-dreams/>
Paller, Ken A., and Anthony D. Wagner, ‘Observing the Transformation of Experience into Memory’, Trends in Cognitive Sciences, 6.2 (2002), pp. 93–102, doi:10.1016/S1364-6613(00)01845-3
Park, Heekyeong, and Michael D. Rugg, ‘Prestimulus Hippocampal Activity Predicts Later Recollection’, Hippocampus, 2009, p. NA-NA, doi:10.1002/hipo.20663
POLDRACK, R, ‘Can Cognitive Processes Be Inferred from Neuroimaging Data?’, Trends in Cognitive Sciences, 10.2 (2006), pp. 59–63, doi:10.1016/j.tics.2005.12.004
Priori, Alberto, ‘Brain Polarization in Humans: A Reappraisal of an Old Tool for Prolonged Non-Invasive Modulation of Brain Excitability’, Clinical Neurophysiology, 114.4 (2003), pp. 589–95, doi:10.1016/S1388-2457(02)00437-6
Raichle, Marcus E., ‘A Brief History of Human Brain Mapping’, Trends in Neurosciences, 32.2 (2009), pp. 118–26, doi:10.1016/j.tins.2008.11.001
Ramnani, Narender, and Adrian M. Owen, ‘Anterior Prefrontal Cortex: Insights into Function from Anatomy and Neuroimaging’, Nature Reviews Neuroscience, 5.3 (2004), pp. 184–94, doi:10.1038/nrn1343
Rangel, Antonio, Colin Camerer, and P. Read Montague, ‘A Framework for Studying the Neurobiology of Value-Based Decision Making’, Nature Reviews Neuroscience, 9.7 (2008), pp. 545–56, doi:10.1038/nrn2357
Reite, Martin, Peter Teale, and Donald C Rojas, ‘Magnetoencephalography: Applications in Psychiatry’, Biological Psychiatry, 45.12 (1999), pp. 1553–63, doi:10.1016/S0006-3223(99)00062-1
Rippon, Gina, Electroencephalography. Chapter 10 in Methods in Mind (Cognitive Neuroscience) [Paperback] (MIT Press (18 Sep 2009), n.d.) <http://www.amazon.co.uk/Methods-Mind-Cognitive-Neuroscience-Senior/dp/0262513439>
Rösler, Frank, and Charan Ranganath, ‘On How to Reconcile Mind and Brain’, in Neuroimaging of Human MemoryLinking Cognitive Processes to Neural Systems (Oxford University Press, 2009), pp. 15–24 <https://doi.org/10.1093/acprof:oso/9780199217298.003.0002>
Rugg, M. D., and S. L. Thompson-Schill, ‘Moving Forward With fMRI Data’, Perspectives on Psychological Science, 8.1 (2013), pp. 84–87, doi:10.1177/1745691612469030
Rugg, Michael D, and Kaia L Vilberg, ‘Brain Networks Underlying Episodic Memory Retrieval’, Current Opinion in Neurobiology, 23.2 (2013), pp. 255–60, doi:10.1016/j.conb.2012.11.005
Rugg, Michael D., and Edward L. Wilding, ‘Retrieval Processing and Episodic Memory’, Trends in Cognitive Sciences, 4 (2000), pp. 108–15
Sack, Alexander T, ‘Transcranial Magnetic Stimulation, Causal Structure–Function Mapping and Networks of Functional Relevance’, Current Opinion in Neurobiology, 16.5 (2006), pp. 593–99, doi:10.1016/j.conb.2006.06.016
Seyal, M., and others, ‘Anticipation and Execution of a Simple Reading Task Enhance Corticospinal Excitability’, Clinical Neurophysiology, 110.3 (1999), pp. 424–29, doi:10.1016/S1388-2457(98)00019-4
Squire, Larry R., Craig E.L. Stark, and Robert E. Clark, ‘The Medial Temporal Lobe’, Annual Review of Neuroscience, 27.1 (2004), pp. 279–306, doi:10.1146/annurev.neuro.27.070203.144130
Structure and Function of the Nervous System. Chapter 2 of Cognitive Neuroscience: The Biology of the Mind [Paperback], (W. W. Norton & Company; 4th International student edition edition (5 Nov 2013), n.d.) <http://www.amazon.co.uk/Cognitive-Neuroscience-The-Biology-Mind/dp/0393922286/ref=sr_1_1?ie=UTF8&qid=1390474967&sr=8-1&keywords=gazzaniga+cognitive+neuroscience>
Thut, Gregor, and Carlo Miniussi, ‘New Insights into Rhythmic Brain Activity from TMS–EEG Studies’, Trends in Cognitive Sciences, 13.4 (2009), pp. 182–89, doi:10.1016/j.tics.2009.01.004
Uncapher, Melina R., and Anthony D. Wagner, ‘Posterior Parietal Cortex and Episodic Encoding: Insights from fMRI Subsequent Memory Effects and Dual-Attention Theory’, Neurobiology of Learning and Memory, 91.2 (2009), pp. 139–54, doi:10.1016/j.nlm.2008.10.011
Verhoeven, Judith S., and others, ‘Neuroimaging of Autism’, Neuroradiology, 52.1 (2010), pp. 3–14, doi:10.1007/s00234-009-0583-y
Walsh, V, ‘A Theory of Magnitude: Common Cortical Metrics of Time, Space and Quantity’, Trends in Cognitive Sciences, 7.11 (2003), pp. 483–88, doi:10.1016/j.tics.2003.09.002
Walsh, Vincent, and Alan Cowey, ‘Magnetic Stimulation Studies of Visual Cognition’, Trends in Cognitive Sciences, 2.3 (1998), pp. 103–10, doi:10.1016/S1364-6613(98)01134-6
Weber, Matthew J., and Sharon L. Thompson-Schill, ‘Functional Neuroimaging Can Support Causal Claims about Brain Function’, Journal of Cognitive Neuroscience, 22.11 (2010), pp. 2415–16, doi:10.1162/jocn.2010.21461
White, Sarah J., and others, ‘Autistic Adolescents Show Atypical Activation of the Brain′s Mentalizing System Even without a Prior History of Mentalizing Problems’, Neuropsychologia, 56 (2014), pp. 17–25, doi:10.1016/j.neuropsychologia.2013.12.013
——, ‘The Triple I Hypothesis: Taking Another(’s) Perspective on Executive Dysfunction in Autism’, Journal of Autism and Developmental Disorders, 43.1 (2013), pp. 114–21, doi:10.1007/s10803-012-1550-8