- Full Alphabetical List
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and Reading - Oculumotor Research
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and Gaze Control Paradigms - Real World Viewing /
Scene Camera - Usability
and Applied Research - Non-Human Primate Research
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Transcranial Magnetic Stimulation Publications
TMS
Gagnon, D., Paus, T., Grosbras, M.-H., Pike, G. B., & O'Driscoll, G. A. (2006). Transcranial magnetic stimulation of frontal oculomotor regions during smooth pursuit. The Journal of Neuroscience, 26, 458-466.
Hutton, S. B., & Weekes, B. S. (2007). Low frequency rTMS over posterior parietal cortex impairs smooth pursuit eye tracking. Experimental Brain Research, 183, 195-200.
Juan, C.-H., Muggleton, N. G., Tzeng, O. J. L., Hung, D. L., Cowey, A., & Walsh, V. (2008). Segregation of visual selection and saccades in human frontal eye fields. Cerebral Cortex, 18, 2410 - 2415.
Kalla, R., Muggleton, N. G., Cowey, A., & Walsh, V. (2009). Human dorsolateral prefrontal cortex is involved in visual search for conjunctions but not features: a theta TMS study. Cortex, 45, 1085-1090.
Kalla, R., Muggleton, N. G., Juan, C.-H., Cowey, A., & Walsh, V. (2008). The timing of the involvement of the frontal eye fields and posterior parietal cortex in visual search. Neuroreport, 19, 1067-1071.
Neggers, S. F. W., Huijbers, W., Vrijlandt, C. M., Vlaskamp, B. N. S., Schutter, D. J. L. G., & Kenemans, J. L. (2007). TMS pulses on the frontal eye fields break coupling between visuo-spatial attention and eye movements. Journal of Neurophysiology, 98, 2765 - 2778.
Nuding, U., Kalla, R., Muggleton, N. G., Büttner, U., Walsh, V., & Glasauer, S. (2009). TMS Evidence for smooth pursuit gain control by the frontal eye fields. Cerebral Cortex, 19, 1144-1150.
Nyffeler, T., Cazzoli, D., Wurtz, P., Luthi, M., von Wartburg, R., Chaves, S., Deruaz, A., Hess, C. W., & Muri, R. M. (2008). Neglect-like visual exploration behaviour after theta burst transcranial magnetic stimulation of the right posterior parietal cortex. European Journal of Neuroscience, 27, 1809-1813.
O'Shea, J., Muggleton, N. G., Cowey, A., & Walsh, V. (2007). Human frontal eye fields and spatial priming of pop-out. Journal of Cognitive Neuroscience, 19, 1140-1151.
Rosenthal, C. R., Roche-Kelly, E. E., Husain, M., & Kennard, C. (2009). Response-dependent contributions of human primary motor cortex and angular gyrus to manual and perceptual sequence learning. Journal of Neuroscience, 29, 15115 - 15125.
Van Ettinger-Veenstra, H. M., Huijbers, W., Gutteling, T. P., Vink, M., Kenemans, J. L., & Neggers, S. F. W. (2009). fMRI guided TMS on cortical eye fields: the frontal but not intraparietal eye fields regulate the coupling between visuo-spatial attention and eye movements. Journal of Neurophysiology, 102, 3469-3480.
Vernet, M., Yang, Q., Daunys, G., Orssaud, C., Eggert, T., & Kapoula, Z. (2008). How the brain obeys Hering’s Law: A TMS study of the posterior parietal cortex. Investigative Ophthalmology & Vision Science, 49, 230-237.
Vernet, M., Yang, Q., Daunys, G., Orssaud, C., & Kapoula, Z. (2008). TMS of the posterior parietal cortex delays the latency of unpredictable saccades but not when they are combined with predictable divergence. Brain Research Bulletin, 76, 50-56.
Walker, R., Techawachirakul, P., & Haggard, P. (2009). Frontal eye field stimulation modulates the balance of salience between target and distractors. Brain Research, 1270, 54-63.
