Papers

Teder, W., Alho, K., Reinikainen, K. & Näätänen, R. (1990). Stimulus rate and ERPs during selective attention. In: C.H.M. Brunia, A.W.K. Gaillard, A. Kok, G. Mulder, & M.N. Verbaten (Eds.), Psychophysiological Brain Research, vol. 1. Tilburg University Press, Tilburg, The Netherlands, p. 221-226.

Näätänen, R. & Teder, W. (1992). Attention effects on the auditory event-related potential. Acta Oto-Laryngologica, suppl. 491, 161-167.

Näätänen, R., Teder, W., Alho, K., & Lavikainen, J. (1992). Auditory attention and selective input modulation: A topographical ERP study. NeuroReport, 3, 493-496.

Teder, W., Alho, K., Reinikainen, K. & Näätänen, R. (1993). Interstimulus interval and the selective attention effect on auditory ERPs: "N1 enhancement" versus processing negativity. Psychophysiology, 30, 77-87.

Wagner, M. Alho, K., Lavikainen, J., Reinikainen, K., Teder, W., & Näätänen, R. (1993). Sequential analysis of auditory selective attention. In: H.J. Heinze, T.F. Münte, & G.R. Mangun (Eds.), New developments in event-related potentials, Birkhäuser, Boston, p. 203-211.

Cowan, N., Winkler, I., Teder, W., & Näätänen, R. (1993). Memory Prerequisites of the Mismatch Negativity in the Auditory Event-Related Potential (ERP). Journal of Experimental Psychology: Learning, Memory and Cognition, 19, No. 4, 909-921.

Teder, W., Kujala, T., & Näätänen, R. (1994). Selection of speech messages in free-field listening. Neuro-Report, 5, 307-309.

Teder, W. & Näätänen, R. (1994). Event-related potentials demonstrate a narrow focus of auditory spatial attention. NeuroReport, 5, 709-711.

Teder, W. (1994). Selective attention and auditory event-related potentials. Doctoral dissertation, University of Helsinki, Helsinki, Finland.

Alho, K., Teder, W., Lavikainen, J., & Näätänen, R. (1995). Strongly focused attention on the auditory event-related brain potential. Biological Psychology, 38, 73-90.

Müller, M., Teder-Sälejärvi, W., & Hillyard, S.A. (1997). Magnetoencephalographic recordings of steady-state visual evoked cortical responses. Brain Topography, Vol. 9, No. 3, 163-168.

Hillyard, S.A., Teder-Sälejärvi, W.A., & Münte, T.F. (1998). Temporal dynamics of early perceptual processing. Current Opinion in Neurobiology, 8, 202-210.

Müller, M.M., Picton, T.W., Valdes-Sosa, P., Riera, J., Teder-Sälejärvi, W., & Hillyard, S.A. (1998). Effects of spatial selective attention on the steady-state visual evoked potential in the 20-28 Hz range. Cognitive Brain Research, 6, 249-261.

Teder-Sälejärvi, W., & Hillyard, S.A. (1998). The gradient of auditory spatial attention in free-field: An event-related potential (ERP) study. Perception & Psychophysics, 60, 1228-1242.

Müller, M., Teder-Sälejarvi, W.A., & Hillyard, S.A. (1998). The time course of cortical facilitation during cued shifts of spatial attention. Nature Neuroscience, 1, 631-634.

Röder, B., Teder-Sälejärvi, W.A., Sterr, A., Rösler, F., Hillyard, S.A. & Neville, H. (1999). Improved auditory spatial tuning in blind humans. Nature, 400, 162-166.

Teder-Sälejärvi, W.A., Hillyard, S.A., Röder, B., & Neville, H. (1999). Spatial attention to central and peripheral auditory stimuli as indexed by event-related potentials (ERPs). Cognitive Brain Research, 8, 213-227.

Teder-Sälejärvi, W.A., Münte, T.F., Sperlich, F.-J., & Hillyard, S.A. (1999). Intra-modal and crossmodal spatial attention to auditory and visual stimuli. An event-related brain potential study. Cognitive Brain Research, 8, 327-343.

McDonald, J.J., Teder-Sälejärvi, W.A., & Hillyard, S.A. (2000). Involuntary orienting to sound improves visual perception. Nature, Vol. 207, 906-908.

Nager W., Rosenthal O., Bohrer I., Teder-Sälejärvi. W.A., & Muente T.F. (2001). Human event related potentials and distraction during selective listening. Neuroscience Letters, 297, 1-4.

McDonald, J. J., Teder-Sälejärvi, W. A., & Ward, L. M. (2001). Multisensory integration and cross-modal attention effects in the human brain. Science, 292, 1791.

McDonald, J.J., Teder-Sälejärvi, W.A., Heraldez, D., & Hillyard, S.A. (2001). Electrophysiological evidence for the missing link in crossmodal attention. Canadian Journal of Experimental Psychology, 55, 143-151.

Teder-Sälejärvi, W.A., McDonald, J.J., Di Russo, F., & Hillyard, S.A. (2002). An analysis of audio-visual crossmodal integration by means of event-related potential (ERP) recordings. Cognitive Brain Research, 14, 106-114.

Joyce, C.A., Gorodnitsky, I., Teder-Sälejärvi, W.A., King, J.W., & Kutas, M. (2002). Variability in AC amplifier distortions: Estimation and correction. Psychophysiology, 39, 633-640.

Di Russo, F., Teder-Sälejärvi, W.A., & Hillyard, S.A. (2002). Steady-state VEP and Attentional Visual Processing. In: A. Zani & A.M. Proverbio (Eds.), The Cognitive Electrophysiology of Mind and Brain, Academic Press, pp. 259-274.

McDonald, J.J., Teder-Sälejärvi, W.A., Di Russo, F., & Hillyard, S.A. (2003). Neural substrates of perceptual enhancement by cross-modal spatial attention. Journal of Cognitive Neuroscience, 15(1), 1-10.

Nager, W., Teder-Sälejärvi, W.A., Kunze, S., & Münte, T.F. (2003). Preattentive evaluation of multiple perceptual streams in human audition. NeuroReport, 14, (7), pp. 1-4.

Winkler, I., Teder-Sälejärvi, W.A., Horvath, J., Näätänen, R., & Sussman, E. (2003). Human auditory cortex tracks task-irrelevant sound sources. NeuroReport 14(16), 2053-2056.

Kujala, T., Shtyrov, Y., Winkler, I., Saher, M., Tervaniemi, M., Sallinen, M., Teder-Sälejärvi, W.A., Alho, K., Reinikinen, K., & Näätänen, R. (2004). Long-term noise impairs cortical sound processing and attention control. Psychophysiology, 41, 875-881.

Teder-Sälejärvi, W.A., Pierce, K.L., Courchesne, E., & Hillyard, S.A. (2005). Auditory spatial localization and attention deficits in autistic adults. Cognitive Brain Research, 23, 221-234.

Teder-Sälejärvi, W.A., Di Russo, F., McDonald, J.J., & Hillyard, S.A. (2005). Effects of spatial congruity on audio-visual multimodal integration. Journal of Cognitive Neuroscience, 17:9, 1396-1409.

Green, J., Teder-Sälejärvi, W.A., & McDonald, J.J. (2005). Control mechanisms mediating shifts of attention in auditory and visual space. A spatio-temporal ERP analysis. Experimental Brain Research, 166, 358-369.

McDonald, J.J., Teder-Sälejärvi, W.A., Di Russo, F., & Hillyard, S.A. (2005). Neural basis of auditory-induced shifts in visual time-order perception. Nature Neuroscience, 8 (9), 1197-1202.

Fieger, A., Röder, B., Teder-Sälejärvi, W.A., Hillyard, S.A., & Neville, H. (2006). Auditory spatial tuning in late-onset blindness in humans. Journal of Cognitive Neuroscience, 18(2), 149-157.

Martinez, A., Teder-Sälejärvi, W.A., Vasquez, M., Molholm, S., Foxe, J.J., Javitt, D.C., Di Russo, F., Worden, M.S., & Hillyard, S.A. (2006). Objects are highlighted by spatial attention. Journal of Cognitive Neuroscience, 18(2), 298-310.

Horvath, J., Czigler, I., Winkler, I., & Teder-Sälejärvi, W.A. (2007). The temporal window of integration in elderly and young adults. Neurobiology of Aging, 28, 964-975.

Martinez, A., Teder-Sälejärvi, W.A., Hillyard, S.A. (2007). Spatial attention facilitates selection of illusory objects: evidence from event-related potentials. Brain Research, 1139, 143-152.

Simon-Dack, S.L., & Teder-Sälejärvi, W.A. (2008). Proprioceptive cues modulate further processing of spatially congruent auditory information. A high-density EEG study. Brain Research (special issue: Active listening), 1220, 171-178.

Simon-Dack, S. L., Friesen, C.F., & Teder-Sälejärvi, W.A. (2008). Sex differences in auditory spatial processing. A high-density EEG study. NeuroReport, 20, 105-110.

Simon-Dack, S.L., Rodriguez, P.D., & Teder-Sälejärvi, W.A. (2009). Psychophysiology and Imaging of visual cortical functions in the blind: a review. Behavioral Neurology, 20, 1-11.

Simon-Dack, S.L., Cummings, S.E., Reetz, D.J., Alvarez-Vazquez, E., Huanzhong, G., & Teder-Sälejärvi, W.A. (2009). "Touched" by light: Event-related potentials (ERPs) to visuo-haptic stimuli in peri-personal space. Brain Topography (special issue: Multisensory Integration), 21, 261-268.

Sosa, Y., Teder-Sälejärvi, W.A., & McCourt, M.E. Biases of spatial attention in vision and audition. Neuropsychologia (submitted).