Näätänen R, Ilmoniemi RJ, Alho K (September 1994). "Magnetoencephalography in studies of human cognitive brain function". Trends in Neurosciences. 17 (9): 389–95. doi:10.1016/0166-2236(94)90048-5. PMID7529443. S2CID10224526.
Näätänen R, Alho K (1995). "Mismatch negativity--a unique measure of sensory processing in audition". The International Journal of Neuroscience. 80 (1–4): 317–37. doi:10.3109/00207459508986107. PMID7775056.
Rosburg T, Trautner P, Dietl T, Korzyukov OA, Boutros NN, Schaller C, et al. (April 2005). "Subdural recordings of the mismatch negativity (MMN) in patients with focal epilepsy". Brain. 128 (Pt 4): 819–28. doi:10.1093/brain/awh442. PMID15728656.
Campbell T, Winkler I, Kujala T (July 2007). "N1 and the mismatch negativity are spatiotemporally distinct ERP components: disruption of immediate memory by auditory distraction can be related to N1". Psychophysiology. 44 (4): 530–40. doi:10.1111/j.1469-8986.2007.00529.x. hdl:10138/136216. PMID17532805.
Draganova R, Eswaran H, Murphy P, Huotilainen M, Lowery C, Preissl H (November 2005). "Sound frequency change detection in fetuses and newborns, a magnetoencephalographic study". NeuroImage. 28 (2): 354–61. doi:10.1016/j.neuroimage.2005.06.011. PMID16023867. S2CID19794076.
Pulvermüller F, Shtyrov Y (2007). "The mismatch negativity as an objective tool for studying higher language functions". In Meyer AS, Wheeldon LR, Krott A (eds.). Automaticity and Control in Language Processing. Advances in Behavioural Brain Science. pp. 217–242. doi:10.4324/9780203968512. ISBN978-0-203-96851-2. Specific experimental studies include the following:
Hasting AS, Kotz SA, Friederici AD (March 2007). "Setting the stage for automatic syntax processing: the mismatch negativity as an indicator of syntactic priming". Journal of Cognitive Neuroscience. 19 (3): 386–400. doi:10.1162/jocn.2007.19.3.386. PMID17335388. S2CID3046335.
Pulvermüller F, Shtyrov Y, Hasting AS, Carlyon RP (March 2008). "Syntax as a reflex: neurophysiological evidence for early automaticity of grammatical processing". Brain and Language. 104 (3): 244–53. doi:10.1016/j.bandl.2007.05.002. PMID17624417. S2CID13870754.
Woldorff MG, Hackley SA, Hillyard SA (January 1991). "The effects of channel-selective attention on the mismatch negativity wave elicited by deviant tones". Psychophysiology. 28 (1): 30–42. doi:10.1111/j.1469-8986.1991.tb03384.x. PMID1886962.
Woldorff MG, Hillyard SA, Gallen CC, Hampson SR, Bloom FE (May 1998). "Magnetoencephalographic recordings demonstrate attentional modulation of mismatch-related neural activity in human auditory cortex". Psychophysiology. 35 (3): 283–92. doi:10.1017/s0048577298961601. PMID9564748.
Dittmann-Balcar A, Thienel R, Schall U (December 1999). "Attention-dependent allocation of auditory processing resources as measured by mismatch negativity". NeuroReport. 10 (18): 3749–53. doi:10.1097/00001756-199912160-00005. PMID10716203.
Bodatsch M, Ruhrmann S, Wagner M, Müller R, Schultze-Lutter F, Frommann I, et al. (May 2011). "Prediction of psychosis by mismatch negativity". Biological Psychiatry. 69 (10): 959–66. doi:10.1016/j.biopsych.2010.09.057. PMID21167475. S2CID26287894.
Näätänen R, Paavilainen P, Rinne T, Alho K (December 2007). "The mismatch negativity (MMN) in basic research of central auditory processing: a review". Clinical Neurophysiology. 118 (12): 2544–90. doi:10.1016/j.clinph.2007.04.026. PMID17931964. S2CID16167197.
Näätänen R, Winkler I (November 1999). "The concept of auditory stimulus representation in cognitive neuroscience". Psychological Bulletin. 125 (6): 826–59. doi:10.1037/0033-2909.125.6.826. PMID10589304.
Campbell T, Winkler I, Kujala T (July 2007). "N1 and the mismatch negativity are spatiotemporally distinct ERP components: disruption of immediate memory by auditory distraction can be related to N1". Psychophysiology. 44 (4): 530–40. doi:10.1111/j.1469-8986.2007.00529.x. hdl:10138/136216. PMID17532805.
Näätänen R, Ilmoniemi RJ, Alho K (September 1994). "Magnetoencephalography in studies of human cognitive brain function". Trends in Neurosciences. 17 (9): 389–95. doi:10.1016/0166-2236(94)90048-5. PMID7529443. S2CID10224526.
Näätänen R, Alho K (1995). "Mismatch negativity--a unique measure of sensory processing in audition". The International Journal of Neuroscience. 80 (1–4): 317–37. doi:10.3109/00207459508986107. PMID7775056.
Rosburg T, Trautner P, Dietl T, Korzyukov OA, Boutros NN, Schaller C, et al. (April 2005). "Subdural recordings of the mismatch negativity (MMN) in patients with focal epilepsy". Brain. 128 (Pt 4): 819–28. doi:10.1093/brain/awh442. PMID15728656.
Campbell T, Winkler I, Kujala T (July 2007). "N1 and the mismatch negativity are spatiotemporally distinct ERP components: disruption of immediate memory by auditory distraction can be related to N1". Psychophysiology. 44 (4): 530–40. doi:10.1111/j.1469-8986.2007.00529.x. hdl:10138/136216. PMID17532805.
Draganova R, Eswaran H, Murphy P, Huotilainen M, Lowery C, Preissl H (November 2005). "Sound frequency change detection in fetuses and newborns, a magnetoencephalographic study". NeuroImage. 28 (2): 354–61. doi:10.1016/j.neuroimage.2005.06.011. PMID16023867. S2CID19794076.
Pulvermüller F, Shtyrov Y (2007). "The mismatch negativity as an objective tool for studying higher language functions". In Meyer AS, Wheeldon LR, Krott A (eds.). Automaticity and Control in Language Processing. Advances in Behavioural Brain Science. pp. 217–242. doi:10.4324/9780203968512. ISBN978-0-203-96851-2. Specific experimental studies include the following:
Hasting AS, Kotz SA, Friederici AD (March 2007). "Setting the stage for automatic syntax processing: the mismatch negativity as an indicator of syntactic priming". Journal of Cognitive Neuroscience. 19 (3): 386–400. doi:10.1162/jocn.2007.19.3.386. PMID17335388. S2CID3046335.
Pulvermüller F, Shtyrov Y, Hasting AS, Carlyon RP (March 2008). "Syntax as a reflex: neurophysiological evidence for early automaticity of grammatical processing". Brain and Language. 104 (3): 244–53. doi:10.1016/j.bandl.2007.05.002. PMID17624417. S2CID13870754.
Woldorff MG, Hackley SA, Hillyard SA (January 1991). "The effects of channel-selective attention on the mismatch negativity wave elicited by deviant tones". Psychophysiology. 28 (1): 30–42. doi:10.1111/j.1469-8986.1991.tb03384.x. PMID1886962.
Woldorff MG, Hillyard SA, Gallen CC, Hampson SR, Bloom FE (May 1998). "Magnetoencephalographic recordings demonstrate attentional modulation of mismatch-related neural activity in human auditory cortex". Psychophysiology. 35 (3): 283–92. doi:10.1017/s0048577298961601. PMID9564748.
Dittmann-Balcar A, Thienel R, Schall U (December 1999). "Attention-dependent allocation of auditory processing resources as measured by mismatch negativity". NeuroReport. 10 (18): 3749–53. doi:10.1097/00001756-199912160-00005. PMID10716203.
Bodatsch M, Ruhrmann S, Wagner M, Müller R, Schultze-Lutter F, Frommann I, et al. (May 2011). "Prediction of psychosis by mismatch negativity". Biological Psychiatry. 69 (10): 959–66. doi:10.1016/j.biopsych.2010.09.057. PMID21167475. S2CID26287894.
Näätänen R, Paavilainen P, Rinne T, Alho K (December 2007). "The mismatch negativity (MMN) in basic research of central auditory processing: a review". Clinical Neurophysiology. 118 (12): 2544–90. doi:10.1016/j.clinph.2007.04.026. PMID17931964. S2CID16167197.
Näätänen R, Winkler I (November 1999). "The concept of auditory stimulus representation in cognitive neuroscience". Psychological Bulletin. 125 (6): 826–59. doi:10.1037/0033-2909.125.6.826. PMID10589304.
Näätänen R, Ilmoniemi RJ, Alho K (September 1994). "Magnetoencephalography in studies of human cognitive brain function". Trends in Neurosciences. 17 (9): 389–95. doi:10.1016/0166-2236(94)90048-5. PMID7529443. S2CID10224526.
Draganova R, Eswaran H, Murphy P, Huotilainen M, Lowery C, Preissl H (November 2005). "Sound frequency change detection in fetuses and newborns, a magnetoencephalographic study". NeuroImage. 28 (2): 354–61. doi:10.1016/j.neuroimage.2005.06.011. PMID16023867. S2CID19794076.
Pulvermüller F, Shtyrov Y (2007). "The mismatch negativity as an objective tool for studying higher language functions". In Meyer AS, Wheeldon LR, Krott A (eds.). Automaticity and Control in Language Processing. Advances in Behavioural Brain Science. pp. 217–242. doi:10.4324/9780203968512. ISBN978-0-203-96851-2. Specific experimental studies include the following:
Hasting AS, Kotz SA, Friederici AD (March 2007). "Setting the stage for automatic syntax processing: the mismatch negativity as an indicator of syntactic priming". Journal of Cognitive Neuroscience. 19 (3): 386–400. doi:10.1162/jocn.2007.19.3.386. PMID17335388. S2CID3046335.
Pulvermüller F, Shtyrov Y, Hasting AS, Carlyon RP (March 2008). "Syntax as a reflex: neurophysiological evidence for early automaticity of grammatical processing". Brain and Language. 104 (3): 244–53. doi:10.1016/j.bandl.2007.05.002. PMID17624417. S2CID13870754.
Bodatsch M, Ruhrmann S, Wagner M, Müller R, Schultze-Lutter F, Frommann I, et al. (May 2011). "Prediction of psychosis by mismatch negativity". Biological Psychiatry. 69 (10): 959–66. doi:10.1016/j.biopsych.2010.09.057. PMID21167475. S2CID26287894.
Näätänen R, Paavilainen P, Rinne T, Alho K (December 2007). "The mismatch negativity (MMN) in basic research of central auditory processing: a review". Clinical Neurophysiology. 118 (12): 2544–90. doi:10.1016/j.clinph.2007.04.026. PMID17931964. S2CID16167197.
Jääskeläinen IP, Ahveninen J, Belliveau JW, Raij T, Sams M (December 2007). "Short-term plasticity in auditory cognition". Trends in Neurosciences. 30 (12): 653–61. doi:10.1016/j.tins.2007.09.003. PMID17981345. S2CID7660360.