Amunts K, Schlaug G, Jäncke L, Steinmetz H, Schleicher A, Dabringhaus A, et al. Motor cortex and hand motor skills: structural compliance in the human brain. Hum Brain Mapp. 1997;5:206–15.
Article CAS PubMed Google Scholar
Schwenkreis P, El Tom S, Ragert P, Pleger B, Tegenthoff M, Dinse HR. Assessment of sensorimotor cortical representation asymmetries and motor skills in violin players. Eur J Neurosci. 2007;26:3291–302.
Hull J, Harsh J. P300 and sleep-related positive waveforms (P220, P450, and P900) have different determinants. J Sleep Res. 2001;10:9–17.
Article CAS PubMed Google Scholar
Colrain IM, Di Parsia P, Gora J. The impact of prestimulus EEG frequency on auditory evoked potentials during sleep onset. Can J Exp Psychol. 2000;54:243–54.
Article CAS PubMed Google Scholar
Ibáñez AM, Martín RS, Hurtado E, López V. ERPs studies of cognitive processing during sleep. Int J Psychol. 2009;44:290–304.
Kakigi R, Shimojo M, Hoshiyama M, Koyama S, Watanabe S, Naka D, et al. Effects of movement and movement imagery on somatosensory evoked magnetic fields following posterior tibial nerve stimulation. Brain Res Cogn Brain Res. 1997;5:241–53.
Article CAS PubMed Google Scholar
Yamasaki H, Kakigi R, Watanabe S, Naka D. Effects of distraction on pain perception: magneto- and electro-encephalographic studies. Brain Res Cogn Brain Res. 1999;8:73–6.
Article CAS PubMed Google Scholar
Tran TD, Inui K, Hoshiyama M, Lam K, Kakigi R. Conduction velocity of the spinothalamic tract following CO2 laser stimulation of C-fibers in humans. Pain. 2002;95:125–31.
Oniz A, Inanc G, Guducu C, Ozgoren M. Brain responsiveness to non-painful tactile stimuli prior and during sleep. Sleep Biol Rhythms. 2016;14:87–96.
Öniz A, Güdücü Ç, Bayazıt O, Özgören M (2009) Dokunsal olay ilişkili yanıtlar ışığında öğrenme sürecinin irdelenmesi. The assessment of learning through the scope of somatosensory event related potentials [Internet]. [cited 2019 Aug 8]; Available from: http://adudspace.adu.edu.tr:8080/xmlui/handle/11607/1956
Inanc G, Ozgoren M. Primed tactile stimulus processing during sleep. Life. 2023;13:2216.
Article PubMed PubMed Central Google Scholar
Inanç G, Özgören M, Öniz A. Sensory brain responses and lateralization in nonpainful tactile stimuli during sleep. Neurol Sci Neurophysiol. 2021;38:12.
Jasper HH. The ten-twenty electrode system of the international federation. Electroencephalogr Clin Neurophysiol. 1958;10:371–5.
Berry RB, Brooks R, Gamaldo C, Harding SM, Lloyd RM, Quan SF, et al. AASM Scoring Manual Updates for 2017 (Version 2.4). J Clin Sleep Med. 2017;13:665–6.
Article PubMed PubMed Central Google Scholar
Erwin R, Buchwald JS. Midlatency auditory evoked responses: differential effects of sleep in the human. Electroencephalogr Clin Neurophysiol. 1986;65:383–92.
Article CAS PubMed Google Scholar
Coenen A. Modelling of auditory evoked potentials of human sleep-wake states. Int J Psychophysiol. 2012;85:37–40.
Crowley KE, Colrain IM. A review of the evidence for P2 being an independent component process: age, sleep and modality. Clin Neurophysiol. 2004;115:732–44.
Ogilvie RD, Simons IA, Kuderian RH, MacDonald T, Rustenburg J. Behavioral, event-related potential, and EEG/FFT changes at sleep onset. Psychophysiology. 1991;28:54–64.
Article CAS PubMed Google Scholar
Nielsen-Bohlman L, Knight RT, Woods DL, Woodward K. Differential auditory processing continues during sleep. Electroencephalogr Clin Neurophysiol. 1991;79:281–90.
Article CAS PubMed Google Scholar
Salisbury D, Squires NK, Ibel S, Maloney T. Auditory event-related potentials during stage 2 NREM sleep in humans. J Sleep Res. 1992;1:251–7.
Article CAS PubMed Google Scholar
Laurino M, Menicucci D, Piarulli A, Mastorci F, Bedini R, Allegrini P, et al. Disentangling different functional roles of evoked K-complex components: mapping the sleeping brain while quenching sensory processing. Neuroimage. 2014;86:433–45.
Bastien C, Campbell K. The evoked K-complex: all-or-none phenomenon? Sleep. 1992;15:236–45.
Article CAS PubMed Google Scholar
Ujszászi J, Halász P. Long latency evoked potential components in human slow wave sleep. Electroencephalogr Clin Neurophysiol. 1988;69:516–22.
Bastuji H, García-Larrea L. Evoked potentials as a tool for the investigation of human sleep. Sleep Med Rev. 1999;3:23–45.
Article CAS PubMed Google Scholar
Peszka J, Harsh J. Effect of sleep deprivation on NREM sleep ERPs and related activity at sleep onset. Int J Psychophysiol. 2002;46:275–86.
Article CAS PubMed Google Scholar
Simor P, van der Wijk G, Nobili L, Peigneux P. The microstructure of REM sleep: why phasic and tonic? Sleep Med Rev. 2020;52: 101305.
Pratt H, Berlad I, Lavie P. “Oddball” event-related potentials and information processing during REM and non-REM sleep. Clin Neurophysiol. 1999;110:53–61.
Article CAS PubMed Google Scholar
Kocaaslan S, Öniz A, Özgören M. Uykuda işitsel uyarılma potansiyelleri. Auditory evoked potentials in sleep [Internet]. 2010 [cited 2019 Aug 8]. Available from: http://adudspace.adu.edu.tr:8080/xmlui/handle/11607/1908
Lin Y-H, Jen C-H, Yang C-M. Information processing during sleep and stress-related sleep vulnerability. Psychiatry Clin Neurosci. 2015;69:84–92.
Comments (0)