Correlations between characteristics of evoked EEG potentials recorded in a go/no-go paradigm and indices of attention in children

Neurophysiology - Tập 37 Số 5-6 - Trang 396-402 - 2005
N. V. Lutsyuk1, Е. В. Эйсмонт1, В. Б. Павленко1
1Vernadskii Tavricheskii National University, Simferopol’, Autonomic Republic of Crimea, Ukraine

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E. V. Kasatikova, N. P. Larionov, and I. P. Bryazgunov, “A study of the distribution of the development of the attention deficit/hyperactivity syndrome and the respective indices of attention and risk factors in schoolchildren,” Pediatriya, No. 5, 73–75 (1999).

V. V. Gnezditskii, Evoked Brain Potentials in Clinical Practice [in Russian], Publ. House of the Taganrog. Univ., Taganrog (1997).

É. M. Routman, Evoked Potentials in Psychology and Psychophysiology [in Russian], Nauka, Moscow (1979).

C. Miniussi, E. L. Wilding, J. T. Coull, and A. C. Nobre, “Orienting attention in time. Modulation of brain potentials,” Brain, 122, 1507–1518 (1999).

V. B. Pavlenko, N. V. Lutsyuk, and M. V. Borisova, “Correlation of the characteristics of evoked EEG potentials with individual peculiarities of attention in children,” Neurophysiology, 36, No. 4, 276–285 (2004).

V. A. Ponomarev, O. V. Kropotov, Yu. D. Kropotov, and Yu. I. Polyakov, “Desynchronization and synchronization of EEG in children evoked by stimuli switching on or prohibiting a sensorimotor reaction,” Fiziol. Cheloveka, 36, No. 3, 5–12 (2000).

Yu. D. Kropotov, V. A. Grin’-Yatsenko, L. S. Choutko, et al., “Treatment of children with attention disorder/hyperactivity syndrome using the technique of EEG biological feedback,” Ross. Vest. Perinatol. Pediat., No. 3, 37–40 (2002).

L. N. Kuleshova, Attention. A Manual on General, Experimental, and Applied Psychology [in Russian], Piter, Saint. Petersburg (2000).

E. I. Rogov, A Manual for Practicing Psychologists in the Educational Field [in Russian], VLADOS, Moscow (1995).

J. Polich, C. Ladish, and T. Burns, “Normal variation of P300 in children: age, memory span, and head size,” Int. J. Psychophysiol., 9, 237–248 (1990).

J. Polich and A. Kok, “Cognitive and biological determinants of P300: an integrative review,” Biol. Psychol., 41, 103–146 (1995).

R. J. Barry, S. J. Johnstone, and A. R. Clarke, “A review of electrophysiology in attention-deficit/hyperactivity disorder: II. Event-related potentials,” Clin. Neurophysiol., 114, 184–198 (2003).

R. Naatanen, Attention and Brain Functions [in Russian], Publ. House of Moscow State Univ., Moscow (1998).

S. J. Johnstone, R. J. Barry, and J. W. Anderson, “Tomographic distribution and developmental time-course of event-related potentials in two subtypes of attention hyperactivity disorder,” Int. J. Psychophysiol., 42, No. 1, 73–94 (2001).

K. D. Oades, “Frontal, temporal and lateralized brain function in children with attention-deficit hyperactivity disorder: a psychophysiological and neuropsychological viewpoint on development,” Behav. Brain Res., 94, 83–95 (1998).

S. J. Johnstone, R. J. Barry, J. W. Anderson, and S. F. Coyle, “Age-related changes in child and adolescent event-related potential component morphology, amplitude and latency to standard and target stimuli in an auditory odd-ball task,” Int. J. Psychophysiol., 24, No. 3, 223–238 (1996).

R. A. Sieb, “A brain mechanism for attention,” Med. Hypoth., 33, 145–153 (1990).

H. S. Levin, K. A. Culhane, and J. Hartmann, “Developmental changes in performance on tests of purported frontal lobe functioning,” Dev. Neuropsychol., 7, 377 (1991).

A. Dove, S. Pollmann, and T. Schubert, “Prefrontal cortex activation in task switching: an event related fMRI study,” Brain Res. Cogn. Brain Res., 9, 103–119 (2000).

M. T. Banich, M. P. Milham, and R. A. Atchley, “Prefrontal regions play a predominant role in imposing an Attentional ’set’: evidence from fMRI,” Brain Res. Cogn. Brain Res., 10, 1–9 (2000).