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Z Sh Kevanishvili

Publications and source records attributed to Z Sh Kevanishvili.

5 recordsLinked to original sources

[Age and changes in the latent periods of the slow human auditory potential].

Regular changes in latencies of slow auditory evoked potentials were found with age. In particular, peak-latencies of comparatively early deflections, i.e. P1, N1 and P2, progressively diminished. The shortening of latencies was 50-60 ms for the age between 3-7, 8-13, and 25-35 msec further on. The latencies of the later waves, namely P3, N3 and P4, increased by 35-65 ms for the age between 3-7 and 8-13. After these ages, the latency of deflection P3 did not change, while deflections N3 and P4 disappeared. Of all the evoked potential components deflection N2 was the most stable, its latency negligibly shortened with age. In children aged 3-7 two complexes of waves (P1N1P2 and P2N2P3) often overlapped, forming a broad nondifferentiated deflection. The division of the latter was completed at the age of about 8. Long-term developmental changes in wave-shape and parameters of the slow evoked potentials are considered as supporting their mainly nonspecific (extralemniscal) orgin. Basing on correlation revealed between the late evoked potential components and EEG synchronization level, a hypothesis is advanced according to which these components are generated with participation of the nonspecific synchronizing system.

Adolescent

[Intramodal and interaural specificity of the human slow auditory evoked potential].

Parameters of slow auditory evoked potentials (SAEPs) evoked by monotonal monaural stimuli were compared with those evoked by a series of tone stimuli of different frequencies. In one version of polytonal stimulation the side of sound application was alternately varied. In the case of polytonal stimulation the amplitude of SAEPs was consistently greater than that in the case of monotonal stimulation. The maximal amplitudes were obtained during alternating polytonal stimulation. In the case of polytonal stimulation, together with the amplitude increase, a regular decrease in its variability was noticed. SAEPs recorded during polytonal stimulation were also characterized by greater peak-latency values. It is concluded that SAEPs possess intramodal and interaural specific properties. It is proved that the tonotopic and bilaterally symmetric organization of SAEP generating system is better manifested at lower sound intensities. The data demonstrate that neuron populations of the SAEP generating system which perceive slightly different sound stimuli overlap each other more than those which perceive more different sounds. The data on intramodal and interaural specificity of SAEP are discussed from the point of view of extralemniscal origin of this potential.

Adult

[The relationship between the parameters of the early and late oscillations of human cortical evoked potentials and the rhythm of acoustic stimulation].

The amplitudes of all deflections of the slow auditory evoked potential (AEP) regularly decrease in alert subjects with the increase of stimulation rate. As compared with the late deflections (P2N2), the decrease of the amplitude of comparatively early deflections (N1P2) is more pronounced. It is a rather logarithmic, than a linear function of the interstimulus interval. The degree of amplitude diminution of slow AEPs due to a greater stimulation rate depends on the intensity of acoustic stimul: at greater sound intensities the decrease is more pronounced. The higher rates of stimulation produce, along with a decreased amplitude, a shorter peak latencies of all slow AEP deflections (except the peak of deflection P1). In narcotic (chloralhydrate) sleep higher rates of stimulation are not attended with any regular changes in the amplitude and peak latencies of the slow AEP.

Acoustic Stimulation