Boldyreva G N, Zhavoronkova L A
Institute of Higher Nervous Activity and Neurophysiology, Academy of Sciences of the USSR, Moscow.
Biomed Sci. 1991;2(3):266-70.
EEG coherence analysis was used to study aspects of the synchronisation of electrical processes in the left and right cerebral hemispheres of right-handed and left-handed healthy subjects in a state of calm wakefulness. Right-handed subjects showed a greater coherence in the left hemisphere and left-handed subjects in the right hemisphere. There were also differences between right-handed and left-handed subjects in the regional profiles of interhemispheric asymmetry and in the interhemispheric asymmetry of individual spectral bands. These differences may reflect variations in the involvement of cortical and subcortical cerebral structures in the formation of the hemispheric specificity. Changes in interhemispheric coherence with the onset of drowsiness were also observed. This suggests that changes in the interconnections of neural networks are also involved in changes in arousal. Certain characteristic regional interhemispheric asymmetry patterns and asymmetries in the spectral bands appear to be necessary for normal human brain function.
脑电图相干分析用于研究右利手和左利手健康受试者在平静觉醒状态下左右脑半球电活动同步的各个方面。右利手受试者在左半球表现出更大的相干性,而左利手受试者在右半球表现出更大的相干性。右利手和左利手受试者在半球间不对称的区域分布以及各个频谱带的半球间不对称方面也存在差异。这些差异可能反映了皮质和皮质下脑结构在半球特异性形成过程中参与程度的变化。还观察到随着困倦的出现半球间相干性的变化。这表明神经网络连接的变化也参与了觉醒的变化。某些特征性的区域半球间不对称模式和频谱带中的不对称似乎是人类正常脑功能所必需的。