Herpers M J, Caberg H B, Mol J M
Electroencephalogr Clin Neurophysiol. 1981 Jul;52(1):50-6. doi: 10.1016/0013-4694(81)90188-7.
In 11 normal healthy human subjects an evoked potential was elicited by moving dynamic random dot stereograms. The random dots were generated by a minicomputer. An average of each of 8 EEG channels of the subjects tested was made. The maximum of the cerebral evoked potentials thus found was localized in the central and parietal region. No response earlier than 130--150 msec after the stimulus could be proved. The influence of fixation, the number of dots provided, an interocular interstimulus interval in the presentation of the dots, and lense accommodation movements on the evoked stereoptic potentials was investigated and discussed. An interocular interstimulus interval (left eye leading) in the presentation of the dots caused an increase in latency of the response much longer than the imposed interstimulus interval itself. It was shown that no accommodation was needed to perceive the depth impression, and to evoke the cerebral response with random dot stereograms. There are indications of an asymmetry between the two hemispheres in the handling of depth perception after 250 msec. The potential distribution of the evoked potentials strongly suggests that they are not generated in the occipital region.
在11名正常健康人体受试者中,通过移动动态随机点立体图诱发了诱发电位。随机点由一台小型计算机生成。对受试的8个脑电图通道中的每一个进行了平均。由此发现的大脑诱发电位的最大值位于中央和顶叶区域。在刺激后130 - 150毫秒之前未证实有反应。研究并讨论了注视、提供的点数、点呈现时的双眼刺激间隔以及晶状体调节运动对诱发的立体视觉电位的影响。点呈现时的双眼刺激间隔(左眼领先)导致反应潜伏期的增加比施加的刺激间隔本身长得多。结果表明,感知深度印象和用随机点立体图诱发大脑反应不需要调节。有迹象表明,在250毫秒后,两个半球在处理深度感知方面存在不对称。诱发电位的电位分布强烈表明它们不是在枕叶区域产生的。