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首页> 外文期刊>European journal of applied physiology >Depth-related visually evoked potentials by dynamic random-dot stereograms in humans: negative correlation between the peaks elicited by convergent and divergent disparities.
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Depth-related visually evoked potentials by dynamic random-dot stereograms in humans: negative correlation between the peaks elicited by convergent and divergent disparities.

机译:动态随机点立体图在人类中与深度相关的视觉诱发电位:由趋同和发散视差引起的峰之间的负相关。

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摘要

Binocular visually evoked potentials (VEP) were recorded from the left and right occipital cortices of right-handed subjects in response to convergent and divergent stimuli, each having six disparity levels, using dynamic random-dot stereograms (DRDS). The VEP recorded consisted of a negative peak (N300) and a positive peak (P500) within intervals of 200-400 ms and 400-600 ms, respectively, with respect to the stimulus onset. For convergent disparities, the relationships between the amplitude of N300 and the degree of disparity showed convexity towards the disparity axis, whereas the same relationships displayed concavity for P500. For divergent disparities, on the other hand, the amplitude and the degree of disparity relationships showed concavity towards the disparity axis for N300, in contrast to those obtained by convergent disparities. Although the disparity profile of P500 displayed concavity in the left hemisphere, its right hemisphere counterpart turned out to be bi-modal in behaviour, indicating a relative loss of disparity sensitivity in the mid-disparity range. The significant negative correlation between the N300 and P500 behaviour in response to both stimulus modalities suggests that the activity of the N300 centre is effective in changing the synchronization level of the cell population comprising the P500 centre. The significant negative correlations between the profiles of the N300 wave in response to convergent DRDS and its divergent DRDS counterpart in both hemispheres, and between the profiles of the convergent and divergent P500 waves in the left hemisphere imply that the N300 and the P500 foci are sensitive to both the magnitude and the direction of the disparity. The latency differences between the two response modalities revealed that the N300 wave in response to convergent DRDS always led the N300 wave elicited by divergent DRDS, indicating that convergent disparities are processed faster than the divergent disparities.
机译:使用动态随机点立体图(DRDS)从右手受试者的左枕和右枕皮质记录双目视觉诱发电位(VEP),以响应会聚和发散刺激,每个刺激具有六个视差水平。相对于刺激发作,记录的VEP由分别在200-400ms和400-600ms间隔内的负峰(N300)和正峰(P500)组成。对于会聚的视差,N300的振幅和视差程度之间的关系向视差轴显示凸度,而对于P500,相同的关系显示凹度。另一方面,对于差异视差,与通过收敛视差获得的结果相反,N300的幅度和视差关系显示出朝向视差轴的凹度。尽管P500的视差图在左半球显示出凹度,但它的右半球对应物在行为上却是双峰的,表明在视差中间范围内视差敏感性相对降低。 N300和P500行为对两种刺激方式的响应之间显着的负相关性表明,N300中心的活动可有效地改变组成P500中心的细胞群的同步水平。在两个半球中,N300波对收敛的DRDS的响应与其发散的DRDS对应之间的显着负相关,以及左半球的P500收敛和发散的波之间的显着负相关,表明N300和P500震源是敏感的差异的大小和方向。两种响应方式之间的等待时间差异表明,响应收敛DRDS的N300波始终领先于发散DRDS引发的N300波,这表明收敛视差比发散视差的处理速度更快。

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