Norcia A M, Tyler C W
Vision Res. 1984;24(5):395-401. doi: 10.1016/0042-6989(84)90037-3.
Temporal processing limits were determined for two types of stereoscopic percept associated with square wave disparity alternation: apparent depth motion and depth pulsation. The stimuli were dynamic random dot stereograms containing no monocular cues for either target motion or disparity change. The percept of a single noise plane undergoing apparent depth motion coincided with the extent of a large peak in the low frequency portion of the evoked potential amplitude spectrum. The limit for apparent depth motion was approximately 6 Hz. Above this frequency two pulsating depth planes were seen simultaneously. Depth pulsations wer visible up to 14 Hz and an evoked potential occurred in synchrony with each disparity change (up to 28 depth reversals/sec). Above 14 Hz two transparent planes were perceived without depth pulsation and no stereoscopic evoked potential could be recorded. The results indicate a higher temporal resolution for stereoscopic position change than has been reported in previous studies of apparent depth motion.
针对与方波视差交替相关的两种立体视觉感知类型,即视在深度运动和深度脉动,确定了时间处理限制。刺激物是动态随机点立体图,其中不包含用于目标运动或视差变化的单眼线索。单个噪声平面的视在深度运动感知与诱发电位幅度谱低频部分的一个大峰值范围一致。视在深度运动的限制约为6赫兹。高于此频率时,会同时看到两个脉动深度平面。深度脉动在高达14赫兹时可见,并且诱发电位与每个视差变化同步发生(高达每秒28次深度反转)。高于14赫兹时,会感知到两个透明平面且无深度脉动,并且无法记录到立体诱发电位。结果表明,立体位置变化的时间分辨率高于先前视在深度运动研究中所报道的。