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A Psychophysical Approach to the Mechanism of Human Stereovision

机译:人体立体视觉机制的心理物理学方法

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Binocular complex cells in primary visual cortex encode disparity based on their spatio-temporal receptive field structure. A probabilistic neural network model based on pre-tuned estimators is proposed as general mechanism of stereovision in V1. Temporal and sapatial features of stereopsis were studied with single image random dot stereograms (SIRDS). Results: Discrimination threshold of two transparent surfaces in a stereogram depends on disparity of each surface as well as the spatial frequency content. Repeated brief exposures (13.4ms) to stereogram against noise or another stereogram do not disturb stereopsis, even when mask intervals are 53ms (P<0.01). With repeated exposures to longer duration (53ms), subjects performed better than expected by temporal averaging (P,0.01). New findings are discussed on the framework of the model. It was concluded that 1. Disparity estimators are arranged in layers according to their preferred spectral and disparity-selectivity, and 2. Stereopsis has two temporal steps: first local estimates are detected (local stereopsis), and ten coherence between different disparity estimators is detected (global stereopsis).
机译:基本视皮层中的双眼复合细胞根据其时空感受野结构编码差异。提出了一种基于预估计器的概率神经网络模型,作为V1中立体视觉的通用机制。用单图像随机点立体图(SIRDS)研究了立体视觉的时间和空间特征。结果:立体图中两个透明表面的辨别阈值取决于每个表面的视差以及空间频率含量。即使遮罩间隔为53ms(P <0.01),重复短暂地暴露于立体图以防噪声或其他立体图(13.4ms)也不会干扰立体视。重复暴露于更长的持续时间(53毫秒)后,受试者的表现好于时间平均预期(P,0.01)。在模型框架上讨论了新发现。结论是:1.视差估计器根据其首选的光谱和视差选择性按层排列,并且2.立体视有两个时间步骤:首先检测局部估计(局部立体视),并且检测到不同视差估计器之间的十个相干性(全局立体视)。

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