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首页> 外文期刊>Journal of vision >Visual motion priming reveals why motion perception deteriorates during mesopic vision
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Visual motion priming reveals why motion perception deteriorates during mesopic vision

机译:视觉运动启动揭示了为什么在中视视觉期间运动知觉会恶化

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Abstract Abstract: Abstract?? We know empirically that the perception of moving objects deteriorates under mesopic vision, in which both rods and cones operate. The purpose of this study was to examine the cause of this degradation. We utilized a phenomenon called visual motion priming, in which the perceived direction of a directionally ambiguous test stimulus is influenced by the moving direction of a preceding stimulus. The spatial distances between the priming and the test stimuli were varied. At mesopic light levels, a stimulus that is presented at the central retina is presumably processed by the cone system, while a stimulus that is presented at the peripheral retina is processed by the rod system (Raphael & MacLeod, 2011). Subjects judged the perceived direction of 180?° phase-shifted sine-wave grating that was followed by a smoothly drifting priming stimulus under different retinal illuminances. We found that, under mesopic conditions, the strength of motion priming was greatly reduced when the priming and test stimuli were presented separately at the center and the periphery, respectively. In contrast, motion priming was perceived in most of the trials under photopic and scotopic conditions or when both the priming and test stimuli were presented at the central retina under mesopic conditions. When the priming and test stimuli temporally overlapped, motion priming was conspicuous irrespective of the retinal illuminance. These results suggest that the incompleteness in the integration of signals that was induced by the temporal delay of rod pathways caused the degradation of motion perception under mesopic vision.
机译:摘要摘要:摘要?我们凭经验知道,在杆和锥都起作用的中视视觉下,运动物体的感知会变差。这项研究的目的是检查这种降解的原因。我们利用了一种称为视觉运动启动的现象,其中定向歧义测试刺激的感知方向受先前刺激的运动方向影响。启动和测试刺激之间的空间距离是变化的。在中视光水平下,可能由视锥系统处理在中央视网膜处出现的刺激,而由视杆系统处理在周围视网膜处出现的刺激(Raphael&MacLeod,2011)。受试者判断了180°°相移正弦波光栅的感知方向,然后在不同的视网膜照度下跟随着平滑漂移的启动刺激。我们发现,在介观条件下,当分别在中心和外围分别呈现启动和测试刺激时,运动启动的强度会大大降低。相反,在大多数试验中,在明视和暗视条件下或在中视条件下在中央视网膜均出现了启动刺激和测试刺激时,可以感觉到运动启动。当启动刺激和测试刺激在时间上重叠时,无论视网膜照度如何,运动启动明显。这些结果表明,由杆通路的时间延迟引起的信号整合的不完全导致了中视视觉下运动知觉的下降。

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