Sci Rep. 2012;2:300. doi: 10.1038/srep00300. Epub 2012 Mar 5.
Vernier acuity, a form of visual hyperacuity, is amongst the most precise forms of spatial vision. Under optimal conditions Vernier thresholds are much finer than the inter-photoreceptor distance. Achievement of such high precision is based substantially on cortical computations, most likely in the primary visual cortex. Using stimuli with added positional noise, we show that Vernier processing is reduced with advancing age across a wide range of noise levels. Using an ideal observer model, we are able to characterize the mechanisms underlying age-related loss, and show that the reduction in Vernier acuity can be mainly attributed to the reduction in efficiency of sampling, with no significant change in the level of internal position noise, or spatial distortion, in the visual system.
视锐度,一种视觉超敏度形式,是最精确的空间视觉形式之一。在最佳条件下,视锐度阈值比光感受器间距离精细得多。如此高精度的实现主要基于皮质计算,很可能在初级视觉皮层。通过使用具有附加位置噪声的刺激,我们表明,在广泛的噪声水平范围内,随着年龄的增长,视锐度的处理会降低。使用理想观察者模型,我们能够描述与年龄相关的损失背后的机制,并表明视锐度的降低主要归因于采样效率的降低,而视觉系统中的内部位置噪声水平或空间失真没有明显变化。