Nienborg Hendrikje, Cumming Bruce G
Laboratory of Sensorimotor Research, National Eye Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Neurosci. 2006 Sep 13;26(37):9567-78. doi: 10.1523/JNEUROSCI.2256-06.2006.
In the macaque extrastriate cortex, robust correlations between perceptual choice and neuronal response have been demonstrated, frequently quantified as choice probabilities (CPs). Such correlations are modest in early visual cortex, suggesting that CPs may depend on the position of a neuron in the hierarchy of visual processing. However, previous studies have not compared neurons with similar precision in equivalent tasks. We investigated the role of cortical hierarchy on CP using a task for which significant CPs have been described previously for middle temporal area (MT). We measured CPs in disparity-selective neurons from both V1 and V2. The stimulus was a dynamic random dot stereogram, presented with a near or a far disparity, masked by varying numbers of binocularly uncorrelated dots. Two macaque monkeys reported whether they perceived a circular patch in front or behind a surrounding annulus in a forced choice task. For V2 (n = 69), CP was on average 0.56, the first demonstration of systematic CPs in a visual area as early as V2. In V1 (n = 74), average CP was at chance level (0.51). The pattern was similar in a subgroup of neurons selected such that the statistical precision in the task was on average identical to that reported for MT (mean CP, 0.51 for V1, n = 33; 0.58 for V2, n = 54). This difference between V1 and V2 could not be explained by eye movements, stimulus size relative to the receptive field, or differences in disparity tuning. Rather, it seems to reflect a functional difference (at least in disparity processing) between striate and extrastriate cortex.
在猕猴的纹外皮层中,已经证明了知觉选择与神经元反应之间存在强烈的相关性,这种相关性通常被量化为选择概率(CPs)。在早期视觉皮层中,这种相关性较弱,这表明CPs可能取决于神经元在视觉处理层级中的位置。然而,之前的研究没有在等效任务中比较具有相似精度的神经元。我们使用一种先前已描述过MT区存在显著CPs的任务,研究了皮层层级对CP的作用。我们测量了V1和V2中视差选择性神经元的CPs。刺激是一个动态随机点立体图,呈现近或远的视差,并被不同数量的双眼不相关点掩盖。两只猕猴在强制选择任务中报告它们是否感知到周围环形物前方或后方的圆形斑块。对于V2(n = 69),CP平均为0.56,这是首次在像V2这样早的视觉区域中证明系统性的CPs。在V1(n = 74)中,平均CP处于随机水平(0.51)。在选择的一个神经元亚组中,这种模式是相似的,该亚组中任务的统计精度平均与MT区报告的精度相同(V1的平均CP为0.51,n = 33;V2的平均CP为0.58,n = 54)。V1和V2之间的这种差异不能用眼球运动、相对于感受野的刺激大小或视差调谐的差异来解释。相反,这似乎反映了纹状皮层和纹外皮层之间的功能差异(至少在视差处理方面)。