McAdams C J, Maunsell J H
Division of Neuroscience, Baylor College of Medicine, Houston, Texas 77030, USA.
J Neurosci. 1999 Jan 1;19(1):431-41. doi: 10.1523/JNEUROSCI.19-01-00431.1999.
We examined how attention affected the orientation tuning of 262 isolated neurons in extrastriate area V4 and 135 neurons in area V1 of two rhesus monkeys. The animals were trained to perform a delayed match-to-sample task in which oriented stimuli were presented in the receptive field of the neuron being recorded. On some trials the animals were instructed to pay attention to those stimuli, and on other trials they were instructed to pay attention to other stimuli outside the receptive field. In this way, orientation-tuning curves could be constructed from neuronal responses collected in two behavioral states: one in which those stimuli were attended by the animal and one in which those stimuli were ignored by the animal. We fit Gaussians to the neuronal responses to twelve different orientations for each behavioral state. Although attention enhanced the responses of V4 neurons (median 26% increase) and V1 neurons (median 8% increase), selectivity, as measured by the width of its orientation-tuning curve, was not systematically altered by attention. The effects of attention were consistent with a multiplicative scaling of the driven response to all orientations. We also found that attention did not cause systematic changes in the undriven activity of the neurons.
我们研究了注意力如何影响两只恒河猴的纹外V4区的262个孤立神经元以及V1区的135个神经元的方向调谐。训练动物执行延迟匹配样本任务,在此任务中,将定向刺激呈现于被记录神经元的感受野中。在某些试验中,指示动物注意那些刺激,而在其他试验中,指示它们注意感受野之外的其他刺激。通过这种方式,可以根据在两种行为状态下收集的神经元反应构建方向调谐曲线:一种是动物注意那些刺激的状态,另一种是动物忽略那些刺激的状态。我们针对每种行为状态,将高斯函数拟合到神经元对十二个不同方向的反应上。尽管注意力增强了V4神经元的反应(中位数增加26%)和V1神经元的反应(中位数增加8%),但其方向调谐曲线宽度所衡量的选择性并未因注意力而发生系统性改变。注意力的影响与对所有方向的驱动反应的乘法缩放一致。我们还发现,注意力不会引起神经元非驱动活动的系统性变化。