Cognitive Neurophysiology Laboratory, Department of Physiology, McGill University, Montreal, Quebec H3G 1Y6, Canada.
J Neurosci. 2010 Feb 10;30(6):2188-97. doi: 10.1523/JNEUROSCI.5314-09.2010.
The effects of attention on the responses of visual neurons have been described as a scaling or additive modulation independent of stimulus features and contrast, or as a contrast-dependent modulation. We explored these alternatives by recording neuronal responses in macaque area MT to moving stimuli that evoked similar firing rates but varied in contrast and direction. We presented two identical pairs of stimuli, one inside the neurons' receptive field and the other outside, in the opposite hemifield. One stimulus of each pair always had high contrast and moved in the recorded cell's antipreferred direction (AP pattern), while the other (test pattern) could either move in the cell's preferred direction and vary in contrast, or have the same contrast as the AP pattern and vary in direction. For different stimulus pairs evoking similar responses, switching attention between the two AP patterns, or directing attention from a fixation spot to the AP pattern inside or outside the receptive field, produced a stronger suppression of responses to varying contrast pairs, reaching a maximum ( approximately 20%) at intermediate contrast. For invariable contrast pairs, switching attention from the fixation spot to the AP pattern produced a modulation that ranged from 10% suppression when the test pattern moved in the cells preferred direction to 14% enhancement when it moved in a direction 90 degrees away from that direction. Our results are incompatible with a scaling or additive modulation of MT neurons' response by attention, but support models where spatial and feature-based attention modulate input signals into the area normalization circuit.
注意力对视觉神经元反应的影响可被描述为与刺激特征和对比度无关的缩放或附加调制,或者是对比度相关的调制。我们通过记录猕猴 MT 区神经元对运动刺激的反应来探索这些替代方案,这些刺激产生相似的发放率,但对比度和方向不同。我们呈现了两对相同的刺激,一对在神经元感受野内,另一对在对侧视野内。每对刺激中的一个始终具有高对比度并以记录细胞的反优势方向(AP 模式)移动,而另一个(测试模式)可以在细胞的优势方向移动并改变对比度,或者具有与 AP 模式相同的对比度并改变方向。对于引起相似反应的不同刺激对,在两个 AP 模式之间切换注意力,或者将注意力从注视点引导到感受野内或外的 AP 模式,会对变化对比度的刺激对产生更强的抑制作用,在中等对比度下达到最大值(约 20%)。对于不变对比度的刺激对,将注意力从注视点切换到 AP 模式会产生调制,当测试模式沿细胞的优势方向移动时,调制范围从 10%抑制到与该方向成 90 度方向移动时的 14%增强。我们的结果与注意力对 MT 神经元反应的缩放或附加调制不兼容,但支持空间和基于特征的注意力调节进入区域归一化电路的输入信号的模型。