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空间注意对MT区神经元反应的影响。

Effect of spatial attention on the responses of area MT neurons.

作者信息

Seidemann E, Newsome W T

机构信息

Howard Hughes Medical Institute and Department of Neurobiology, Stanford University School of Medicine, Stanford, California 94305, USA.

出版信息

J Neurophysiol. 1999 Apr;81(4):1783-94. doi: 10.1152/jn.1999.81.4.1783.

Abstract

This study examines the influence of spatial attention on the responses of neurons in the middle temporal visual area (MT or V5) of extrastriate cortex. Two monkeys were trained to perform a direction-discrimination task. On each trial, two apertures of random-dot stimuli appeared simultaneously at two spatially separated locations; the monkeys were required to discriminate the direction of stimulus motion at one location while ignoring the stimulus at the other location. After extensive training, we recorded the responses of MT neurons in two configurations: 1) Both apertures placed "within" the neuron's receptive field (RF) and 2) one aperture covering the RF while the other was presented at a "remote" location. For each unit we compared the responses to identical stimulus displays when the monkey was instructed to attend to one or the other aperture. The responses of MT neurons were 8.7% stronger, on average, when the monkey attended to the spatial location that contained motion in the "preferred" direction. Attentional effects were equal, on average, in the within RF and remote configurations. The attentional modulations began approximately 300 ms after stimulus onset, gradually increased throughout the trial, and peaked near stimulus offset. An analysis of the neuronal responses on error trials suggests that the monkeys failed to attend to the appropriate spatial location on these trials. The relatively weak attentional effects that we observed contrast strikingly with recent results of Treue and Maunsell, who demonstrated very strong attentional modulations (median effect >80%) in MT in a task that shares many features with ours. Our results suggest that spatial attention alone is not sufficient to induce strong attentional effects in MT even when two competing motion stimuli appear within the RF of the recorded neuron. The difference between our results and those of Treue and Maunsell suggests that the magnitude of the attentional effects in MT may depend critically on how attention is directed to a particular stimulus and on the precise demands of the task.

摘要

本研究考察空间注意对纹外皮层中颞视觉区(MT或V5)神经元反应的影响。训练两只猴子执行方向辨别任务。在每次试验中,两个随机点刺激孔径同时出现在两个空间分离的位置;要求猴子辨别一个位置的刺激运动方向,同时忽略另一个位置的刺激。经过广泛训练后,我们在两种配置下记录MT神经元的反应:1)两个孔径都置于神经元的感受野(RF)“内”,以及2)一个孔径覆盖RF,而另一个在“远处”位置呈现。对于每个单元,我们比较了猴子被指示注意其中一个或另一个孔径时对相同刺激显示的反应。当猴子注意包含“偏好”方向运动的空间位置时,MT神经元的反应平均增强8.7%。平均而言,在RF内和远处配置中,注意效应是相等的。注意调制在刺激开始后约300毫秒开始,在整个试验过程中逐渐增加,并在刺激结束附近达到峰值。对错误试验中神经元反应的分析表明,猴子在这些试验中未能注意到适当的空间位置。我们观察到的相对较弱的注意效应与特鲁厄和芒塞尔最近的结果形成了鲜明对比,他们在与我们的任务有许多共同特征的一项任务中,证明了MT中非常强的注意调制(中位数效应>80%)。我们的结果表明,即使两个相互竞争的运动刺激出现在记录神经元的RF内,仅空间注意也不足以在MT中诱导出强烈的注意效应。我们的结果与特鲁厄和芒塞尔的结果之间的差异表明,MT中注意效应的大小可能严重取决于注意如何指向特定刺激以及任务的精确要求。

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