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通过抑制性干扰进行刺激竞争。

Stimulus competition by inhibitory interference.

作者信息

Tiesinga Paul H E

机构信息

Department of Physics and Astronomy, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Neural Comput. 2005 Nov;17(11):2421-53. doi: 10.1162/0899766054796905.

Abstract

When two stimuli are present in the receptive field of a V4 neuron, the firing rate response is between the weakest and strongest response elicited by each of the stimuli when presented alone (Reynolds, Chelazzi, & Desimone, 1999). When attention is directed toward the stimulus eliciting the strongest response (the preferred stimulus), the response to the pair is increased, whereas the response decreases when attention is directed to the other stimulus (the poor stimulus). When attention is directed to either of the two stimuli presented alone, the firing rate remains the same or increases slightly, but the coherence between the neuron's spike train and the local field potential can increase (Fries, Reynolds, Rorie, & Desimone, 2001). These experimental results were reproduced in a model of a V4 neuron under the assumption that attention modulates the activity of local interneuron networks. The V4 model neuron received stimulus-specific excitation from V2 and synchronous inhibitory inputs from two local interneuron networks in V4. Each interneuron network was driven by stimulus-specific excitatory inputs from V2 and was modulated by the activity of the frontal eye fields. Stimulus competition was present because of a delay in arrival time of synchronous volleys from each interneuron network. For small delays, the firing rate was close to the rate elicited by the preferred stimulus alone, whereas for larger delays, it approached the firing rate of the poor stimulus. When either stimulus was presented alone, the neuron's response was not altered by the change in delay, but could change due to modulation of the degree of synchrony of the corresponding interneuron network. The model suggests that top-down attention biases the competition between V2 columns for control of V4 neurons primarily by changing the relative timing of inhibition, whereas changes in the degree of synchrony of interneuron networks modulate the response to a single stimulus. The new mechanism proposed here for attentional modulation of firing rate, gain modulation by inhibitory interference, is likely to have more general applicability to cortical information processing.

摘要

当两个刺激出现在V4神经元的感受野中时,其放电频率响应介于单独呈现每个刺激时所引发的最弱和最强响应之间(雷诺兹、凯拉齐和德西蒙,1999年)。当注意力指向引发最强响应的刺激(偏好刺激)时,对这一对刺激的响应会增强,而当注意力指向另一个刺激(较差刺激)时,响应则会减弱。当注意力指向单独呈现的两个刺激中的任何一个时,放电频率保持不变或略有增加,但神经元的动作电位序列与局部场电位之间的相干性会增强(弗里斯、雷诺兹、罗里和德西蒙,2001年)。在假设注意力调节局部中间神经元网络活动的情况下,这些实验结果在一个V4神经元模型中得到了重现。V4模型神经元从V2接收特定刺激的兴奋,并从V4中的两个局部中间神经元网络接收同步抑制性输入。每个中间神经元网络由来自V2的特定刺激兴奋性输入驱动,并受额叶眼区活动的调节。由于来自每个中间神经元网络同步脉冲到达时间的延迟,存在刺激竞争。对于较小的延迟,放电频率接近仅由偏好刺激引发的频率,而对于较大的延迟,它接近较差刺激的放电频率。当单独呈现任何一个刺激时,神经元的响应不会因延迟变化而改变,但可能会因相应中间神经元网络同步程度的调节而改变。该模型表明,自上而下的注意力主要通过改变抑制的相对时间来偏向V2柱之间对V4神经元的控制竞争,而中间神经元网络同步程度的变化则调节对单个刺激的响应。这里提出的用于注意力调节放电频率的新机制,即通过抑制性干扰进行增益调节,可能对皮层信息处理具有更广泛的适用性。

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