Salinas E, Abbott L F
Volen Center for Complex Systems, Brandeis University, Waltham, Massachusetts 02254-9110, USA.
J Neurophysiol. 1997 Jun;77(6):3267-72. doi: 10.1152/jn.1997.77.6.3267.
Inferotemporal (IT) neurons exhibit a substantial degree of invariance with respect to translation of images used as visual stimuli. Through theoretical and computer-modeling methods, we show how translation-invariant receptive fields, like those of IT neurons, can be generated from the responses of V4 neurons if the effects of attention are taken into account. The model incorporates a recently reported form of attention-dependent gain modulation in V4 and produces IT receptive fields that shift so they are centered at the point where attention is directed. Receptive fields of variable, attention-controlled spatial scale are obtained when the mechanism is extended to scale-dependent attentional gain fields. The results indicate that gain modulation may play analogous roles in the dorsal and ventral visual pathways, generating transformations from retinal coordinates to body- and object-centered systems, respectively.
颞下(IT)神经元对用作视觉刺激的图像平移表现出高度的不变性。通过理论和计算机建模方法,我们展示了如果考虑注意力的影响,像IT神经元那样的平移不变感受野如何能够从V4神经元的反应中产生。该模型纳入了最近报道的V4中一种依赖注意力的增益调制形式,并产生了会移动的IT感受野,使其以注意力指向的点为中心。当该机制扩展到依赖尺度的注意力增益场时,可获得可变的、受注意力控制的空间尺度的感受野。结果表明,增益调制可能在背侧和腹侧视觉通路中发挥类似作用,分别产生从视网膜坐标到以身体和物体为中心的系统的转换。