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猕猴V1神经元感受野周围信号的选择性与空间分布

Selectivity and spatial distribution of signals from the receptive field surround in macaque V1 neurons.

作者信息

Cavanaugh James R, Bair Wyeth, Movshon J Anthony

机构信息

Center for Neural Science, New York University, New York City, New York 10003, USA.

出版信息

J Neurophysiol. 2002 Nov;88(5):2547-56. doi: 10.1152/jn.00693.2001.

Abstract

The responsiveness of neurons in V1 is modulated by stimuli placed outside their classical receptive fields. This nonclassical surround provides input from a larger portion of the visual scene than originally thought, permitting integration of information at early levels in the visual processing stream. Signals from the surround have been reported variously to be suppressive and facilitatory, selective and unselective. We tested the specificity of influences from the surround by studying the interactions between drifting sinusoidal gratings carefully confined to conservatively defined center and surround regions. We found that the surround influence was always suppressive when the surround grating was at the neuron's preferred orientation. Suppression tended to be stronger when the surround grating also moved in the neuron's preferred direction, rather than its opposite. When the orientation in the surround was 90 degrees from the preferred orientation (orthogonal), suppression was weaker, and facilitation was sometimes evident. The tuning of surround signals therefore tended to match the tuning of the center, though the tuning of the surround was somewhat broader. The tuning of suppression also depended on the contrast of the center grating-when the center grating was reduced in contrast, orthogonal surround stimuli became relatively more suppressive. We also found evidence for the tuning of the surround being dependent to some degree on the stimulus used in the center-suppression was often stronger for a given center stimulus when the parameters of the surround grating matched the parameters of the center grating even when the center grating was not itself of the optimal direction or orientation. We also explored the spatial distribution of surround influence and found an orderly relationship between the orientation of grating patches presented to regions of the surround and the position of greatest suppression. When surround gratings were oriented parallel to the preferred orientation of the receptive field, suppression was strongest at the receptive field ends. When surround gratings were orthogonal, suppression was strongest on the flanks. We conclude that the surround has complex effects on responses from the classical receptive field. We suggest that the underlying mechanism of this complexity may involve interactions between relatively simple center and surround mechanisms.

摘要

初级视皮层(V1)中神经元的反应性会受到置于其经典感受野之外的刺激的调制。这种非经典的周边区域提供了比原先认为的更大范围视觉场景的输入,从而允许在视觉处理流的早期阶段整合信息。来自周边区域的信号被报道具有抑制性和易化性、选择性和非选择性等多种情况。我们通过研究严格限定在保守定义的中心和周边区域内的漂移正弦光栅之间的相互作用,测试了周边区域影响的特异性。我们发现,当周边光栅处于神经元的偏好方向时,周边影响总是抑制性的。当周边光栅也沿神经元的偏好方向移动而不是相反方向时,抑制作用往往更强。当周边的方向与偏好方向成90度(正交)时,抑制作用较弱,有时还会出现易化现象。因此,周边信号的调谐往往与中心的调谐相匹配,尽管周边的调谐范围稍宽一些。抑制的调谐还取决于中心光栅的对比度——当中心光栅的对比度降低时,正交的周边刺激会变得相对更具抑制性。我们还发现有证据表明周边的调谐在一定程度上依赖于中心所使用的刺激——对于给定的中心刺激,当周边光栅的参数与中心光栅的参数匹配时,即使中心光栅本身并非最佳方向或取向,抑制作用通常也更强。我们还探究了周边影响的空间分布,发现在呈现给周边区域的光栅斑块的方向与最大抑制位置之间存在有序关系。当周边光栅的方向与感受野的偏好方向平行时,抑制作用在感受野的两端最强。当周边光栅正交时,抑制作用在侧翼最强。我们得出结论,周边区域对经典感受野的反应具有复杂的影响。我们认为,这种复杂性的潜在机制可能涉及相对简单的中心和周边机制之间的相互作用。

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