Department of Psychology, University of Minnesota, Minneapolis, MN, USA.
Neuroimage. 2013 Sep;78:152-8. doi: 10.1016/j.neuroimage.2013.04.036. Epub 2013 Apr 19.
Relevant features in the visual image are often spatially extensive and have complex orientation structure. Our perceptual sensitivity to such spatial form is demonstrated by polar Glass patterns, in which an array of randomly-positioned dot pairs that are each aligned with a particular polar displacement (rotation, for example) yield a salient impression of spatial structure. Such patterns are typically considered to be processed in two main stages: local spatial filtering in low-level visual cortex followed by spatial pooling and complex form selectivity in mid-level visual cortex. However, it remains unclear both whether reciprocal interactions within the cortical hierarchy are involved in polar Glass pattern processing and which mid-level areas identify and communicate polar Glass pattern structure. Here, we used functional magnetic resonance imaging (fMRI) at 7T to infer the magnitude of neural response within human low-level and mid-level visual cortex to polar Glass patterns of varying coherence (proportion of signal elements). The activity within low-level visual areas V1 and V2 was not significantly modulated by polar Glass pattern coherence, while the low-level area V3, dorsal and ventral mid-level areas, and the human MT complex each showed a positive linear coherence response functions. The cortical processing of polar Glass patterns thus appears to involve primarily feedforward communication of local signals from V1 and V2, with initial polar form selectivity reached in V3 and distributed to multiple pathways in mid-level visual cortex.
视觉图像中的相关特征通常具有广泛的空间范围和复杂的方向结构。我们对这种空间形式的感知敏感性可以通过极向 Glass 图案来证明,其中随机位置的点对数组与特定的极向位移(例如旋转)对齐,产生空间结构的明显印象。这种图案通常被认为是在两个主要阶段进行处理:低级视觉皮层中的局部空间滤波,然后是中级视觉皮层中的空间池化和复杂形式选择性。然而,目前尚不清楚皮质层次结构内的相互作用是否涉及极向 Glass 图案处理,以及哪些中级区域识别和传达极向 Glass 图案结构。在这里,我们使用 7T 功能磁共振成像 (fMRI) 来推断人类低级和中级视觉皮层内对不同相干性(信号元素比例)极向 Glass 图案的神经反应幅度。低级视觉区域 V1 和 V2 中的活动没有被极向 Glass 图案相干性显著调节,而低级区域 V3、背侧和腹侧中级区域以及人类 MT 复合体每个都显示出正的线性相干响应函数。极向 Glass 图案的皮质处理似乎主要涉及从 V1 和 V2 进行局部信号的前馈通信,在 V3 中达到初始极向选择性,并分布到中级视觉皮层的多个通路。