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首页> 外文期刊>Journal of Cognitive Neuroscience >Temporal Dynamics of Shape Processing Differentiate Contributions of Dorsal and Ventral Visual Pathways
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Temporal Dynamics of Shape Processing Differentiate Contributions of Dorsal and Ventral Visual Pathways

机译:背侧和腹侧视觉通路的形状加工差异贡献的时间动态

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摘要

Although shape perception is primarily considered a function of the ventral visual pathway, previous research has shown that both dorsal and ventral pathways represent shape information. Here, we examine whether the shape-selective electrophysiological signals observed in dorsal cortex are a product of the connectivity to ventral cortex or are independently computed. We conducted multiple EEG studies in which we manipulated the input parameters of the stimuli so as to bias processing to either the dorsal or ventral visual pathway. Participants viewed displays of common objects with shape information parametrically degraded across five levels. We measured shape sensitivity by regressing the amplitude of the evoked signal against the degree of stimulus scrambling. Experiment 1, which included grayscale versions of the stimuli, served as a benchmark establishing the temporal pattern of shape processing during typical object perception. These stimuli evoked broad and sustained patterns of shape sensitivity beginning as early as 50 msec after stimulus onset. In Experiments 2 and 3, we calibrated the stimuli such that visual information was delivered primarily through parvocellular inputs, which mainly project to the ventral pathway, or through koniocellular inputs, which mainly project to the dorsal pathway. In the second and third experiments, shape sensitivity was observed, but in distinct spatio-temporal configurations from each other and from that elicited by grayscale inputs. Of particular interest, in the koniocellular condition, shape selectivity emerged earlier than in the parvocellular condition. These findings support the conclusion of distinct dorsal pathway computations of object shape, independent from the ventral pathway.
机译:尽管形状感知主要被认为是腹侧视觉通路的功能,但先前的研究表明背侧和腹侧通路都代表了形状信息。在这里,我们检查在背侧皮层中观察到的形状选择性电生理信号是连接到腹侧皮层的产物还是独立计算的。我们进行了多个脑电图研究,其中我们操纵了刺激的输入参数,以便将加工偏向于背侧或腹侧视觉通路。参加者查看了常见对象的显示,并且其形状信息在五个级别上受参数降低。我们通过将诱发信号的幅度与刺激性扰动程度进行回归来测量形状敏感性。实验1(包括刺激的灰度版本)用作建立典型对象感知过程中形状处理的时间模式的基准。这些刺激最早在刺激发生后50毫秒就引起了广泛而持续的形状敏感性模式。在实验2和3中,我们对刺激进行了校准,以使视觉信息主要通过主要投射到腹侧途径的细小细胞输入或主要投射到背侧途径的单核细胞输入提供。在第二个和第三个实验中,观察到形状敏感性,但是彼此之间以及由灰阶输入引起的时空构造互不相同。特别令人感兴趣的是,在小细胞条件下,形状选择性的出现要早于小细胞条件下。这些发现支持独立于腹侧通路的物体形状的独特背侧通路计算的结论。

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