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Estimating receptive field size from fMRI data in human striate and extrastriate visual cortex.

机译:从人类纹状体和外纹状体视觉皮层的fMRI数据估计接受视野的大小。

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Functional magnetic resonance imaging (fMRI) was used to estimate the average receptive field sizes of neurons in each of several striate and extrastriate visual areas of the human cerebral cortex. The boundaries of the visual areas were determined by retinotopic mapping procedures and were visualized on flattened representations of the occipital cortex. Estimates of receptive field size were derived from the temporal duration of the functional activation at each cortical location as a visual stimulus passed through the receptive fields represented at that location. Receptive fields are smallest in the primary visual cortex (V1). They are larger in V2, larger again in V3/VP and largest of all in areas V3A and V4. In all these areas, receptive fields increase in size with increasing stimulus eccentricity. The results are qualitatively in line with those obtained by others in macaque monkeys using neurophysiological methods.
机译:功能磁共振成像(fMRI)用于估计人大脑皮层的几个纹状体和纹状体视觉区域中每个区域的神经元平均感受野大小。视觉区域的边界是通过视网膜局部成像程序确定的,并在枕骨皮层的扁平化表示上可视化。感受野大小的估计是从每个皮质位置的功能性激活的持续时间得出的,因为视觉刺激通过了该位置所代表的感受野。初级视皮层(V1)中的感受野最小。它们在V2中更大,在V3 / VP中又更大,并且在区域V3A和V4中最大。在所有这些区域中,随着刺激偏心率的增加,感受野的大小也随之增加。该结果定性与其他人使用神经生理学方法在猕猴中获得的结果一致。

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