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Correlation between the preferred orientation and spatial frequency of neurones in visual areas 17 and 18 of the cat.

机译:猫的视觉区域17和18中神经元的首选方向与空间频率之间的相关性。

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摘要

1. In seventy-six penetrations through areas 17 and 18 of the cat, neurones were regularly sampled at intervals of 100 micrometers and preferred orientation, optimal spatial frequency and resolving power were determined for each neurone in response to drifting sinusoidal gratings. 2. As already shown for area 17, in tangential penetrations through area 18, whenever the preferred orientation rotates progressively from cell to cell, the optimal spatial frequency tends to remain constant. 3. A statistical analysis on 1574 cells in areas 17 and 18 showed that for pairs of cells separated 200-300 micrometers along a track the difference in preferred orientation delta alpha and the difference in optimal spatial frequency delta f are not randomly distributed: cell pairs with small delta alpha are most likely to have large delta f and vice versa. 4. These findings indicate that in areas 17 and 18 neurones with the same optimal frequency are aligned along a direction orthogonal to the orientation columns. 5. The optimal spatial frequency, resolving power and the velocity cut-off were averaged for cells from different penetrations located in the same cortical layer or sublayer of area 18: mean optimal spatial frequency and acuity are highest in layer IV and lowest in layers II and V, while the velocity cut-off is highest in layers II and V and lowest in layer IV. 6. Our data suggest that the layering of cells according to optimal spatial frequency is a more subtle subdivision than the six histological layers.
机译:1.在穿过猫的区域17和18的76次穿入中,定期以100微米的间隔对神经元进行采样,并根据响应的正弦光栅确定每个神经元的首选方向,最佳空间频率和分辨能力。 2.如已经针对区域17所示,在穿过区域18的切线中,每当首选方向从一个单元到另一个单元逐渐旋转时,最佳空间频率都趋于保持恒定。 3.对区域17和18中的1574个细胞进行的统计分析表明,对于沿一条轨道间隔200-300微米的成对的细胞,优选取向δα的差异和最佳空间频率δf的差异不是随机分布的:细胞对Delta alpha较小的人最有可能拥有较大的delta f,反之亦然。 4.这些发现表明,在区域17和18中,具有相同最佳频率的神经元沿着与方向列正交的方向排列。 5.对位于区域18的同一皮质层或子层中的不同穿透的细胞,平均最佳空间频率,分辨能力和速度截止值:平均最佳空间频率和敏锐度在IV层最高,在II层最低和速度V,而速度截止在II和V层中最高,在IV层中最低。 6.我们的数据表明,与六个组织学层相比,根据最佳空间频率进行的细胞分层是更细微的细分。

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