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猫视觉皮层神经元方向选择性的速度依赖性

The velocity dependence of direction selectivity of visual cortical neurones in the cat.

作者信息

Duysens J, Maes H, Orban G A

机构信息

Laboratorium voor Neuro- en Psychofysiologie, Katholieke Universiteit te Leuven, Belgium.

出版信息

J Physiol. 1987 Jun;387:95-113. doi: 10.1113/jphysiol.1987.sp016565.

Abstract
  1. The range of velocities, yielding direction-selective responses, was investigated in a total of 167 direction-selective cells from areas 17 and 18 of the cat, using a high-contrast light bar moving at velocities ranging from 0.6 to 900 deg s-1. 2. 11% of the cells were direction selective over the full range of velocities tested. Most cells (66%) gave only responses at low velocities and thus were not direction selective at high velocities. The remaining cells gave responses over a broad range of velocities but the direction selectivity was limited to either high or intermediate velocities (18 and 5% of the cells, respectively). Cells with direction selectivity at high but not at low velocities had large receptive fields with non-overlapping 'on' and 'off' subregions and they responded quickly and phasically to stationary flashes. This suggests that the latter cells relied on fast and brief interactions over large distances. 3. In thirty cells the spatial and temporal limits of direction selectivity were investigated using a stroboscopically illuminated moving light bar. In all cells direction selectivity depended both on the interflash distance and the interflash time interval. Area 17 cells with large receptive field at high eccentricity tolerated much larger interflash spacings than area 17 cells with small receptive fields near the area centralis. For eleven of the thirty cells the effective interflash distance could be larger than the width of the receptive field. The largest effective interflash time interval varied between 35 and 250 ms. 4. Eight of the thirty cells were direction selective at high but not at low velocities. These eight cells all remained direction selective over large interflash distances and they required brief interflash intervals (less than or equal to 65 ms). 5. Responses to single stroboscopic flashes within the sequence were observed in ten cells, which all responded well at high apparent velocities. While most cells (eight out of ten) showed both response increments in the preferred direction and response decrements in the non-preferred, the decrements constituted the dominant element in the direction selectivity of six out of ten cells while the remaining four cells relied mainly on response increments. 6. It is concluded that the range of direction-selective velocities of some cat visual cortical cells can be predicted from a knowledge of the spatial extent and the time course of the direction-selective interactions.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 利用一个高对比度的光条,以0.6至900度/秒的速度移动,对猫的17区和18区总共167个方向选择性细胞的速度范围进行了研究,这些细胞产生方向选择性反应。2. 11%的细胞在测试的整个速度范围内具有方向选择性。大多数细胞(66%)仅在低速时产生反应,因此在高速时不具有方向选择性。其余细胞在很宽的速度范围内产生反应,但方向选择性仅限于高速或中速(分别占细胞总数的18%和5%)。在高速而非低速时具有方向选择性的细胞具有大的感受野,其“开”和“关”子区域不重叠,并且它们对静止闪光快速且呈相位性地做出反应。这表明后一种细胞依赖于远距离的快速且短暂的相互作用。3. 使用频闪照明的移动光条,对30个细胞的方向选择性的空间和时间限制进行了研究。在所有细胞中,方向选择性既取决于闪光间隔距离,也取决于闪光间隔时间。在高离心率下具有大感受野的17区细胞比在中央凹附近具有小感受野的17区细胞能容忍大得多的闪光间隔距离。对于30个细胞中的11个细胞,有效的闪光间隔距离可能大于感受野的宽度。最大的有效闪光间隔时间在35至250毫秒之间变化。4. 30个细胞中的8个在高速而非低速时具有方向选择性。这8个细胞在大的闪光间隔距离上都保持方向选择性,并且它们需要短暂的闪光间隔(小于或等于65毫秒)。5. 在10个细胞中观察了对序列中单个频闪闪光的反应,这些细胞在高视在速度下都反应良好。虽然大多数细胞(10个中的8个)在偏好方向上显示反应增加,在非偏好方向上显示反应减少,但在10个细胞中的6个细胞的方向选择性中,减少构成了主导因素,而其余4个细胞主要依赖于反应增加。6. 得出的结论是,一些猫视觉皮层细胞的方向选择性速度范围可以根据方向选择性相互作用的空间范围和时间进程的知识来预测。(摘要截短至400字)

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引用本文的文献

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