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猫视觉皮层细胞在高亮度和低亮度水平下反应特性的比较。

Comparison of response properties of cells in the cat's visual cortex at high and low luminance levels.

作者信息

Ramoa A S, Freeman R D, Macy A

出版信息

J Neurophysiol. 1985 Jul;54(1):61-72. doi: 10.1152/jn.1985.54.1.61.

Abstract

Receptive-field organization of cells in the cat's striate cortex and lateral geniculate nucleus (LGN) was investigated by using bars of light as stimuli. The aim was to determine if differences occur between conditions of high and low luminance levels. Of 72 cortical cells studied, the receptive fields of 63 were clearly different at high compared with low luminances. Units that gave on-off responses to flashed bars, for example, typically displayed on-only responses at low luminance. By far the most frequent change was that off responses were reduced or absent at low luminance levels. Of 63 cells that showed clear changes, 54 were of this type. This altered receptive-field organization appears to remain for extended periods (we have monitored the steady-state case for up to 2 h). Additional tests allow us to rule out the possible influence of overall changes in response strength and scattered light. To see if similar changes in receptive-field organization are present at the level of the LGN, we recorded from a small number of cells in the LGN (n = 10) and from an additional five afferent fibers in the cortex. In each case, there was a change in center-surround organization between high and low luminance levels similar to that previously reported for retinal ganglion cells. The excitatory responses from the surround for both on-center and off-center cells were absent at low luminance. Taken together, the results suggest that surround responses that can be elicited from ganglion cells and LGN cells make an important contribution to the receptive-field organization of cortical neurons. Changes in receptive-field organization of cortical cells are apparently not accompanied by alterations of other basic response properties. Orientation (7 cells) and spatial frequency (53 cells) selectivity remain relatively unchanged when measured at different luminances. Although optimal spatial frequency is slightly lower at low luminance levels, the low spatial frequency attenuation remains unaltered. Since receptive-field changes between high and low luminance levels suggest that a unit's classification may also vary, we examined simple and complex cell characteristics using sinusoidal gratings (65 cells). Contrary to what we had anticipated, the degree of modulation of responses was relatively independent of luminance, indicating that cell classification does not vary with stimulus luminance.

摘要

通过使用光条作为刺激,研究了猫的纹状皮层和外侧膝状体核(LGN)中细胞的感受野组织。目的是确定在高亮度和低亮度条件之间是否存在差异。在研究的72个皮层细胞中,63个细胞的感受野在高亮度与低亮度下明显不同。例如,对闪烁光条产生开-关反应的单元,在低亮度下通常仅显示开反应。到目前为止,最常见的变化是在低亮度水平下关反应减少或消失。在显示明显变化的63个细胞中,54个是这种类型。这种改变的感受野组织似乎会持续很长时间(我们已经监测了稳态情况长达2小时)。额外的测试使我们能够排除反应强度的总体变化和散射光的可能影响。为了查看在LGN水平上是否存在类似的感受野组织变化,我们记录了LGN中的少数细胞(n = 10)以及皮层中的另外五条传入纤维。在每种情况下,高亮度和低亮度水平之间的中心-外周组织都有变化,类似于先前报道的视网膜神经节细胞的情况。在低亮度下,中心-外周细胞的外周兴奋性反应均不存在。综合来看,结果表明,可从神经节细胞和LGN细胞引发的外周反应对皮层神经元的感受野组织做出了重要贡献。皮层细胞感受野组织的变化显然没有伴随着其他基本反应特性的改变。当在不同亮度下测量时,方向(7个细胞)和空间频率(53个细胞)选择性保持相对不变。尽管在低亮度水平下最佳空间频率略低,但低空间频率衰减保持不变。由于高亮度和低亮度水平之间的感受野变化表明一个单元的分类也可能不同,我们使用正弦光栅检查了简单细胞和复杂细胞的特征(65个细胞)。与我们预期的相反,反应的调制程度相对独立于亮度,表明细胞分类不会随刺激亮度而变化。

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