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猫纹状皮层中简单细胞感受野的时空组织。I. 一般特征与出生后发育

Spatiotemporal organization of simple-cell receptive fields in the cat's striate cortex. I. General characteristics and postnatal development.

作者信息

DeAngelis G C, Ohzawa I, Freeman R D

机构信息

Group in Bioengineering, University of California, Berkeley 94720.

出版信息

J Neurophysiol. 1993 Apr;69(4):1091-117. doi: 10.1152/jn.1993.69.4.1091.

Abstract
  1. Most studies of cortical neurons have focused on the spatial structure of receptive fields. For a more complete functional description of these neurons, it is necessary to consider receptive-field structure in the joint domain of space and time. We have studied the spatiotemporal receptive-field structure of 233 simple cells recorded from the striate cortex of adult cats and kittens at 4 and 8 wk postnatal. The dual goal of this study is to provide a detailed quantitative description of spatiotemporal receptive-field structure and to compare the developmental time courses of spatial and temporal response properties. 2. Spatiotemporal receptive-field profiles have been measured with the use of a reverse correlation method, in which we compute the cross-correlation between a neuron's response and a random sequence of small, briefly presented bright and dark stimuli. The receptive-field profiles of some simple cells are space-time separable, meaning that spatial and temporal response characteristics can be dissociated. Other cells have receptive-field profiles that are space-time inseparable. In these cases, a particular spatial location cannot be designated, unambiguously, as belonging to either an on or off subregion. However, separate on and off subregions may be clearly distinguished in the joint space-time domain. These subregions are generally tilted along an oblique axis. 3. Our observations show that spatial and temporal aspects of receptive-field structure mature with clearly different time courses. By 4 wk postnatal, the spatial symmetry and periodicity of simple-cell receptive fields have reached maturity. The spatial extent (or size) of these receptive fields is adult-like by 8 wk postnatal. In contrast, the response latency and time duration of spatiotemporal receptive fields do not mature until well beyond 8 wk postnatal. 4. By applying Fourier analysis to spatiotemporal receptive-field profiles, we have examined the postnatal development of spatial and temporal selectivity in the frequency domain. By 8 wk postnatal, spatial frequency tuning has clearly reached maturity. On the contrary, temporal frequency selectivity remains markedly immature at 8 wk. We have also examined the joint distribution of optimal spatial and temporal frequencies. From 4 wk postnatal until 8 wk postnatal, the range of optimal spatial frequencies increases substantially, whereas the range of optimal temporal frequencies remains largely unchanged. From 8 wk postnatal until adulthood, there is a large increase in optimal temporal frequencies for cells tuned to low spatial frequencies. For cells tuned to high spatial frequencies, the distribution of optimal temporal frequencies does not change much beyond 8 wk postnatal.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 大多数对皮层神经元的研究都集中在感受野的空间结构上。为了更全面地描述这些神经元的功能,有必要在空间和时间的联合域中考虑感受野结构。我们研究了从出生后4周和8周的成年猫和小猫的纹状皮层记录的233个简单细胞的时空感受野结构。本研究的双重目标是提供时空感受野结构的详细定量描述,并比较空间和时间响应特性的发育时间进程。2. 时空感受野轮廓是通过反向相关方法测量的,在该方法中,我们计算神经元的响应与一系列短暂呈现的小的明亮和黑暗刺激的随机序列之间的互相关。一些简单细胞的感受野轮廓在时空上是可分离的,这意味着空间和时间响应特性可以分离。其他细胞的感受野轮廓在时空上是不可分离的。在这些情况下,不能明确指定一个特定的空间位置属于开或关子区域。然而,在联合时空域中,可以清楚地区分单独的开和关子区域。这些子区域通常沿倾斜轴倾斜。3. 我们的观察表明,感受野结构的空间和时间方面以明显不同的时间进程成熟。出生后4周时,简单细胞感受野的空间对称性和周期性已达到成熟。这些感受野的空间范围(或大小)在出生后8周时类似成年。相比之下, 时空感受野的响应潜伏期和持续时间直到出生后8周后很久才成熟。4. 通过对时空感受野轮廓应用傅里叶分析,我们研究了频率域中空间和时间选择性的出生后发育。出生后8周时,空间频率调谐已明显达到成熟。相反,时间频率选择性在8周时仍明显不成熟。我们还研究了最佳空间和时间频率的联合分布。从出生后4周到8周,最佳空间频率范围大幅增加,而最佳时间频率范围基本保持不变。从出生后8周到成年,对于调谐到低空间频率的细胞,最佳时间频率大幅增加。对于调谐到高空间频率的细胞,最佳时间频率分布在出生后8周后变化不大。(摘要截断于400字)

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