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小猫视皮层中双眼视觉的发育

Development of binocular vision in the kitten's striate cortex.

作者信息

Freeman R D, Ohzawa I

机构信息

Group in Neurobiology, School of Optometry, University of California, Berkeley 94720.

出版信息

J Neurosci. 1992 Dec;12(12):4721-36. doi: 10.1523/JNEUROSCI.12-12-04721.1992.

Abstract

Studies of the development and plasticity of the visual pathway are well documented, but a basic question remains open: what is the physiological status of the system prior to extensive visual experience? Somewhat conflicting answers have been put forward, and in a major area, binocular vision, reports have ranged from severe immaturity to well-developed maturity. This is an important question to resolve since binocular cells in the visual cortex are thought to be the neural substrate for stereoscopic depth perception. We have addressed this question by recording from single cells in the striate cortex of kittens at postnatal ages 2, 3, and 4 weeks and from adults for comparison. Gratings with sinusoidal luminance distribution are presented to left, right, or both eyes. For each cell, we determine optimal values for orientation and spatial frequency. Relative phase (retinal disparity) is then varied in a dichoptic sequence so that binocular interaction may be studied. Results are as follows. In the normal adult, we have shown in previous work that most binocular interaction in the visual cortex can be accounted for on the basis of linear summation. Results from 3 and 4 week postnatal kittens are closely similar to those from adults. All types of binocular interaction found in adults are present in kittens. This includes phase-specific and non-phase-specific suppression or facilitation. Furthermore, monocular and binocular tuning characteristics are comparable in kittens and adults. The clear changes that occur with age are optimal spatial frequencies and peak responses. In addition, at 2 weeks, there is a substantially higher proportion of monocular cells compared to other ages and correspondingly, lower relative numbers of cells that exhibit phase-specific or suppressive binocular interactions. From increases in optimal spatial frequency and interpupillary distance with age, we calculated predicted changes in binocular disparity thresholds (stereo acuity) with age. Although there are methodological limits with respect to the behavioral testing of young kittens, the predicted results are comparable to some of the values obtained. Considered together, our results show that the physiological apparatus for binocular vision is functional at an early stage in postnatal development. It is possible that the connections that underlie this function are developed rapidly during early postnatal experience. An alternative possibility is that there is an elaborate genetic organization of binocular vision, but our study does not address this issue directly. A combination of these factors may be applicable.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

视觉通路的发育和可塑性研究已有充分记载,但一个基本问题仍然悬而未决:在大量视觉经验之前,该系统的生理状态是怎样的?人们提出了一些相互矛盾的答案,在一个主要领域,即双眼视觉方面,报告的范围从严重不成熟到发育良好的成熟状态。由于视觉皮层中的双眼细胞被认为是立体深度感知的神经基础,所以解决这个问题很重要。我们通过记录出生后2周、3周和4周的小猫纹状皮层中的单细胞,并与成年猫进行比较,来解决这个问题。将具有正弦亮度分布的光栅呈现给左眼、右眼或双眼。对于每个细胞,我们确定其最佳的方向和空间频率值。然后以双眼分视序列改变相对相位(视网膜视差),以便研究双眼相互作用。结果如下。在正常成年人中,我们在之前的研究中表明,视觉皮层中的大多数双眼相互作用可以基于线性总和来解释。出生后3周和4周的小猫的结果与成年人的结果非常相似。在成年人中发现的所有类型的双眼相互作用在小猫中都存在。这包括相位特异性和非相位特异性的抑制或促进。此外,小猫和成年人的单眼和双眼调谐特性具有可比性。随着年龄增长而发生的明显变化是最佳空间频率和峰值反应。此外,在2周时,与其他年龄相比,单眼细胞的比例要高得多,相应地,表现出相位特异性或抑制性双眼相互作用的细胞相对数量较低。根据最佳空间频率和瞳孔间距随年龄的增加,我们计算了双眼视差阈值(立体视敏度)随年龄的预测变化。尽管在对小猫进行行为测试方面存在方法上的限制,但预测结果与获得的一些值相当。综合考虑,我们的结果表明,双眼视觉的生理机制在出生后发育的早期阶段就起作用。有可能在出生后的早期经验中,构成这种功能基础的连接迅速发育。另一种可能性是,双眼视觉存在精细的遗传组织,但我们的研究没有直接解决这个问题。这些因素的组合可能适用。(摘要截选至400字)

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