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猫视觉皮层的局部皮质内连接:出生后发育与可塑性

Local intracortical connections in the cat's visual cortex: postnatal development and plasticity.

作者信息

Ghose G M, Freeman R D, Ohzawa I

机构信息

Group in Vision Science, School of Optometry, University of California, Berkeley 94720-2020.

出版信息

J Neurophysiol. 1994 Sep;72(3):1290-303. doi: 10.1152/jn.1994.72.3.1290.

Abstract
  1. We have studied the nature, development, and plasticity of local intracortical interactions by examining the visual responses from pairs of cells in the visual cortex of anesthetized and paralyzed adult cats and kittens at postnatal age 4 wk. Simultaneous discharge from nearby cells was analyzed by the cross-correlation method to infer three types of neuronal interactions: monosynaptic excitation, monosynaptic inhibition, and polysynaptic excitation. 2. Among cell pairs that exhibit correlated discharge, the nature of these interactions is similar in kittens and adults. For example, the mean monosynaptic delay is the same for cell pairs in the adult cat and the kitten: 0.8 ms. The primary difference in the distribution of neural interactions is the increased prevalence of inhibitory interactions among adult cat cell pairs compared with kitten cell pairs. However, in both age groups and in nearly all laminae, polysynaptic interactions are the most commonly observed type of interaction. 3. Neural interactions revealed by cross-correlation analysis also were studied with respect to the receptive field properties of the cells. The hierarchical theory proposed by Hubel and Wiesel suggests that monosynaptic excitation should be seen from simple to complex cells. It further suggests that complex cells do not provide monosynaptic excitation either to simple or to other complex cells. However, we find no cases of monosynaptic excitation from simple to complex cells in the adult cat. Moreover, we find explicitly antihierarchical connections, i.e., excitatory connections from complex to simple cells, in both kittens and adults. The excitatory influence of complex cells on simple cell receptive field properties is not incorporated into current models of receptive field structure formation. Our results suggest that complex cells might have an important modulatory role in simple cell discharge. 4. Plasticity of intracortical synaptic connections was studied by examining the dynamics of monosynaptic peaks with cross-correlograms. We examined Hebb's seminal hypothesis regarding synaptic plasticity that the excitatory connections between two neurons should strengthen with simultaneous activity. To test directly whether Hebbian plasticity can be rapidly induced by stimulus-evoked activity, the strength of monosynaptic excitation between pairs of neurons was monitored during periods of visual stimulation lasting < or = 2 h. Synaptic strength was computed by summing the cross-correlogram bins containing the monosynaptic peak. Transient increases in monosynaptic peak area are found among cell pairs linked by monosynaptic excitation after 8-15 min of visual stimulation. The duration and amplitude of these changes are similar in adult cats and kittens.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们通过检测出生后4周的麻醉且瘫痪的成年猫和幼猫视觉皮层中细胞对的视觉反应,研究了局部皮质内相互作用的性质、发育和可塑性。采用互相关方法分析附近细胞的同步放电,以推断三种类型的神经元相互作用:单突触兴奋、单突触抑制和多突触兴奋。2. 在表现出相关放电的细胞对中,这些相互作用的性质在幼猫和成年猫中相似。例如,成年猫和幼猫细胞对的平均单突触延迟相同:0.8毫秒。神经相互作用分布的主要差异在于,与幼猫细胞对相比,成年猫细胞对中抑制性相互作用的发生率增加。然而,在两个年龄组以及几乎所有层中,多突触相互作用是最常观察到的相互作用类型。3. 还针对细胞的感受野特性研究了互相关分析揭示的神经相互作用。Hubel和Wiesel提出的层级理论表明,应从简单细胞到复杂细胞观察到单突触兴奋。该理论还进一步表明,复杂细胞既不向简单细胞也不向其他复杂细胞提供单突触兴奋。然而,我们在成年猫中未发现从简单细胞到复杂细胞的单突触兴奋情况。此外,我们在幼猫和成年猫中都明确发现了反层级连接,即从复杂细胞到简单细胞的兴奋性连接。复杂细胞对简单细胞感受野特性的兴奋性影响未纳入当前的感受野结构形成模型。我们的结果表明,复杂细胞可能在简单细胞放电中具有重要的调节作用。4. 通过用互相关图检查单突触峰的动态,研究了皮质内突触连接的可塑性。我们检验了Hebbian关于突触可塑性的开创性假设,即两个神经元之间的兴奋性连接应随着同步活动而增强。为了直接测试Hebbian可塑性是否能由刺激诱发的活动快速诱导,在持续≤2小时的视觉刺激期间监测神经元对之间单突触兴奋的强度。通过对包含单突触峰的互相关图区间求和来计算突触强度。在视觉刺激8 - 15分钟后,在由单突触兴奋连接的细胞对中发现单突触峰面积有短暂增加。成年猫和幼猫中这些变化的持续时间和幅度相似。(摘要截选至400字)

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