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视网膜电活动失衡导致小猫视觉皮层的眼优势转移。

Ocular dominance shift in kitten visual cortex caused by imbalance in retinal electrical activity.

作者信息

Chapman B, Jacobson M D, Reiter H O, Stryker M P

出版信息

Nature. 1986;324(6093):154-6. doi: 10.1038/324154a0.

Abstract

Monocular lid suture during the sensitive period early in the life of a kitten disrupts normal development of inputs from the two eyes to the visual cortex, causing a decrease in the fraction of cortical cells responding to the deprived eye. Such an ocular dominance shift has been assumed to depend on patterned visual experience, because no change in cortical physiology is produced by inequalities between the two eyes in retinal illumination or temporally modulated diffuse light stimulation. A higher-level process, involving gating signals from areas outside striate cortex, has been proposed to ensure that sustained changes in synaptic efficacy occur only in response to behaviourally significant visual inputs. To test whether such a process is necessary for ocular dominance plasticity, we treated 4-week-old kittens with visual deprivation and monocular tetrodotoxin (TTX) injections to create an imbalance in the electrical activities of the two retinas in the absence of patterned vision. After 1 week of treatment we determined the ocular dominance distribution of single units in primary visual cortex. In all kittens studied, a significant ocular dominance shift was found. In addition to this physiological change, there was an anatomical change in the lateral geniculate nucleus, where cells were larger in laminae receiving input from the more active eye. Our results indicate that patterned vision is not necessary for visual cortical plasticity, and that an imbalance in spontaneous retinal activity alone can produce a significant ocular dominance shift.

摘要

在小猫生命早期的敏感期进行单眼眼睑缝合,会破坏双眼向视觉皮层输入的正常发育,导致对被剥夺眼作出反应的皮层细胞比例下降。这种眼优势的转变被认为依赖于有模式的视觉经验,因为双眼在视网膜光照或时间调制的漫射光刺激方面的不平等并不会引起皮层生理的变化。有人提出,一个涉及来自纹状体外区域的门控信号的高级过程,以确保突触效能的持续变化仅在对具有行为意义的视觉输入作出反应时才会发生。为了测试这样一个过程对于眼优势可塑性是否必要,我们对4周龄的小猫进行视觉剥夺并注射单眼河豚毒素(TTX),以在没有模式视觉的情况下造成两个视网膜电活动的不平衡。治疗1周后,我们确定了初级视觉皮层中单个神经元的眼优势分布。在所有研究的小猫中,都发现了显著的眼优势转变。除了这种生理变化外,外侧膝状核也有解剖学变化,在接受来自更活跃眼输入的层中,细胞更大。我们的结果表明,有模式的视觉对于视觉皮层可塑性不是必需的,仅自发视网膜活动的不平衡就能产生显著的眼优势转变。

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