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视觉系统中的成年可塑性。

Adult plasticity in the visual system.

作者信息

Chino Y M

机构信息

College of Optometry, University of Houston, TX 77204-6052, USA.

出版信息

Can J Physiol Pharmacol. 1995 Sep;73(9):1323-38. doi: 10.1139/y95-187.

Abstract

When visual cortical neurons in adult mammals are deprived of their normal afferent input from retinae, they are capable of acquiring new receptive fields by modifying the effectiveness of existing intrinsic connections, a basis for topographic map reorganization. To gain insights into the underlying mechanisms and functional significance of this adult plasticity, we measured the spatial limits and time course of retinotopic map reorganization. We also determined whether reactivated neurons exhibit normal receptive field properties. We found that virtually all units in the denervated zone of cortex acquired new receptive fields (i.e., there were no silent areas in the cortex) and map reorganization can take place within hours of deafferentation provided that retinal lesions are relatively small (< 5 degrees). Furthermore, after long periods of recovery, reactivated units exhibited strikingly normal selectivity to stimulus orientation, direction of movement, and spatial frequency if relatively high contrast stimuli were used. However, responsiveness of these neurons, measured in terms of the maximum response amplitude and the contrast threshold, was clearly reduced. Thus, contrary to traditional belief, the adult visual cortex is capable of exhibiting considerable plasticity, and reactivated neurons are capable of contributing to an analysis of a visual scene.

摘要

当成年哺乳动物的视皮层神经元被剥夺来自视网膜的正常传入输入时,它们能够通过改变现有内在连接的有效性来获得新的感受野,这是地形图重组的基础。为了深入了解这种成年可塑性的潜在机制和功能意义,我们测量了视网膜拓扑图重组的空间范围和时间进程。我们还确定了重新激活的神经元是否表现出正常的感受野特性。我们发现,几乎皮层去神经支配区域内的所有神经元都获得了新的感受野(即皮层中没有静区),并且只要视网膜损伤相对较小(<5度),在去传入神经后的数小时内就可以发生图谱重组。此外,经过长时间恢复后,如果使用相对高对比度的刺激,重新激活的神经元对刺激方向、运动方向和空间频率表现出惊人的正常选择性。然而,根据最大反应幅度和对比度阈值衡量,这些神经元的反应性明显降低。因此,与传统观念相反,成年视皮层能够表现出相当大的可塑性,并且重新激活的神经元能够参与视觉场景的分析。

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