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猕猴视网膜损伤后缺乏长期的皮质重组。

Lack of long-term cortical reorganization after macaque retinal lesions.

作者信息

Smirnakis Stelios M, Brewer Alyssa A, Schmid Michael C, Tolias Andreas S, Schüz Almut, Augath Mark, Inhoffen Werner, Wandell Brian A, Logothetis Nikos K

机构信息

Max Planck Institute for Biological Cybernetics, Spemannstrasse 38, D-72076 Tübingen, Germany.

出版信息

Nature. 2005 May 19;435(7040):300-7. doi: 10.1038/nature03495.

Abstract

Several aspects of cortical organization are thought to remain plastic into adulthood, allowing cortical sensorimotor maps to be modified continuously by experience. This dynamic nature of cortical circuitry is important for learning, as well as for repair after injury to the nervous system. Electrophysiology studies suggest that adult macaque primary visual cortex (V1) undergoes large-scale reorganization within a few months after retinal lesioning, but this issue has not been conclusively settled. Here we applied the technique of functional magnetic resonance imaging (fMRI) to detect changes in the cortical topography of macaque area V1 after binocular retinal lesions. fMRI allows non-invasive, in vivo, long-term monitoring of cortical activity with a wide field of view, sampling signals from multiple neurons per unit cortical area. We show that, in contrast with previous studies, adult macaque V1 does not approach normal responsivity during 7.5 months of follow-up after retinal lesions, and its topography does not change. Electrophysiology experiments corroborated the fMRI results. This indicates that adult macaque V1 has limited potential for reorganization in the months following retinal injury.

摘要

皮质组织的几个方面被认为在成年期仍具有可塑性,使得皮质感觉运动图谱能够因经验而持续改变。皮质神经回路的这种动态特性对学习以及神经系统损伤后的修复都很重要。电生理学研究表明,成年猕猴的初级视觉皮层(V1)在视网膜损伤后的几个月内会发生大规模重组,但这个问题尚未得到最终解决。在此,我们应用功能磁共振成像(fMRI)技术来检测双眼视网膜损伤后猕猴V1区皮质地形图的变化。fMRI能够对皮质活动进行非侵入性、体内、长期监测,视野广阔,可从每单位皮质区域的多个神经元采集信号。我们发现,与之前的研究不同,成年猕猴V1在视网膜损伤后的7.5个月随访期内并未恢复到正常反应性,其地形图也没有改变。电生理学实验证实了fMRI的结果。这表明成年猕猴V1在视网膜损伤后的数月内重组潜力有限。

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