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感受器器官损伤会导致皮质周围抑制丧失,且不存在地形图可塑性。

Receptor organ damage causes loss of cortical surround inhibition without topographic map plasticity.

作者信息

Rajan R

机构信息

Department of Physiology, Monash University, Clayton Vic., Australia.

出版信息

Nat Neurosci. 1998 Jun;1(2):138-43. doi: 10.1038/388.

Abstract

Following restricted peripheral damage, reorganization of adult sensory or motor cortex is believed to depend on loss of surround inhibition, which unmasks latent inputs to the deprived cortex. Here I demonstrate that limited damage to auditory receptors causes loss of functional surround inhibition in the cortex, unmasking of latent inputs and significantly altered neural coding. However, these changes do not lead to plasticity of the cortical map, defined by the most sensitive input from the receptor surface to each cortical location. Thus, in sensory cortex, loss of surround inhibition as a consequence of receptor organ damage does not necessarily result in cortical map plasticity.

摘要

在周围神经损伤受限后,成体感觉或运动皮层的重组被认为依赖于周围抑制的丧失,这使得向被剥夺皮层的潜在输入得以暴露。在此我证明,听觉感受器的有限损伤会导致皮层中功能性周围抑制的丧失、潜在输入的暴露以及神经编码的显著改变。然而,这些变化并不会导致皮层图谱的可塑性,皮层图谱是由感受器表面到每个皮层位置的最敏感输入所定义的。因此,在感觉皮层中,感受器器官损伤导致的周围抑制丧失并不一定会导致皮层图谱的可塑性。

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