首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Multisensory plasticity in congenitally deaf mice: how are cortical areas functionally specified?
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Multisensory plasticity in congenitally deaf mice: how are cortical areas functionally specified?

机译:先天性聋小鼠的多感觉可塑性:皮质区域的功能如何指定?

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摘要

The neocortex of congenitally deaf mice was examined using electrophysiological recording techniques combined with cortical myeloarchitecture. Our results indicate that relative activity patterns across sensory systems during development contribute to modality assignment of cortical fields as well as the size of cortical fields. In congenitally deaf mice, "auditory cortex" contained neurons that responded to somatosensory, visual, or both somatosensory and visual stimulation; the primary visual area contained a larger proportion of neurons that responded to somatosensory stimulation than in normal animals, and the primary visual area had significantly increased in size. Thus, cortical architecture and functional specification were de-correlated. When results are considered in the light of molecular studies and studies in which peripheral activity is altered in development, it becomes clear that similar types of changes to the neocortex, such as alterations in cortical field size, can be achieved in more than one way in the developing and evolving neocortex.
机译:先天性聋小鼠的新皮层使用电生理记录技术结合皮层骨髓构造进行检查。我们的结果表明,在发育过程中,整个感觉系统的相对活动模式有助于皮层视野的形态分配以及皮层视野的大小。在先天性聋的小鼠中,“听觉皮层”包含对体感,视觉或体感和视觉刺激均具有响应的神经元。与正常动物相比,主要视觉区域包含对躯体感觉刺激作出反应的神经元比例更大,并且主要视觉区域的大小显着增加。因此,皮质结构和功能规格是不相关的。当根据分子研究和研究在发展过程中改变周边活动的结果来考虑结果时,很明显,新皮层的相似类型的改变,例如皮层视野大小的改变,可以通过多种方式实现。不断发展的新皮质。

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