Age-related tonotopic map plasticity in the central auditory pathways

R. Harrison
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引用次数: 33

Abstract

Inner hair cell lesions to the basal turn of the cochlea effectively result in a partial deafferentation of the auditory system. At the level of the midbrain (central nucleus of inferior colliculus) cochleotopic maps, based on single unit response characteristic frequency, are changed after such deafferentation. When a cochlear lesion is induced in a neonatal animal (chinchilla), the reorganization of the frequency map is more extensive than that resulting from similar deafferentation in the adult subject. Neonatal cochlear lesions result in an over-representation of sound frequencies corresponding to the border of the cochlear lesion, while similar lesions in the adult do not. The results suggest that significant plasticity exists in the auditory midbrain during early post natal development (even in a precocious species, such as chinchilla); however, this plasticity is largely lost in the mature animal. A conceptual model for the frequency map re-wiring is presented.
中枢性听觉通路中与年龄相关的声调图可塑性
耳蜗基底部的内毛细胞病变有效地导致听觉系统的部分传入功能丧失。在中脑(下丘中央核)水平,基于单单位响应特征频率的耳蜗位图在这种脱传入后发生改变。当在新生动物(栗鼠)中诱导耳蜗损伤时,频率图的重组比在成年受试者中由类似的神经分化引起的重组更广泛。新生儿耳蜗病变导致与耳蜗病变边界对应的声音频率的过度表示,而成人的类似病变则不会。结果表明,在出生后发育早期,听觉中脑存在显著的可塑性(即使在早熟物种中,如栗鼠);然而,在成熟的动物中,这种可塑性在很大程度上消失了。提出了频率图重布线的概念模型。
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