Sharma Anu, Gilley Phillip M, Dorman Michael F, Baldwin Robert
Brain and Behavior Laboratory, Dept. of Speech Language and Hearing Sciences, University of Colorado at Boulder, CO 80309-0409, USA.
Int J Audiol. 2007 Sep;46(9):494-9. doi: 10.1080/14992020701524836.
A basic finding in developmental neurophysiology is that some areas of the cortex cortical areas will reorganize following a period of stimulus deprivation. In this review, we discuss mainly electroencephalography (EEG) studies of normal and deprivation-induced abnormal development of the central auditory pathways in children and in animal models. We describe age cut-off for sensitive periods for central auditory development in congenitally deaf children who are fitted with a cochlear implant. We speculate on mechanisms of decoupling and reorganization which may underlie the end of the sensitive period. Finally, we describe new magentoencephalography (MEG) evidence of somatosensory cross-modal plasticity following long-term auditory deprivation.
发育神经生理学的一项基本发现是,皮层的某些区域(皮质区域)在一段刺激剥夺期后会发生重组。在本综述中,我们主要讨论儿童及动物模型中正常和剥夺诱导的中枢听觉通路异常发育的脑电图(EEG)研究。我们描述了接受人工耳蜗植入的先天性耳聋儿童中枢听觉发育敏感期的年龄界限。我们推测了敏感期结束可能潜在的去耦联和重组机制。最后,我们描述了长期听觉剥夺后体感跨模态可塑性的新的脑磁图(MEG)证据。