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成年人类中枢听觉系统的可塑性:来自迟发性严重单侧耳聋的证据。

Plasticity in the adult human central auditory system: evidence from late-onset profound unilateral deafness.

作者信息

Ponton C W, Vasama J P, Tremblay K, Khosla D, Kwong B, Don M

机构信息

Electrophysiology Laboratory, House Ear Institute, Los Angeles, CA 90057, USA.

出版信息

Hear Res. 2001 Apr;154(1-2):32-44. doi: 10.1016/s0378-5955(01)00214-3.

Abstract

Experience-related changes in central nervous system (CNS) activity have been observed in the adult brain of many mammalian species, including humans. In humans, late-onset profound unilateral deafness creates an opportunity to study plasticity in the adult CNS consequent to monaural auditory deprivation. CNS activity was assessed by measuring long-latency auditory evoked potentials (AEPs) recorded from teens and adults with late-onset (post-childhood) profound unilateral deafness. Compared to monaurally stimulated normal-hearing subjects, the AEPs recorded from central electrode sites located over auditory cortical areas showed significant increases in inter-hemispheric waveform cross-correlation coefficients, and in inter-hemispheric AEP peak amplitude correlations. These increases provide evidence of substantial changes from the normal pattern of asymmetrical (contralateral > ipsilateral amplitude) and asynchronous (contralateral earlier than ipsilateral) central auditory system activation in the normal-hearing population to a much more symmetrical and synchronous activation in the unilaterally deaf. These cross-sectional analyses of AEP data recorded from the unilaterally deaf also suggest that the changes in cortical activity occur gradually and continue for at least 2 years after the onset of hearing loss. Analyses of peak amplitude correlations suggest that the increased inter-hemispheric symmetry may be a consequence of changes in the generators producing the N (approximately 100 ms peak latency) potential. These experience-related changes in central auditory system activity following late-onset profound unilateral deafness thus provide evidence of the presence and the time course of auditory system plasticity in the adult brain.

摘要

在包括人类在内的许多哺乳动物的成年大脑中,都观察到了与经验相关的中枢神经系统(CNS)活动变化。在人类中,迟发性严重单侧耳聋为研究成年中枢神经系统因单耳听觉剥夺而产生的可塑性创造了机会。通过测量从患有迟发性(童年后)严重单侧耳聋的青少年和成年人记录的长潜伏期听觉诱发电位(AEP)来评估中枢神经系统活动。与单耳刺激的听力正常的受试者相比,从位于听觉皮层区域上方的中央电极部位记录的AEP显示,半球间波形互相关系数以及半球间AEP峰振幅相关性显著增加。这些增加提供了证据,表明从听力正常人群中不对称(对侧>同侧振幅)和异步(对侧早于同侧)的中枢听觉系统激活的正常模式,到单侧耳聋人群中更加对称和同步的激活,发生了实质性变化。对单侧耳聋患者记录的AEP数据进行的这些横断面分析还表明,皮层活动的变化是逐渐发生的,并且在听力丧失开始后至少持续2年。对峰振幅相关性的分析表明,半球间对称性增加可能是产生N(峰潜伏期约100毫秒)电位的发生器发生变化的结果。因此,迟发性严重单侧耳聋后中枢听觉系统活动的这些与经验相关的变化,为成年大脑中听觉系统可塑性的存在和时间进程提供了证据。

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