声母音节诱发P1和N1中枢听觉反应的发育变化

Anu Sharma , Nina Kraus , Therese J. McGee , Trent G Nicol
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引用次数: 361

摘要

中枢听觉系统的正常成熟和功能影响言语感知和口语能力的发展。本研究通过听觉诱发电位(AEP)中P1/N1组分的年龄相关变化来检测中枢听觉通路的成熟。采用声母合成音节(ba)诱发86例6 ~ 15岁的正常儿童和10例正常成人的皮层aep。在AEP波形形态上观察到明显的年龄相关变化。成人反应在约100 ms时出现明显的负性(N1),在约50 ms时出现较小的P1分量。相比之下,儿童反应的特点是在大约100毫秒时有一个大的P1反应。这种波的潜伏期和振幅在大约20岁时显著下降。在儿童中,P1之后是大约200毫秒的广泛负性,我们称之为N1b。许多受试者(尤其是年龄较大的儿童)也表现出较早的消极情绪(N1a)。N1a和N1b潜伏期均随年龄的增长而显著降低。N1a和N1b的振幅没有显示出明显的年龄相关变化。所有孩子都有N1b;然而,N1a的发生频率随着年龄的增长而增加。数据表明,儿童P1系统地发展成成人反应;然而,N1a和N1b与成人N1的关系尚不清楚。这些结果表明,中枢听觉系统的成熟变化是复杂的,并且可以很好地延续到生命的第二个十年。
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Developmental changes in P1 and N1 central auditory responses elicited by consonant-vowel syllables

Normal maturation and functioning of the central auditory system affects the development of speech perception and oral language capabilities. This study examined maturation of central auditory pathways as reflected by age-related changes in the P1/N1 components of the auditory evoked potential (AEP). A synthesized consonant-vowel syllable (ba) was used to elicit cortical AEPs in 86 normal children ranging in age from 6 to 15 years and ten normal adults. Distinct age-related changes were observed in the morphology of the AEP waveform. The adult response consists of a prominent negativity (N1) at about 100 ms, preceded by a smaller P1 component at about 50 ms. In contrast, the child response is characterized by a large P1 response at about 100 ms. This wave decreases significantly in latency and amplitude up to about 20 years of age. In children, P1 is followed by a broad negativity at about 200 ms which we term N1b. Many subjects (especially older children) also show an earlier negativity (N1a). Both N1a and N1b latencies decrease significantly with age. Amplitudes of N1a and N1b do not show significant age-related changes. All children have the N1b; however, the frequency of occurrence of N1a increases with age. Data indicate that the child P1 develops systematically into the adult response; however, the relationship of N1a and N1b to the adult N1 is unclear. These results indicate that maturational changes in the central auditory system are complex and extend well into the second decade of life.

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