Center for Molecular & Behavioral Neuroscience, Rutgers University-Newark, 197 University Avenue, Newark, NJ, USA.
Cereb Cortex. 2019 Apr 1;29(4):1789-1801. doi: 10.1093/cercor/bhz001.
During early development, the infant brain is highly plastic and sensory experiences modulate emerging cortical maps, enhancing processing efficiency as infants set up key linguistic precursors. Early interactive acoustic experience (IAE) with spectrotemporally-modulated non-speech has been shown to facilitate optimal acoustic processing and generalizes to novel non-speech sounds at 7-months-of-age. Here we demonstrate that effects of non-speech IAE endure well beyond the immediate training period and robustly generalize to speech processing. Infants who received non-speech IAE differed at 9-months-of-age from both naïve controls and those with only passive acoustic exposure, demonstrating broad modulation of oscillatory dynamics. For the standard syllable, increased high-gamma (>70 Hz) power within auditory cortices indicates that IAE fosters native speech processing, facilitating establishment of phonemic representations. The higher left beta power seen may reflect increased linking of sensory information and corresponding articulatory patterns, while bilateral decreases in theta power suggest more mature automatized speech processing, as less neuronal resources were allocated to process syllabic information. For the deviant syllable, left-lateralized gamma (<70 Hz) enhancement suggests IAE promotes phonemic-related discrimination abilities. Theta power increases in right auditory cortex, known for favoring slow-rate decoding, implies IAE facilitates the more demanding processing of the sporadic deviant syllable.
在早期发育过程中,婴儿的大脑具有高度的可塑性,感官体验可以调节新兴的皮质图谱,提高处理效率,为婴儿建立关键的语言前体。早期具有频谱和时变调制的非言语的交互声体验(IAE)已被证明可以促进最佳的声音处理,并在 7 个月大时推广到新的非言语声音。在这里,我们证明非言语 IAE 的影响远远超出了即时训练期,并能强有力地推广到言语处理。与单纯接受被动声暴露的婴儿相比,接受非言语 IAE 的婴儿在 9 个月大时表现出了听觉皮层的广泛调制,其脑电活动的震荡动力增强。对于标准音节,听觉皮层中的高伽马(>70 Hz)功率增加表明 IAE 促进了母语的处理,有助于建立音位表示。看到的左β波功率较高可能反映了感觉信息和相应的发音模式之间的联系增加,而双侧θ波功率的降低表明更成熟的自动化言语处理,因为处理音节信息所需的神经元资源减少。对于异常音节,左伽马(<70 Hz)增强表明 IAE 促进了与音位相关的辨别能力。右听觉皮层的θ波功率增加,已知有利于较慢的解码速率,这意味着 IAE 促进了对零星异常音节的更具挑战性的处理。