School of Psychology, University of Western Australia, Perth, Australia.
PLoS One. 2011 May 9;6(5):e18993. doi: 10.1371/journal.pone.0018993.
There is considerable uncertainty about the time-course of central auditory maturation. On some indices, children appear to have adult-like competence by school age, whereas for other measures development follows a protracted course.
We studied auditory development using auditory event-related potentials (ERPs) elicited by tones in 105 children on two occasions two years apart. Just over half of the children were 7 years initially and 9 years at follow-up, whereas the remainder were 9 years initially and 11 years at follow-up. We used conventional analysis of peaks in the auditory ERP, independent component analysis, and time-frequency analysis.
We demonstrated maturational changes in the auditory ERP between 7 and 11 years, both using conventional peak measurements, and time-frequency analysis. The developmental trajectory was different for temporal vs. fronto-central electrode sites. Temporal electrode sites showed strong lateralisation of responses and no increase of low-frequency phase-resetting with age, whereas responses recorded from fronto-central electrode sites were not lateralised and showed progressive change with age. Fronto-central vs. temporal electrode sites also mapped onto independent components with differently oriented dipole sources in auditory cortex. A global measure of waveform shape proved to be the most effective method for distinguishing age bands.
CONCLUSIONS/SIGNIFICANCE: The results supported the idea that different cortical regions mature at different rates. The ICC measure is proposed as the best measure of 'auditory ERP age'.
关于中枢听觉成熟的时间进程存在很大的不确定性。在某些指标上,儿童在学龄期似乎具有成人般的能力,而对于其他指标,其发展则是一个漫长的过程。
我们使用听觉事件相关电位(ERPs)研究了 105 名儿童的听觉发育情况,这些儿童在两年的时间里两次接受了音调刺激。其中超过一半的儿童最初是 7 岁,随访时是 9 岁,而其余的儿童最初是 9 岁,随访时是 11 岁。我们使用传统的听觉 ERP 峰值分析、独立成分分析和时频分析。
我们证明了听觉 ERP 在 7 至 11 岁之间的成熟变化,包括常规的峰值测量和时频分析。在颞部和额中央电极部位,发展轨迹不同。颞部电极部位的反应具有强烈的侧化性,且低频相位重置随年龄的增加而没有增加,而额中央电极部位的反应没有侧化,且随年龄的增加而逐渐变化。额中央和颞部电极部位也映射到听觉皮层中具有不同方向偶极子源的独立成分上。波形形状的全局度量被证明是区分年龄组的最有效方法。
结论/意义:结果支持了不同皮质区域以不同速度成熟的观点。ICC 测量被提议为“听觉 ERP 年龄”的最佳测量方法。