Noguchi Yasuki, Fujiwara Mana, Hamano Saki
Department of Psychology, Graduate School of Humanities, Kobe University, 1-1 Rokkodai-cho, Nada, Kobe, 657-8501, Japan,
Brain Topogr. 2015 May;28(3):437-44. doi: 10.1007/s10548-014-0410-6. Epub 2014 Oct 26.
Discriminating a direction of frequency change is an important ability of the human auditory system, although temporal dynamics of neural activity underlying this discrimination remains unclear. In the present study, we recorded auditory-evoked potentials when human subjects explicitly judged a direction of a relative frequency change between two successive tones. A comparison of two types of trials with ascending and descending tone pairs revealed that neural activity discriminating a direction of frequency changes appeared as early as the P1 component of auditory-evoked potentials (latency 50 ms). Those differences between the ascending and descending trials were also observed in subsequent electroencephalographic components such as the N1 (100 ms) and P2 (200 ms). Furthermore, amplitudes of the P2 were significantly modulated by behavioral responses (upward/downward judgments) of subjects in the direction discrimination task, while those of the P1 were not. Those results indicate that, while the neural responses encoding a direction of frequency changes can be observed in an early component of electroencephalographic responses (50 ms after the change), the activity associated (correlated) with behavioral judgments evolves over time, being shaped in a later time period (around 200 ms) of the auditory processing.
辨别频率变化的方向是人类听觉系统的一项重要能力,尽管这种辨别背后的神经活动的时间动态仍不清楚。在本研究中,我们记录了人类受试者明确判断两个连续音调之间相对频率变化方向时的听觉诱发电位。对上升和下降音调对的两种试验类型进行比较发现,辨别频率变化方向的神经活动最早出现在听觉诱发电位的P1成分(潜伏期50毫秒)。在随后的脑电图成分如N1(100毫秒)和P2(200毫秒)中也观察到了上升和下降试验之间的这些差异。此外,在方向辨别任务中,P2的振幅受到受试者行为反应(向上/向下判断)的显著调节,而P1的振幅则没有。这些结果表明,虽然在脑电图反应的早期成分(变化后50毫秒)中可以观察到编码频率变化方向的神经反应,但与行为判断相关(相关)的活动会随着时间的推移而演变,在听觉处理的后期(约200毫秒)形成。