Institute of Brain Science, National Yang-Ming University, Taipei, Taiwan.
Hear Res. 2010 Sep 1;268(1-2):260-70. doi: 10.1016/j.heares.2010.06.009. Epub 2010 Jun 18.
Detecting a change in sound duration is important in language processing. The cerebral reactivity to a duration deviant in oddball paradigm has been reflected as a mismatch negativity (MMN). This study aimed to see cerebral responses to several duration-varying sounds presented with equal probability. Magnetoencephalographic (MEG) and behavior responses to equi-probable sounds (25-50-75-100-125 ms or 50-75-100-125-150 ms tones) were recorded in 10 healthy adult volunteers. By subtracting the average of the responses to 4 longer tones from the response to the shortest tone, a clear deflection peaking at 100-200 ms from stimulus onset was identified. This activity was called as sub-standard MMNm, and its amplitude tended to increase with the increment of duration deviance within a stimulation paradigm. The source of sub-standard MMNm was localized in superior temporal area, with 5-6 mm more anterior to the generator of N100m response. Behavioral tests also showed best performance in the recognition of the shortest tone than longer tones. In conclusion, the preferential response to the shortest tone in an equiprobable paradigm suggests an asymmetrical processing in the auditory cortex for duration-varying sounds.
检测声音时长的变化在语言处理中很重要。在Oddball 范式中,对时长偏差的大脑反应表现为失匹配负波(MMN)。本研究旨在观察大脑对几个等概率呈现的时长变化声音的反应。10 名健康成年志愿者记录了等概率(25-50-75-100-125ms 或 50-75-100-125-150ms 音)声音的脑磁图(MEG)和行为反应。通过从最短音的反应中减去 4 个较长音的平均反应,在刺激开始后 100-200ms 处可以识别出一个清晰的偏转。这种活动被称为次标准 MMNm,其幅度随着刺激范式内时长偏差的增加而增加。次标准 MMNm 的源位于颞上区,比 N100m 反应发生器向前 5-6mm。行为测试也表明,在识别最短音时表现最佳,而不是识别较长音。总之,在等概率范式中对最短音的优先反应表明听觉皮层对时长变化声音的处理存在不对称性。