Csépe V, Pantev C, Hoke M, Ross B, Hampson S
Institute of Experimental Audiology, Center of Biomagnetism, Münster, Germany.
Electroencephalogr Clin Neurophysiol. 1997 Jan;104(1):1-9. doi: 10.1016/s0168-5597(96)93703-x.
The mismatch field (MMF) to minor pitch changes in two experimental conditions was studied. Standard tones of 1000 Hz and deviant tones of 1050 Hz both of 50 ms duration were delivered in single tone condition. Paired tones of the same duration were used in the paired tone condition. The standard tone pair consisted of two 1000 Hz tones, whereas the deviant tone pair was composed of a 1000 Hz tone in the first position and a 1050 Hz tone in the second position with a silent interval of 15 ms between the two. Standards of 90% and deviants of 10% probability were presented in random order and with a randomized interstimulus interval between 600 and 900 ms. The source analysis showed a more lateral location for the MMF obtained in the paired tone condition (MMF.P) compared to the MMF elicited by the single deviants (MMF.S). The source location of both the MMF.P and MMF.S turned out to be significantly anterior relative to the sources of the M100. The increased stimulus repetition in the paired tone condition (two times more stimuli than in the single tone condition) lead to a strong suppression of the field amplitude and of the dipole moment of the M100, while this effect could not be seen for the MMF. The data demonstrate a fundamental difference between the processes reflected by the M100 and the MMF: while the M100 represents the processing of every individual tone, the MMF reflects the change detection of the paired stimuli as unitary events, forming a perceptual group. The different sources of the MMF.P and MMF.S also support an integrated processing of the paired stimuli.
研究了在两种实验条件下,失配场(MMF)对微小音调变化的反应。在单音条件下,呈现持续时间为50毫秒的1000赫兹标准音和1050赫兹的偏差音。在双音条件下,使用相同持续时间的双音对。标准双音对由两个1000赫兹的音调组成,而偏差双音对由第一个位置的1000赫兹音调和第二个位置的1050赫兹音调组成,两者之间有15毫秒的静音间隔。以随机顺序呈现90%概率的标准音和10%概率的偏差音,刺激间隔在600至900毫秒之间随机变化。源分析显示,与单偏差音引发的MMF(MMF.S)相比,双音条件下获得的MMF(MMF.P)位置更靠外侧。MMF.P和MMF.S的源位置相对于M100的源都明显靠前。双音条件下刺激重复次数的增加(刺激次数是单音条件下的两倍)导致M100的场幅度和偶极矩受到强烈抑制,而MMF未出现这种效应。数据表明M100和MMF所反映的过程存在根本差异:M100代表对每个单独音调的处理,而MMF反映作为一个整体事件的双刺激的变化检测,形成一个感知组。MMF.P和MMF.S的不同源也支持双刺激的整合处理。