Colin C, Hoonhorst I, Markessis E, Radeau M, de Tourtchaninoff M, Foucher A, Collet G, Deltenre P
Unité de Recherches en Neurosciences Cognitives, Université Libre de Bruxelles (U.L.B.), Belgium.
Clin Neurophysiol. 2009 Jan;120(1):51-9. doi: 10.1016/j.clinph.2008.10.002. Epub 2008 Nov 22.
Verify and explore unexpected results suggesting an effect of deviance direction (shorter or longer deviants) on the amplitude of MMNs evoked by sound duration contrasts.
MMNs were recorded using the oddball paradigm on ten adults. Four standard stimulus durations (100, 150, 200 and 250ms) were used and deviants were 50% shorter or longer. Behavioral data (hit rates, d', and reaction times) were collected after the electrophysiological sessions.
MMNs were larger for short than for long deviants. There was no effect on MMN latencies. Hit rates and d' data were almost at ceiling level for all conditions even for the longest standard - long deviant combination in which the MMN was abolished.
We argue that the deviance direction effect on MMN amplitudes can be explained by the delay between the moment of deviance detection and the end of the deviance quantification process.
A major effect of deviance direction on amplitudes was confirmed. This effect, which was confined to electrophysiological data, is to be taken into account when using duration contrasts to probe the processing of temporal information.
验证并探究一些意外结果,这些结果表明偏差方向(较短或较长偏差)对声音时长对比诱发的失匹配负波(MMN)幅度有影响。
采用奇偶数范式对10名成年人记录MMN。使用了四种标准刺激时长(100、150、200和250毫秒),偏差刺激比标准刺激短50%或长50%。在电生理实验后收集行为数据(命中率、d'值和反应时间)。
短偏差刺激诱发的MMN比长偏差刺激诱发的MMN更大。对MMN潜伏期没有影响。即使在MMN消失的最长标准 - 长偏差刺激组合的所有条件下,命中率和d'值数据几乎都达到了上限水平。
我们认为,偏差方向对MMN幅度的影响可以通过偏差检测时刻与偏差量化过程结束之间的延迟来解释。
证实了偏差方向对幅度有主要影响。这种仅限于电生理数据的影响,在使用时长对比来探究时间信息处理时应予以考虑。