Kalyakin Igor, González Narciso, Kärkkäinen Tommi, Lyytinen Heikki
Department of Mathematical Information Technology, University of Jyväskylä, P.O. Box 35 (Agora), FI-40014 Jyväskylä, Finland.
J Neurosci Methods. 2008 Sep 30;174(2):301-12. doi: 10.1016/j.jneumeth.2008.07.012. Epub 2008 Jul 25.
We compared the efficiency of the independent component analysis (ICA) decomposition procedure against the difference wave (DW) and optimal digital filtering (ODF) procedures in the analysis of the mismatch negativity (MMN). The comparison was made in a group of 54 children aged 8-16 years. The MMN was elicited in a passive oddball protocol presenting uninterrupted auditory stimulation consisting of two frequent alternating tones (600 and 800 Hz) of 100 ms duration each. Infrequently, one of the 600 Hz tones was shortened to 50 or 30 ms. The event related potentials (ERPs) were decomposed into the MMN-like and non-MMN-like independent components (ICs) through the FastICA algorithm. The ICA decomposition procedure extracted a cleaner MMN compared to the ODF or DW procedures. It extracted the MMN, whose characteristics concurred with the substantial number of publications demonstrating a significantly larger peak amplitude and shorter latency of the MMN in response to the more deviant stimulus (30 ms) compared to the less deviant stimulus (50 ms). The MMN to these two deviant stimuli did not differ in the peak amplitude or latency when it was extracted through the other two procedures. The ICA decomposition and ODF procedures, similarly, significantly improved the single trial signal-to-noise ratio (SNR) of the MMN compared to the DW procedure. Due to this improvement, the proposed ICA decomposition procedure might allow shortening of the recording session and could be used to study the MMN in paradigms similar to this with small modifications.
我们在失配负波(MMN)分析中,将独立成分分析(ICA)分解程序的效率与差异波(DW)和最优数字滤波(ODF)程序进行了比较。该比较在一组54名8至16岁的儿童中进行。MMN是在一个被动的oddball范式中诱发的,该范式呈现由两个持续时间均为100毫秒的频繁交替音调(600赫兹和800赫兹)组成的不间断听觉刺激。偶尔,600赫兹的音调之一会缩短至50或30毫秒。通过FastICA算法将事件相关电位(ERP)分解为类似MMN和非类似MMN的独立成分(IC)。与ODF或DW程序相比,ICA分解程序提取出的MMN更纯净。它提取出的MMN,其特征与大量文献一致,这些文献表明,与较不偏离的刺激(50毫秒)相比,MMN对更偏离的刺激(30毫秒)的峰值幅度明显更大,潜伏期更短。当通过其他两种程序提取时,MMN对这两种偏离刺激的峰值幅度或潜伏期没有差异。同样,与DW程序相比,ICA分解和ODF程序显著提高了MMN的单次试验信噪比(SNR)。由于这一改进,所提出的ICA分解程序可能允许缩短记录时间,并可用于研究与此类似的范式中的MMN,只需进行小的修改。