Novitski N, Alho K, Korzyukov O, Carlson S, Martinkauppi S, Escera C, Rinne T, Aronen H J, Näätänen R
Cognitive Brain Research Unit, Department of Psychology, University of Helsinki, Finland.
Neuroimage. 2001 Jul;14(1 Pt 1):244-51. doi: 10.1006/nimg.2001.0797.
The processing of sound changes and involuntary attention to them has been widely studied with event-related brain potentials (ERPs). Recently, functional magnetic resonance imaging (fMRI) has been applied to determine the neural mechanisms of involuntary attention and the sources of the corresponding ERP components. The gradient-coil switching noise from the MRI scanner, however, is a challenge to any experimental design using auditory stimuli. In the present study, the effects of MRI noise on ERPs associated with preattentive processing of sound changes and involuntary switching of attention to them were investigated. Auditory stimuli consisted of frequently presented "standard" sounds, infrequent, slightly higher "deviant" sounds, and infrequent natural "novel" sounds. The standard and deviant sounds were either sinusoidal tones or musical chords, in separate stimulus sequences. The mismatch negativity (MMN) ERP associated with preattentive sound change detection was elicited by the deviant and novel sounds and was not affected by the prerecorded background MRI noise (in comparison with the condition with no background noise). The succeeding positive P3a ERP responses associated with involuntary attention switching elicited by novel sounds were also not affected by the MRI noise. However, in ERPs to standard tones and chords, the P1, N1, and P2 peak latencies were significantly prolonged by the MRI noise. Moreover, the amplitude of the subsequent "exogenous" N2 to the standard sounds was significantly attenuated by the presence of MRI noise. In conclusion, the present results suggest that in fMRI the background noise does not interfere with the imaging of auditory processing related to involuntary attention.
声音变化的处理以及对其的非自愿注意已经通过事件相关脑电位(ERP)得到了广泛研究。最近,功能磁共振成像(fMRI)已被用于确定非自愿注意的神经机制以及相应ERP成分的来源。然而,MRI扫描仪的梯度线圈切换噪声对任何使用听觉刺激的实验设计都是一个挑战。在本研究中,研究了MRI噪声对与声音变化的前注意处理以及对其非自愿注意切换相关的ERP的影响。听觉刺激包括频繁出现的“标准”声音、不频繁出现的、略高的“偏差”声音以及不频繁出现的自然“新颖”声音。标准声音和偏差声音在单独的刺激序列中分别为正弦音调或和弦。与前注意声音变化检测相关的失匹配负波(MMN)ERP由偏差声音和新颖声音诱发,并且不受预先录制的背景MRI噪声的影响(与无背景噪声的情况相比)。由新颖声音诱发的与非自愿注意切换相关的后续正性P3a ERP反应也不受MRI噪声的影响。然而,在对标准音调和和弦的ERP中,P1、N1和P2峰潜伏期因MRI噪声而显著延长。此外,MRI噪声的存在显著衰减了对标准声音的后续“外源性”N2的幅度。总之,目前的结果表明,在fMRI中,背景噪声不会干扰与非自愿注意相关的听觉处理成像。