Gutschalk Alexander, Hämäläinen Matti S, Melcher Jennifer R
Department of Neurology, Ruprecht-Karls-Universität Heidelberg, 69120 Heidelberg, Germany.
J Neurophysiol. 2010 Apr;103(4):2015-26. doi: 10.1152/jn.01005.2009. Epub 2010 Jan 27.
Blood oxygen level dependent-functional magnetic resonance imaging (BOLD-fMRI) and magnetoencephalographic (MEG) signals are both coupled to postsynaptic potentials, although their relationship is incompletely understood. Here, the wide range of BOLD-fMRI and MEG responses produced by auditory cortex was exploited to better understand the BOLD-fMRI/MEG relationship. Measurements of BOLD and MEG responses were made in the same subjects using the same stimuli for both modalities. The stimuli, 24-s sequences of click trains, had duty cycles of 2.5, 25, 72, and 100%. For the 2.5% sequence, the BOLD response was elevated throughout the sequence, whereas for 100%, it peaked after sequence onset and offset and showed a diminished elevation in between. On the finer timescale of MEG, responses at 2.5% consisted of a complex of transients, including N(1)m, to each click train of the sequence, whereas for 100% the only transients occurred at sequence onset and offset between which there was a sustained elevation in the MEG signal (a sustained field). A model that separately estimated the contributions of transient and sustained MEG signals to the BOLD response best fit BOLD measurements when the transient contribution was weighted 8- to 10-fold more than the sustained one. The findings suggest that BOLD responses in the auditory cortex are tightly coupled to the neural activity underlying transient, not sustained, MEG signals.
血氧水平依赖性功能磁共振成像(BOLD-fMRI)信号和脑磁图(MEG)信号均与突触后电位相关联,尽管它们之间的关系尚未完全明确。在此,利用听觉皮层产生的广泛的BOLD-fMRI和MEG反应,以更好地理解BOLD-fMRI/MEG之间的关系。在同一受试者中,使用相同的刺激对两种模式进行BOLD和MEG反应的测量。刺激为24秒的点击序列,占空比分别为2.5%、25%、72%和100%。对于2.5%的序列,BOLD反应在整个序列中均升高,而对于100%的序列,它在序列开始和结束时达到峰值,且在两者之间升高幅度减小。在更精细的MEG时间尺度上,2.5%序列的反应由一系列瞬态组成,包括对序列中每个点击序列的N(1)m,而对于100%的序列,仅在序列开始和结束时出现瞬态,在这两者之间MEG信号持续升高(持续场)。当瞬态贡献的权重比持续贡献大8至10倍时,一个分别估计瞬态和持续MEG信号对BOLD反应贡献的模型最能拟合BOLD测量结果。这些发现表明,听觉皮层中的BOLD反应与瞬态而非持续MEG信号所对应的神经活动紧密相关。