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Changes in BOLD transients with visual stimuli across 1-44 Hz.

机译:跨1-44 Hz的视觉刺激,BOLD瞬态变化。

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摘要

The dependency of positive BOLD (PBOLD) and post-stimulus undershoot (PSU) on the temporal frequency of visual stimulation was investigated using stimulation frequencies between 1 and 44 Hz. The PBOLD peak at 8 Hz in primary visual cortex was in line with previous neuroimaging studies. In addition to the 8 Hz peak, secondary peaks were observed for stimulation frequencies at 16 and 24 Hz. These additional local peaks were contrary to earlier fMRI studies which reported either a decrease or a plateau for frequencies above 8 Hz but in line with electrophysiological results obtained in animal local field potential (LFP) measurements and human steady-state visual evoked potential (SSVEP) recordings. Our results also indicate that the dependency of PSU amplitude on stimulus frequency deviates from that of PBOLD. Although their amplitudes were correlated within the 1-13 Hz range, they changed independently at stimulation frequencies between 13 and 44 Hz. The different dependency profiles of PBOLD and PSU to stimulation frequency points to different underlying neurovascular mechanisms responsible for the generation of these BOLD transients with regard to their relation to inhibitory and excitatory neuronal activity.
机译:使用1到44 Hz之间的刺激频率研究了正大胆(PBOLD)和刺激后下冲(PSU)对视觉刺激的时间频率的依赖性。原发性视觉皮层中8 Hz处的PBOLD峰与先前的神经影像学研究一致。除了8 Hz峰值外,还观察到16和24 Hz刺激频率的次要峰值。这些额外的局部峰与早期的fMRI研究相反,后者报道8 Hz以上的频率降低或趋于平稳,但与动物局部场电势(LFP)测量和人类稳态视觉诱发电势(SSVEP)获得的电生理结果一致录音。我们的结果还表明,PSU振幅对刺激频率的依赖性与PBOLD的依赖性不同。尽管它们的幅度在1-13 Hz范围内相关,但它们在13和44 Hz之间的刺激频率下独立变化。 PBOLD和PSU对刺激频率的不同依赖性特征,就其与抑制性和兴奋性神经元活动的关系而言,指向负责这些BOLD瞬变产生的不同潜在神经血管机制。

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