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通过神经生理学调谐的功能磁共振成像序列增强听觉系统中的血氧水平依赖(BOLD)反应。

Enhancing BOLD response in the auditory system by neurophysiologically tuned fMRI sequence.

作者信息

Seifritz Erich, Di Salle Francesco, Esposito Fabrizio, Herdener Marcus, Neuhoff John G, Scheffler Klaus

机构信息

University Hospital of Clinical Psychiatry, University of Bern, 3000 Bern, Switzerland.

出版信息

Neuroimage. 2006 Feb 1;29(3):1013-22. doi: 10.1016/j.neuroimage.2005.08.029. Epub 2005 Oct 25.

Abstract

Auditory neuroscience has not tapped fMRI's full potential because of acoustic scanner noise emitted by the gradient switches of conventional echoplanar fMRI sequences. The scanner noise is pulsed, and auditory cortex is particularly sensitive to pulsed sounds. Current fMRI approaches to avoid stimulus-noise interactions are temporally inefficient. Since the sustained BOLD response to pulsed sounds decreases with repetition rate and becomes minimal with unpulsed sounds, we developed an fMRI sequence emitting continuous rather than pulsed gradient sound by implementing a novel quasi-continuous gradient switch pattern. Compared to conventional fMRI, continuous-sound fMRI reduced auditory cortex BOLD baseline and increased BOLD amplitude with graded sound stimuli, short sound events, and sounds as complex as orchestra music with preserved temporal resolution. Response in subcortical auditory nuclei was enhanced, but not the response to light in visual cortex. Finally, tonotopic mapping using continuous-sound fMRI demonstrates that enhanced functional signal-to-noise in BOLD response translates into improved spatial separability of specific sound representations.

摘要

由于传统回波平面功能磁共振成像(fMRI)序列的梯度开关会发出声学扫描仪噪声,听觉神经科学尚未充分挖掘fMRI的全部潜力。扫描仪噪声是脉冲式的,而听觉皮层对脉冲声音特别敏感。当前用于避免刺激-噪声相互作用的fMRI方法在时间上效率低下。由于对脉冲声音的持续血氧水平依赖(BOLD)反应会随着重复率降低,而对非脉冲声音的反应最小,我们通过实施一种新型的准连续梯度开关模式,开发了一种发出连续而非脉冲梯度声音的fMRI序列。与传统fMRI相比,连续声音fMRI降低了听觉皮层的BOLD基线,并在分级声音刺激、短声音事件以及像管弦乐这样复杂的声音刺激下增加了BOLD幅度,同时保持了时间分辨率。皮层下听觉核团的反应增强了,但视觉皮层对光的反应没有增强。最后,使用连续声音fMRI进行的音调定位表明,BOLD反应中增强的功能信噪比转化为特定声音表征的空间可分离性提高。

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