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语音辨别过程中听觉掩蔽噪声对听觉皮层功能磁共振成像的影响。

Influence of acoustic masking noise in fMRI of the auditory cortex during phonetic discrimination.

作者信息

Shah N J, Jäncke L, Grosse-Ruyken M L, Müller-Gärtner H W

机构信息

Research Center Jülich, Institute of Medicine, Germany.

出版信息

J Magn Reson Imaging. 1999 Jan;9(1):19-25. doi: 10.1002/(sici)1522-2586(199901)9:1<19::aid-jmri3>3.0.co;2-k.

Abstract

The application of functional magnetic resonance imaging (fMRI) to study activation of auditory cortex suffers from one significant confounding factor, namely, that of the acoustic noise generated by the gradient system, which is an integral part of the imaging process. Earlier work has shown that it is indeed possible to distinguish cortical activation resulting from presentation of auditory stimuli despite the presence of background noise from the gradient system. The influence of acoustic noise from the gradient system of the MRI scanner on the blood oxygen level-dependent (BOLD) response during functional activation of the auditory cortex has been investigated in six healthy subjects with no hearing difficulties. Experiments were performed using gradient-echo echoplanar imaging (EPI) and a verbal, auditory discrimination paradigm, presented in a block-wise manner, in which carefully aligned consonant-vowel syllables were presented at a rate of 1 Hz. For each volunteer the experiment was repeated three times with all parameters fixed, except slice number, which was 4, 16, or 64. The positioning of the central four slices in each experiment was common. Thus, the fraction of TR during which the stimulus is on but no imaging is being performed, varies from almost zero, in the case of 64 slices, to over 8 seconds, in the case of four slices. Only the central four slices were of interest; additional slices simply generated acoustic noise and were discarded. During the four-slice experiment, all subjects showed a robust BOLD response in the superior temporal gyrus covering the primary and secondary auditory cortex. The spatial extent and the z-scores of the activated regions decreased with longer duration of gradient noise from the scanner. For a phonetic discrimination task, the results indicate that presentation of the stimulus during periods free from scanner noise leads to a more pronounced BOLD response.

摘要

应用功能磁共振成像(fMRI)来研究听觉皮层的激活存在一个重大的混杂因素,即梯度系统产生的声学噪声,而梯度系统是成像过程不可或缺的一部分。早期研究表明,尽管存在来自梯度系统的背景噪声,但确实有可能区分由听觉刺激呈现所导致的皮层激活。在六名无听力障碍的健康受试者中,研究了MRI扫描仪梯度系统的声学噪声对听觉皮层功能激活期间血氧水平依赖(BOLD)反应的影响。实验采用梯度回波平面成像(EPI)和言语听觉辨别范式,以分块方式呈现,其中精心排列的辅音 - 元音音节以1 Hz的速率呈现。对于每位志愿者,除切片数量分别为4、16或64外,所有参数固定,实验重复三次。每次实验中中央四片切片的定位是相同的。因此,刺激呈现但未进行成像的TR部分,在切片数为64片的情况下几乎为零,在切片数为4片的情况下超过8秒。仅中央四片切片是感兴趣的;额外的切片只会产生声学噪声并被舍弃。在四切片实验中,所有受试者在覆盖初级和次级听觉皮层的颞上回均表现出强烈的BOLD反应。激活区域的空间范围和z分数随着来自扫描仪的梯度噪声持续时间延长而减小。对于语音辨别任务,结果表明在无扫描仪噪声的时间段内呈现刺激会导致更明显的BOLD反应。

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