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功能性近红外光谱测量不同强度空间呈现纯音刺激的皮质激活模式。

Cortical activation patterns to spatially presented pure tone stimuli with different intensities measured by functional near-infrared spectroscopy.

机构信息

Department of Otolaryngology, Hannover Medical School, Hannover, 30625, Germany.

Cluster of Excellence "Hearing4all", Hannover Medical School, Hannover, 30625, Germany.

出版信息

Hum Brain Mapp. 2018 Jul;39(7):2710-2724. doi: 10.1002/hbm.24034. Epub 2018 Mar 8.

Abstract

Functional near-infrared spectroscopy (fNIRS) is an emerging technique for the assessment of functional activity of the cerebral cortex. Recently fNIRS was also envisaged as a novel neuroimaging approach for measuring the auditory cortex activity in the field of in auditory diagnostics. This study aimed to investigate differences in brain activity related to spatially presented sounds with different intensities in 10 subjects by means of functional near-infrared spectroscopy (fNIRS). We found pronounced cortical activation patterns in the temporal and frontal regions of both hemispheres. In contrast to these activation patterns, we found deactivation patterns in central and parietal regions of both hemispheres. Furthermore our results showed an influence of spatial presentation and intensity of the presented sounds on brain activity in related regions of interest. These findings are in line with previous fMRI studies which also reported systematic changes of activation in temporal and frontal areas with increasing sound intensity. Although clear evidence for contralaterality effects and hemispheric asymmetries were absent in the group data, these effects were partially visible on the single subject level. Concluding, fNIRS is sensitive enough to capture differences in brain responses during the spatial presentation of sounds with different intensities in several cortical regions. Our results may serve as a valuable contribution for further basic research and the future use of fNIRS in the area of central auditory diagnostics.

摘要

功能性近红外光谱(fNIRS)是一种新兴的评估大脑皮层功能活动的技术。最近,fNIRS 也被设想为一种新的神经影像学方法,用于在听觉诊断领域测量听觉皮层的活动。本研究旨在通过功能性近红外光谱(fNIRS)研究 10 名受试者对具有不同强度的空间呈现声音的大脑活动差异。我们在两个半球的颞叶和额叶区域发现了明显的皮质激活模式。与这些激活模式相反,我们在两个半球的中央和顶叶区域发现了去激活模式。此外,我们的结果表明,空间呈现和呈现声音的强度对相关感兴趣区域的大脑活动有影响。这些发现与之前的 fMRI 研究一致,该研究也报告了随着声音强度的增加,颞叶和额叶区域的激活会发生系统性变化。尽管在组数据中没有明显的对侧效应和半球不对称性的证据,但这些效应在单个受试者水平上部分可见。总之,fNIRS 足够灵敏,可以在几个皮质区域中捕捉到不同强度的空间呈现声音时大脑反应的差异。我们的结果可以为进一步的基础研究和未来在中枢听觉诊断领域使用 fNIRS 提供有价值的贡献。

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