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与声音强度和响度相关的功能磁共振成像激活

fMRI activation in relation to sound intensity and loudness.

作者信息

Langers Dave R M, van Dijk Pim, Schoenmaker Esther S, Backes Walter H

机构信息

Department of Otorhinolaryngology, University Medical Center Groningen, P.O. Box 30001, 9700 RB Groningen, The Netherlands.

出版信息

Neuroimage. 2007 Apr 1;35(2):709-18. doi: 10.1016/j.neuroimage.2006.12.013. Epub 2006 Dec 19.

Abstract

The aim of this fMRI study was to relate cortical fMRI responses to both physical and perceptual sound level characteristics. Besides subjects with normal hearing, subjects with high-frequency sensorineural hearing loss were included, as distortion of loudness perception is a characteristic of such impairment. Cortical responses in both subject groups were analyzed as a function of the physical intensity and the perceived loudness of low and high-frequency stimuli. For the low-frequency stimuli, intensity levels ranged from 0 to 70 dB SL; for the high-frequency stimuli, intensity levels were set such that the corresponding loudness levels matched those of the low-frequency stimuli. Responses were found to increase significantly and predominantly linearly with intensity level and with loudness level. Response saturation at the highest levels was not apparent, but activation exhibited a steep rise between 0 and 10 dB for the low-frequency stimuli. The activation in the subjects with hearing loss increased significantly more strongly with stimulus intensity than that in the normally hearing subjects. This reflects loudness recruitment, characterized by a disproportionate increase in loudness with stimulus intensity. In contrast, the rate of activation increase as a function of loudness level did not differ between both subject groups. This demonstrates that fMRI activation at the level of the auditory cortex is more closely related to the percept of a stimulus (i.e., loudness) rather than to its physical characteristics (i.e., intensity).

摘要

这项功能磁共振成像(fMRI)研究的目的是将皮质fMRI反应与声音的物理和感知水平特征联系起来。除了听力正常的受试者外,还纳入了高频感音神经性听力损失的受试者,因为响度感知失真为此类损伤的一个特征。对两组受试者的皮质反应进行了分析,分析内容为低频和高频刺激的物理强度及感知响度的函数。对于低频刺激,强度水平范围为0至70 dB SL;对于高频刺激,强度水平的设置使得相应的响度水平与低频刺激的响度水平相匹配。结果发现,反应随强度水平和响度水平显著增加,且主要呈线性增加。在最高水平时未出现反应饱和,但对于低频刺激,激活在0至10 dB之间呈现出急剧上升。与听力正常的受试者相比,听力损失受试者的激活随刺激强度的增加更为显著。这反映了响度重振,其特征是响度随刺激强度不成比例地增加。相比之下,两组受试者之间激活增加率作为响度水平的函数并无差异。这表明,听觉皮质水平的fMRI激活与刺激的感知(即响度)而非其物理特征(即强度)更为密切相关。

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