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连续掩蔽噪声对人类音调诱发磁场的影响。

Effects of continuous masking noise on tone-evoked magnetic fields in humans.

作者信息

Morita Takeshi, Fujiki Nobuya, Nagamine Takashi, Hiraumi Harukazu, Naito Yasushi, Shibasaki Hiroshi, Ito Juichi

机构信息

Department of Otolaryngology-Head and Neck Surgery, Graduate School of Medicine, Kyoto University, 606-8507 Kyoto, Japan.

出版信息

Brain Res. 2006 May 4;1087(1):151-8. doi: 10.1016/j.brainres.2006.03.004. Epub 2006 Apr 13.

Abstract

Two different types of steep loudness growth have been reported in detail in psychoacoustical studies but have rarely been evaluated by objective methods in humans. One occurs in inner-ear hearing-impaired patients and is known as loudness recruitment. Another similar phenomenon is observed in healthy subjects with concurrent presence of background noise. Concerning the first type, our previous study using magnetoencephalography (MEG) showed that enhancement of the dipole moment of N100m with increase in stimulus intensity was greater in patients than in normal individuals. However, it is unclear whether the enhancement of activity in auditory cortex will also be detected with background noise in healthy subjects. To elucidate the effects of continuous background noise on tone-evoked cortical activity, we measured auditory-evoked magnetic fields (AEFs) from 7 normal-hearing subjects in two different conditions, with and without 55 dB SPL continuous masking white noise (noise/quiet conditions). The stimuli were 200 ms 1-kHz tones delivered monaurally and randomly at 4 different intensities (40-70 dB SPL) with constant 1-s interstimulus intervals. The N100m increased in amplitude and decreased in latency as a function of stimulus intensity in both noise and quiet conditions. The dipole moment of N100m was significantly smaller in the noise than in the quiet condition, showing that continuous background noise suppresses the strength of tone-evoked cortical responses. The mechanisms underlying these two psychoacoustically similar phenomena of rapid loudness growth thus differ.

摘要

心理声学研究已经详细报道了两种不同类型的陡峭响度增长,但很少通过客观方法在人类中进行评估。一种发生在内耳听力受损患者中,被称为响度重振。另一种类似现象在同时存在背景噪声的健康受试者中观察到。关于第一种类型,我们之前使用脑磁图(MEG)的研究表明,随着刺激强度的增加,N100m偶极矩的增强在患者中比在正常个体中更大。然而,尚不清楚在健康受试者中,背景噪声是否也会检测到听觉皮层活动的增强。为了阐明连续背景噪声对纯音诱发皮层活动的影响,我们在两种不同条件下测量了7名听力正常受试者的听觉诱发磁场(AEF),即有和没有55 dB SPL连续掩蔽白噪声(噪声/安静条件)。刺激为200 ms的单耳1 kHz纯音,以4种不同强度(40 - 70 dB SPL)随机呈现,刺激间隔恒定为1 s。在噪声和安静条件下N100m的振幅均随刺激强度增加而增大,潜伏期缩短。N100m的偶极矩在噪声条件下明显小于安静条件,表明连续背景噪声会抑制纯音诱发皮层反应的强度。因此,这两种心理声学上类似的快速响度增长现象的潜在机制有所不同。

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