Department of Biological and Medical Psychology, University of Bergen, Bergen, Norway.
Laterality. 2010 Nov;15(6):577-96. doi: 10.1080/13576500903045082. Epub 2009 Jul 22.
The present fMRI study attempts to identify brain areas that may underlie the effect of different background noises on functional brain asymmetry in a dichotic listening task. Previous studies have shown that the prominent right ear advantage in dichotic listening to consonant-vowel syllables is affected by background noise. To explore the underlying neuronal processes, haemodynamic brain responses using fMRI were recorded while participants performed the dichotic listening task in two different noisy backgrounds (conversational "babble" and traffic noise). The behavioural results showed a reduction of the right ear advantage in the background noise conditions, especially in the traffic noise condition. The behavioural results are discussed in terms of alertness-attentional mechanisms. The effects of background noise on brain activation involved significant activations in a speech-processing network. Specifically the changes in activations in the peri-Sylvian region of the superior temporal gyrus and in the temporo-parietal junction part in the left hemisphere, as well as in the superior temporal gyrus/sulcus area in the right hemisphere may mirror the effects of noise on behavioural performance. The effects of noise on brain activation are discussed with regard to pre-activation mechanisms.
本 fMRI 研究旨在确定不同背景噪声对双耳分听任务中功能性大脑不对称性影响的可能涉及的脑区。先前的研究表明,对辅音-元音音节的双耳分听中明显的右耳优势受到背景噪声的影响。为了探究潜在的神经过程,我们在参与者在两种不同的噪声背景(会话“嘈杂声”和交通噪声)下执行双耳分听任务时,记录了使用 fMRI 记录的血液动力学脑反应。行为结果表明,在背景噪声条件下,右耳优势降低,尤其是在交通噪声条件下。根据警觉-注意机制讨论了行为结果。背景噪声对大脑激活的影响涉及到言语处理网络中的显著激活。具体来说,左半球颞上回周区和颞顶联合区以及右半球颞上回/沟区的激活变化可能反映了噪声对行为表现的影响。讨论了噪声对大脑激活的影响,涉及到预激活机制。