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人类复杂声音分析。

Human complex sound analysis.

作者信息

Griffiths T D

机构信息

Department of Clinical Neuroscience, Newcastle University Medical School, Framlington Place, Newcastle-upon-Tyne NE2 4HH, U.K.

出版信息

Clin Sci (Lond). 1999 Mar;96(3):231-4.

Abstract

The analysis of complex sound features is important for the perception of environmental sounds, speech and music, and may be abnormal in disorders such as specific language impairment in children, and in common adult lesions including stroke and multiple sclerosis. This work addresses the problem of how the human auditory system detects features in complex sound, and uses those features to perceive the auditory world. The work has been carried out using two independent means of testing the same hypotheses; detailed psychophysical studies of neurological patients with central lesions, and functional imaging using positron emission tomography and functional magnetic resonance imaging of normal subjects. The psychophysical and imaging studies have both examined which brain areas are concerned with the analysis of auditory space, and which are concerned with the analysis of timing information in the auditory system. This differs from many previous human auditory studies, which have concentrated on the analysis of sound frequency. The combined lesion and functional imaging approach has demonstrated analysis of the spatial property of sound movement within the right parietal lobe. The timing work has confirmed that the primary auditory cortex is active as a function of the time structure of sound, and therefore not only concerned with frequency representation of sounds.

摘要

对复杂声音特征的分析对于感知环境声音、语音和音乐很重要,在诸如儿童特定语言障碍等疾病以及包括中风和多发性硬化症在内的常见成人病变中可能会出现异常。这项工作解决了人类听觉系统如何检测复杂声音中的特征,并利用这些特征来感知听觉世界的问题。该工作通过两种独立的方法来验证相同的假设;对患有中枢病变的神经科患者进行详细的心理物理学研究,以及对正常受试者使用正电子发射断层扫描和功能磁共振成像进行功能成像。心理物理学和成像研究都考察了哪些脑区与听觉空间分析有关,以及哪些脑区与听觉系统中的时间信息分析有关。这与之前许多人类听觉研究不同,之前的研究主要集中在声音频率分析上。结合病变和功能成像的方法已经证明了右顶叶内对声音运动空间特性的分析。时间方面的研究证实,初级听觉皮层会随着声音的时间结构而活跃,因此不仅与声音的频率表征有关。

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