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一项关于言语感知中信息性和能量性掩蔽效应神经基础的正电子发射断层扫描研究。

A positron emission tomography study of the neural basis of informational and energetic masking effects in speech perception.

作者信息

Scott Sophie K, Rosen Stuart, Wickham Lindsay, Wise Richard J S

机构信息

Department of Psychology, University College London, London WC1E 6BT, Untited Kingdom.

出版信息

J Acoust Soc Am. 2004 Feb;115(2):813-21. doi: 10.1121/1.1639336.

Abstract

Positron emission tomography (PET) was used to investigate the neural basis of the comprehension of speech in unmodulated noise ("energetic" masking, dominated by effects at the auditory periphery), and when presented with another speaker ("informational" masking, dominated by more central effects). Each type of signal was presented at four different signal-to-noise ratios (SNRs) (+3, 0, -3, -6 dB for the speech-in-speech, +6, +3, 0, -3 dB for the speech-in-noise), with listeners instructed to listen for meaning to the target speaker. Consistent with behavioral studies, there was SNR-dependent activation associated with the comprehension of speech in noise, with no SNR-dependent activity for the comprehension of speech-in-speech (at low or negative SNRs). There was, in addition, activation in bilateral superior temporal gyri which was associated with the informational masking condition. The extent to which this activation of classical "speech" areas of the temporal lobes might delineate the neural basis of the informational masking is considered, as is the relationship of these findings to the interfering effects of unattended speech and sound on more explicit working memory tasks. This study is a novel demonstration of candidate neural systems involved in the perception of speech in noisy environments, and of the processing of multiple speakers in the dorso-lateral temporal lobes.

摘要

正电子发射断层扫描(PET)被用于研究在无调制噪声(“能量型”掩蔽,主要由听觉外周效应主导)以及存在另一个说话者(“信息型”掩蔽,主要由更中枢的效应主导)的情况下言语理解的神经基础。每种类型的信号都以四种不同的信噪比(SNR)呈现(言语中言语条件下为+3、0、-3、-6 dB,噪声中言语条件下为+6、+3、0、-3 dB),并要求听众留意目标说话者的话语含义。与行为学研究一致,噪声中言语理解存在依赖信噪比的激活,而言语中言语理解(在低信噪比或负信噪比时)不存在依赖信噪比的活动。此外,双侧颞上回存在激活,这与信息型掩蔽条件相关。我们考虑了颞叶经典“言语”区域的这种激活在多大程度上可能描绘出信息型掩蔽的神经基础,以及这些发现与未被关注的言语和声音对更明确的工作记忆任务的干扰效应之间的关系。这项研究首次展示了参与嘈杂环境中言语感知以及背外侧颞叶中多个说话者处理的候选神经系统。

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