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听皮层的声音包络编码由θ至γ频段的神经磁响应揭示。

Sound envelope encoding in the auditory cortex revealed by neuromagnetic responses in the theta to gamma frequency bands.

机构信息

Rotman Research Institute, Baycrest Centre, Toronto, Ontario, Canada M6A 2E1.

出版信息

Brain Res. 2013 Apr 19;1506:64-75. doi: 10.1016/j.brainres.2013.01.047. Epub 2013 Feb 8.

DOI:10.1016/j.brainres.2013.01.047
PMID:23399682
Abstract

Amplitude fluctuations of natural sounds carry multiple types of information represented at different time scales, such as syllables and voice pitch in speech. However, it is not well understood how such amplitude fluctuations at different time scales are processed in the brain. In the present study we investigated the effect of the stimulus rate on the cortical evoked responses using magnetoencephalography (MEG). We used a two-tone complex sound, whose envelope fluctuated at the difference frequency and induced an acoustic beat sensation. When the beat rate was continuously swept between 3Hz and 60Hz, auditory evoked response showed distinct transient waves at slow rates, while at fast rates continuous sinusoidal oscillations similar to the auditory steady-state response (ASSR) were observed. We further derived temporal modulation transfer functions (TMTF) from amplitudes of the transient responses and from the ASSR. The results identified two critical rates of 12.5Hz and 25Hz, at which consecutive transient responses overlapped with each other. These stimulus rates roughly corresponded to the rates at which the perceptual quality of the sound envelope is known to change. Low rates (> 10Hz) are perceived as loudness fluctuation, medium rates as acoustical flutter, and rates above 25Hz as roughness. We conclude that these results reflect cortical processes that integrate successive acoustic events at different time scales for extracting complex features of natural sound.

摘要

自然声音的幅度波动携带多种类型的信息,这些信息在不同的时间尺度上表示,例如语音中的音节和音高。然而,目前尚不清楚大脑是如何处理这些不同时间尺度的幅度波动的。在本研究中,我们使用脑磁图(MEG)研究了刺激率对皮质诱发反应的影响。我们使用了一种双音复调声音,其包络在差频处波动,引起了声觉拍频感。当拍频率在 3Hz 至 60Hz 之间连续扫频时,听觉诱发反应在较慢的速率下表现出明显的瞬态波,而在较快的速率下则观察到类似于听觉稳态反应(ASSR)的连续正弦振荡。我们进一步从瞬态响应的幅度和 ASSR 中推导出了时间调制传递函数(TMTF)。结果确定了两个关键速率,即 12.5Hz 和 25Hz,在这些速率下,连续的瞬态响应相互重叠。这些刺激速率大致对应于已知声音包络感知质量变化的速率。较低的速率(>10Hz)被感知为响度波动,中等速率为声学颤动,而高于 25Hz 的速率则为粗糙度。我们得出的结论是,这些结果反映了皮质过程,这些过程整合了不同时间尺度上的连续声事件,以提取自然声音的复杂特征。

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