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Sensitivity to temporal modulation rate and spectral bandwidth in the human auditory system: MEG evidence

机译:MEG证据对人类听觉系统中时间调制速率和频谱带宽的敏感性

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摘要

Slow acoustic modulations below 20 Hz, of varying bandwidths, are dominant components of speech and many other natural sounds. The dynamic neural representations of these modulations are difficult to study through noninvasive neural-recording methods, however, because of the omnipresent background of slow neural oscillations throughout the brain. We recorded the auditory steady-state responses (aSSR) to slow amplitude modulations (AM) from 14 human subjects using magnetoencephalography. The responses to five AM rates (1.5, 3.5, 7.5, 15.5, and 31.5 Hz) and four types of carrier (pure tone and 1/3-, 2-, and 5-octave pink noise) were investigated. The phase-locked aSSR was detected reliably in all conditions. The response power generally decreases with increasing modulation rate, and the response latency is between 100 and 150 ms for all but the highest rates. Response properties depend only weakly on the bandwidth. Analysis of the complex-valued aSSR magnetic fields in the Fourier domain reveals several neural sources with different response phases. These neural sources of the aSSR, when approximated by a single equivalent current dipole (ECD), are distinct from and medial to the ECD location of the N1m response. These results demonstrate that the globally synchronized activity in the human auditory cortex is phase locked to slow temporal modulations below 30 Hz, and the neural sensitivity decreases with an increasing AM rate, with relative insensitivity to bandwidth.
机译:带宽可变的20 Hz以下的慢声调制是语音和许多其他自然声音的主要成分。这些调制的动态神经表示很难通过非侵入性的神经记录方法来研究,但是,由于整个大脑中缓慢的神经振荡无所不在的背景,使得这种调制的动态神经表示难以研究。我们使用脑磁图记录了来自14个人的慢幅度调制(AM)的听觉稳态响应(aSSR)。研究了对五种AM速率(1.5、3.5、7.5、15.5和31.5 Hz)和四种类型的载波(纯音以及1 / 3、2和5倍频程粉红噪声)的响应。在所有条件下均可靠地检测到锁相aSSR。响应功率通常随调制速率的增加而降低,除最高速率外,所有响应速率都在100到150 ms之间。响应属性仅在很小程度上取决于带宽。对傅立叶域中的复值aSSR磁场的分析揭示了几种具有不同响应相位的神经源。当用单个等效电流偶极子(ECD)近似时,aSSR的这些神经源与N1m响应的ECD位置不同且在其中间。这些结果表明,人类听觉皮层中的全局同步活动被锁相到30 Hz以下的缓慢时间调制,并且神经敏感性随着AM速率的增加而降低,而对带宽则相对不敏感。

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