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Re-examining the evidence for a pitch-sensitive region: a human fMRI study using iterated ripple noise

机译:重新检查螺距敏感区域的证据:一项使用重复波纹噪声的人体功能磁共振成像研究

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摘要

Human neuroimaging studies have identified a region of auditory cortex, lateral Heschl’s gyrus (HG), that shows a greater response to iterated ripple noise (IRN) than to a Gaussian noise control. Based in part on results using IRN as a pitch-evoking stimulus, it has been argued that lateral HG is a general ‘‘pitch center.’’udHowever, IRN contains slowly varying spectrotemporal modulations, unrelated to pitch, that are not found in the control stimulus. Hence, it is possible that the cortical response to IRN is driven in part by these modulations. The current study reports the first attempt to control for these modulations. This was achieved using a novel type of stimulus that was generated by processing IRN to remove the fine temporal structure (and thus the pitch) but leaveudthe slowly varying modulations. This ‘‘no-pitch IRN’’ stimulus is referred to as IRNo. Results showed a widespread response to the spectrotemporal modulations across auditory cortex. When IRN was contrasted with IRNo rather than with Gaussian noise, the apparent effect of pitch was no longer statistically significant. Ourudfindings raise the possibility that a cortical response unrelated to pitch could previously have been errantly attributed to pitch coding.
机译:人体神经影像学研究已经确定了听觉皮层的外侧赫氏回(HG),该区域显示出对迭代波纹噪声(IRN)的响应要比对高斯噪声控制的响应大。部分基于使用IRN作为诱发音高的刺激的结果,有人认为横向HG是一般的“音高中心”。 ud但是,IRN包含与音高无关的缓慢变化的光谱时间调制,在控制刺激。因此,对IRN的皮质反应有可能部分由这些调制驱动。本研究报告了首次尝试控制这些调制。这是通过使用一种新型的刺激来实现的,该刺激是通过对IRN进行处理以去除精细的时间结构(从而消除音调)而产生的,而不会留下缓慢变化的调制。此“无间距IRN”刺激称为IRNo。结果表明,整个听觉皮层的光谱时间调制的广泛反应。当IRN与IRNo而不是高斯噪声进行对比时,音高的表观效果不再具有统计学意义。我们的发现增加了这样一种可能性,即与音调无关的皮层反应以前可能被错误地归因于音调编码。

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