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Spectro-temporal modulation transfer function of single voxels in the human auditory cortex measured with high-resolution fMRI

机译:高分辨率功能磁共振成像测量人类听觉皮层中单个体素的光谱时间调制传递函数

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摘要

Are visual and auditory stimuli processed by similar mechanisms in the human cerebral cortex? Images can be thought of as light energy modulations over two spatial dimensions, and low-level visual areas analyze images by decomposition into spatial frequencies. Similarly, sounds are energy modulations over time and frequency, and they can be identified and discriminated by the content of such modulations. An obvious question is therefore whether human auditory areas, in direct analogy to visual areas, represent the spectro-temporal modulation content of acoustic stimuli. To answer this question, we measured spectro-temporal modulation transfer functions of single voxels in the human auditory cortex with functional magnetic resonance imaging. We presented dynamic ripples, complex broadband stimuli with a drifting sinusoidal spectral envelope. Dynamic ripples are the auditory equivalent of the gratings often used in studies of the visual system. We demonstrate selective tuning to combined spectro-temporal modulations in the primary and secondary auditory cortex. We describe several types of modulation transfer functions, extracting different spectro-temporal features, with a high degree of interaction between spectral and temporal parameters. The overall low-pass modulation rate preference of the cortex matches the modulation content of natural sounds. These results demonstrate that combined spectro-temporal modulations are represented in the human auditory cortex, and suggest that complex signals are decomposed and processed according to their modulation content, the same transformation used by the visual system.
机译:视觉和听觉刺激是否通过人类大脑皮层的类似机制处理?可以将图像视为在两个空间维度上的光能调制,而低层视觉区域则通过分解为空间频率来分析图像。同样,声音是随时间和频率变化的能量调制,可以通过这些调制的内容来识别和区分。因此,一个明显的问题是,人类听觉区域是否直接类似于视觉区域,代表了声刺激的频谱时间调制内容。为了回答这个问题,我们使用功能性磁共振成像技术测量了人类听觉皮层中单个体素的光谱时间调制传递函数。我们提出了动态波纹,复杂的宽带刺激以及正弦频谱包络漂移。动态波纹是视觉系统研究中经常使用的光栅的听觉等效物。我们演示了选择性调谐到主要和次要听觉皮层中组合的光谱时间调制。我们描述了几种类型的调制传递函数,提取了不同的频谱时间特征,并且在频谱和时间参数之间具有高度的交互作用。皮质的总体低通调制率首选项与自然声音的调制内容匹配。这些结果表明,组合的频谱时空调制在人类听觉皮层中表示出来,并表明复杂信号根据其调制内容进行分解和处理,与视觉系统使用的转换相同。

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