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The encoding of auditory objects in auditory cortex: Insights from magnetoencephalography

机译:听觉皮层中听觉对象的编码:磁脑图学的见解

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摘要

Auditory objects, like their visual counterparts, are perceptually defined constructs, but nevertheless must arise from underlying neural circuitry. Using magnetoencephalography (MEG) recordings of the neural responses of human subjects listening to complex auditory scenes, we review studies that demonstrate that auditory objects are indeed neurally represented in auditory cortex. The studies use neural responses obtained from different experiments in which subjects selectively listen to one of two competing auditory streams embedded in a variety of auditory scenes. The auditory streams overlap spatially and often spectrally. In particular, the studies demonstrate that selective attentional gain does not act globally on the entire auditory scene, but rather acts differentially on the separate auditory streams. This stream-based attentional gain is then used as a tool to individually analyze the different neural representations of the competing auditory streams.
机译:听觉对象,就像它们的视觉对应对象一样,是在感知上定义的构造,但是仍然必须来自潜在的神经回路。我们使用听觉复杂的听觉场景的人类受试者的神经反应的脑磁图(MEG)记录,我们审查了表明听觉对象确实在听觉皮层中被神经表示的研究。这项研究使用从不同实验中获得的神经反应,在实验中,受试者选择性地聆听嵌入在各种听觉场景中的两个竞争听觉流之一。听觉流在空间上并且通常在频谱上重叠。尤其是,研究表明,选择性注意增益不会在整个听觉场景中全局起作用,而是在单独的听觉流中有区别地起作用。然后,将这种基于流的注意力增益用作单独分析竞争听觉流的不同神经表示的工具。

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