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Automatic Discrimination of Auditory Stimuli Perceived by the Human Brain

机译:人脑自动辨别听觉刺激

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Humans are able to perceive small difference of sound frequency but it is still unknown how the difference in frequency information is represented at the level of the primary sensory cortex. Indeed, analysis of fMRI imaging identified tonotopic maps through the auditory pathways to the primary sensory cortex. These maps are unfortunately too coarse to show ultra-fine discrimination. Then, the hypothesis is that this small frequency differences are recognised thanks to the information coming from a large set of auditory neurons. 'To investigate this possibility, a multi-voxel pattern discriminating analysis of the response of BOLD-fMRI in the bilateral auditory cortex to tonal stimuli with different shift in frequency was performed. Our results suggest that small shifts in the frequency are easily classified compared with big shifts and that multiple areas of the auditory cortex are involved in the tone recognition.
机译:人类能够感知声频的小差异,但仍然是如何在主感觉皮质的级别表示频率信息的差异。实际上,通过对初级感官皮质的听觉途径识别FMRI成像的分析。遗憾的是,这些地图太粗糙,以显示超细歧视。然后,假设是由于来自来自一大一组听觉神经元的信息,认可这种小频率差异。 “为了调查这种可能性,进行了在双边听觉皮层中对双侧听觉皮层的响应进行区分分析,以频率不同的频率达到不同偏移的色调刺激。我们的结果表明,与大班次相比,频率的小变化很容易归类,并且听觉皮质的多个区域参与音调识别。

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