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首页> 外文期刊>Journal of Cognitive Neuroscience >FM-selective Networks in Human Auditory Cortex Revealed Using fMRI and Multivariate Pattern Classification
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FM-selective Networks in Human Auditory Cortex Revealed Using fMRI and Multivariate Pattern Classification

机译:使用功能磁共振成像和多元模式分类揭示人类听觉皮层中的FM选择性网络

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Frequency modulation (FM) is an acoustic feature of nearly all complex sounds. Directional FM sweeps are especially pervasive in speech, music, animal vocalizations, and other natural sounds. Although the existence of FM-selective cells in the auditory cortex of animals has been documented, evidence in humans remains equivocal. Here we used multivariate pattern analysis to identify cortical selectivity for direction of a multitone FM sweep. This method distinguishes one pattern of neural activity from another within the same ROI, even when overall level of activity is similar, allowing for direct identification of FM-specialized networks. Standard contrast analysis showed that despite robust activity in auditory cortex, no clusters of activity were associated with up versus down sweeps. Multivariate pattern analysis classification, however, identified two brain regions as selective for FM direction, the right primary auditory cortex on the supratemporal plane and the left anterior region of the superior temporal gyrus. These findings are the first to directly demonstrate existence of FM direction selectivity in the human auditory cortex.
机译:调频(FM)是几乎所有复杂声音的声学特征。定向FM扫频在语音,音乐,动物发声和其他自然声音中尤其普遍。尽管已经证明了动物的听觉皮层中存在FM选择性细胞,但人类的证据仍然模棱两可。在这里,我们使用多变量模式分析来确定皮质对多音调频扫描方向的选择性。这种方法即使在总体活动水平相似的情况下,也可以在相同的ROI中将一种神经活动模式与另一种神经活动模式区分开,从而可以直接识别FM专用网络。标准对比分析表明,尽管听觉皮层活动活跃,但向上或向下扫动均未发现活动簇。然而,多变量模式分析分类确定了两个大脑区域对FM方向具有选择性,即上胸膜平面上的右主听觉皮层和颞上回的左前区域。这些发现是第一个直接证明人类听觉皮层中FM方向选择性的存在。

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