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Stimulus Complexity and Categorical Effects in Human Auditory Cortex: An Activation Likelihood Estimation Meta-Analysis

机译:刺激的复杂性和人类听觉皮层的分类效果:激活可能性估计荟萃分析。

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摘要

Investigations of the functional organization of human auditory cortex typically examine responses to different sound categories. An alternative approach is to characterize sounds with respect to their amount of variation in the time and frequency domains (i.e., spectral and temporal complexity). Although the vast majority of published studies examine contrasts between discrete sound categories, an alternative complexity-based taxonomy can be evaluated through meta-analysis. In a quantitative meta-analysis of 58 auditory neuroimaging studies, we examined the evidence supporting current models of functional specialization for auditory processing using grouping criteria based on either categories or spectro-temporal complexity. Consistent with current models, analyses based on typical sound categories revealed hierarchical auditory organization and left-lateralized responses to speech sounds, with high speech sensitivity in the left anterior superior temporal cortex. Classification of contrasts based on spectro-temporal complexity, on the other hand, revealed a striking within-hemisphere dissociation in which caudo-lateral temporal regions in auditory cortex showed greater sensitivity to spectral changes, while anterior superior temporal cortical areas were more sensitive to temporal variation, consistent with recent findings in animal models. The meta-analysis thus suggests that spectro-temporal acoustic complexity represents a useful alternative taxonomy to investigate the functional organization of human auditory cortex.
机译:对人类听觉皮层功能组织的研究通常检查对不同声音类别的响应。另一种方法是根据声音在时域和频域中的变化量(即频谱和时间复杂度)来表征声音。尽管绝大多数已发表的研究都研究了离散声音类别之间的对比,但是可以通过荟萃分析来评估基于复杂性的替代分类法。在58项听觉神经影像学研究的定量荟萃分析中,我们检查了证据,这些证据支持使用基于类别或光谱时变复杂性的分组标准来支持听觉处理的功能专业化当前模型。与当前模型一致,基于典型声音类别的分析显示了听觉的层次结构和对语音的左偏响应,在左前颞颞皮层具有较高的语音敏感性。另一方面,基于光谱时间复杂性的对比分类显示了惊人的半球内解离,其中听觉皮层中的颞侧颞侧区域对光谱变化表现出更高的敏感性,而颞上皮前区对颞叶更敏感变化,与动物模型的最新发现一致。因此,荟萃分析表明,频谱时空声学复杂性是研究人类听觉皮层功能组织的一种有用的替代分类法。

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