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人类听觉皮层的功能图谱:声学特征与注意力的影响

Functional maps of human auditory cortex: effects of acoustic features and attention.

作者信息

Woods David L, Stecker G Christopher, Rinne Teemu, Herron Timothy J, Cate Anthony D, Yund E William, Liao Isaac, Kang Xiaojian

机构信息

Human Cognitive Neurophysiology Laboratory, VANCHCS, Martinez, California, United States of America.

出版信息

PLoS One. 2009;4(4):e5183. doi: 10.1371/journal.pone.0005183. Epub 2009 Apr 13.

Abstract

BACKGROUND

While human auditory cortex is known to contain tonotopically organized auditory cortical fields (ACFs), little is known about how processing in these fields is modulated by other acoustic features or by attention.

METHODOLOGY/PRINCIPAL FINDINGS: We used functional magnetic resonance imaging (fMRI) and population-based cortical surface analysis to characterize the tonotopic organization of human auditory cortex and analyze the influence of tone intensity, ear of delivery, scanner background noise, and intermodal selective attention on auditory cortex activations. Medial auditory cortex surrounding Heschl's gyrus showed large sensory (unattended) activations with two mirror-symmetric tonotopic fields similar to those observed in non-human primates. Sensory responses in medial regions had symmetrical distributions with respect to the left and right hemispheres, were enlarged for tones of increased intensity, and were enhanced when sparse image acquisition reduced scanner acoustic noise. Spatial distribution analysis suggested that changes in tone intensity shifted activation within isofrequency bands. Activations to monaural tones were enhanced over the hemisphere contralateral to stimulation, where they produced activations similar to those produced by binaural sounds. Lateral regions of auditory cortex showed small sensory responses that were larger in the right than left hemisphere, lacked tonotopic organization, and were uninfluenced by acoustic parameters. Sensory responses in both medial and lateral auditory cortex decreased in magnitude throughout stimulus blocks. Attention-related modulations (ARMs) were larger in lateral than medial regions of auditory cortex and appeared to arise primarily in belt and parabelt auditory fields. ARMs lacked tonotopic organization, were unaffected by acoustic parameters, and had distributions that were distinct from those of sensory responses. Unlike the gradual adaptation seen for sensory responses, ARMs increased in amplitude throughout stimulus blocks.

CONCLUSIONS/SIGNIFICANCE: The results are consistent with the view that medial regions of human auditory cortex contain tonotopically organized core and belt fields that map the basic acoustic features of sounds while surrounding higher-order parabelt regions are tuned to more abstract stimulus attributes. Intermodal selective attention enhances processing in neuronal populations that are partially distinct from those activated by unattended stimuli.

摘要

背景

虽然已知人类听觉皮层包含按音频拓扑组织的听觉皮层区(ACF),但对于这些区域的处理过程如何受到其他声学特征或注意力的调节却知之甚少。

方法/主要发现:我们使用功能磁共振成像(fMRI)和基于群体的皮层表面分析来表征人类听觉皮层的音频拓扑组织,并分析音调强度、传递耳、扫描仪背景噪声以及多模态选择性注意力对听觉皮层激活的影响。围绕颞横回的内侧听觉皮层显示出较大的感觉(未被注意)激活,具有两个镜像对称的音频拓扑区域,类似于在非人灵长类动物中观察到的区域。内侧区域的感觉反应在左右半球具有对称分布,随着音调强度增加而扩大,并且当稀疏图像采集降低扫描仪声学噪声时增强。空间分布分析表明,音调强度的变化会在等频带内移动激活。对单耳音调的激活在刺激对侧的半球上增强,在那里它们产生与双耳声音产生的激活相似的激活。听觉皮层的外侧区域显示出较小的感觉反应,右侧比左侧半球更大,缺乏音频拓扑组织,并且不受声学参数影响。内侧和外侧听觉皮层中的感觉反应在整个刺激块组组块中幅度都降低。听觉皮层外侧区域的注意力相关调制(ARM)比内侧区域更大,并且似乎主要出现在带状和旁带状听觉区域。ARM缺乏音频拓扑组织,不受声学参数影响,并且具有与感觉反应不同的分布。与感觉反应中看到的逐渐适应不同,ARM在整个刺激块中幅度增加。

结论/意义:结果与以下观点一致,即人类听觉皮层的内侧区域包含按音频拓扑组织的核心和带状区域,这些区域映射声音的基本声学特征,而周围的高阶旁带状区域则调整到更抽象的刺激属性。多模态选择性注意力增强了神经元群体中的处理过程,这些神经元群体与未被注意的刺激激活的群体部分不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ae1/2664477/7a0e21f633c5/pone.0005183.g001.jpg

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