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音高识别中的数值方面:一项 fMRI 研究。

Numeric aspects in pitch identification: an fMRI study.

机构信息

Department of Psychiatry, Psychotherapy and Psychosomatics, RWTH Aachen University, Aachen, Germany.

出版信息

BMC Neurosci. 2011 Mar 9;12:26. doi: 10.1186/1471-2202-12-26.

Abstract

BACKGROUND

Pitch identification had yielded unique response patterns compared to other auditory skills. Selecting one out of numerous pitches distinguished this task from detecting a pitch ascent. Encoding of numerous stimuli had activated the intraparietal sulcus in the visual domain. Therefore, we hypothesized that numerosity encoding during pitch identification activates the intraparietal sulcus as well.

METHODS

To assess pitch identification, the participants had to recognize a single pitch from a set of four possible pitches in each trial. Functional magnetic resonance imaging (fMRI) disentangled neural activation during this four-pitch-choice task from activation during pitch contour perception, tone localization, and pitch discrimination.

RESULTS

Pitch identification induced bilateral activation in the intraparietal sulcus compared to pitch discrimination. Correct responses in pitch identification correlated with activation in the left intraparietal sulcus. Pitch contour perception activated the superior temporal gyrus conceivably due to the larger range of presented tones. The differentiation between pitch identification and tone localization failed. Activation in an ACC-hippocampus network distinguished pitch discrimination from pitch identification.

CONCLUSION

Pitch identification is distinguishable from pitch discrimination on the base of activation in the IPS. IPS activity during pitch identification may be the auditory counterpart of numerosity encoding in the visual domain.

摘要

背景

与其他听觉技能相比,音高识别产生了独特的反应模式。从众多音高中选择一个音高不同于检测音高上升。在视觉领域,对大量刺激的编码激活了顶内沟。因此,我们假设在音高识别过程中对数量的编码也会激活顶内沟。

方法

为了评估音高识别,参与者必须在每次试验中从四组可能的音高中识别一个单一的音高。功能磁共振成像(fMRI)将四音选择任务期间的神经激活与音高轮廓感知、音调定位和音高辨别期间的激活区分开来。

结果

与音高辨别相比,音高识别在双侧顶内沟引起激活。音高识别中的正确反应与左顶内沟的激活相关。音高轮廓感知激活了颞上回,这可能是由于呈现的音高范围较大。音高识别和音调定位之间的区别未能实现。在 ACC-海马体网络中的激活将音高辨别与音高识别区分开来。

结论

基于 IPS 的激活,音高识别可与音高辨别区分开来。音高识别过程中的 IPS 活动可能是视觉领域数量编码的听觉对应物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4708/3062602/21192439e7c2/1471-2202-12-26-1.jpg

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