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首页> 外文期刊>Medical problems of performing artists >Brain Activation During Singing: 'Clef de Sol Activation' Is the 'Concert' of the Human Brain
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Brain Activation During Singing: 'Clef de Sol Activation' Is the 'Concert' of the Human Brain

机译:唱歌过程中的大脑激活:“谱号激活”是人脑的“音乐会”

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摘要

Humans are the most complex singers in nature, and the human voice is thought by many to be the most beautiful musical instrument. Aside from spoken language, singing represents a second mode of acoustic communication in humans. The purpose of this review article is to explore the functional anatomy of the "singing" brain. Methodologically, the existing literature regarding activation of the human brain during singing was carefully reviewed, with emphasis on the anatomic localization of such activation. Relevant human studies are mainly neuroimaging studies, namely functional magnetic resonance imaging and positron emission tomography studies. Singing necessitates activation of several cortical, subcortical, cerebellar, and brainstem areas, served and coordinated by multiple neural networks. Functionally vital cortical areas of the frontal, parietal, and temporal lobes bilaterally participate in the brain's activation process during singing, confirming the latter's role in human communication. Perisylvian cortical activity of the right hemisphere seems to be the most crucial component of this activation. This also explains why aphasic patients due to left hemispheric lesions are able to sing but not speak the same words. The term clef de sol activation is proposed for this crucial perisylvian cortical activation due to the clef de sol shape of the topographical distribution of these cortical areas around the sylvian fissure. Further research is needed to explore the connectivity and sequence of how the human brain activates to sing.
机译:人类是自然界中最复杂的歌手,许多人认为人类的声音是最美丽的乐器。除口语外,唱歌还代表人类的第二种声学交流方式。这篇评论文章的目的是探讨“歌唱”大脑的功能解剖。从方法上讲,对唱歌过程中人脑激活的现有文献进行了仔细回顾,重点是这种激活的解剖学定位。相关的人类研究主要是神经成像研究,即功能磁共振成像和正电子发射断层扫描研究。唱歌需要激活多个皮层,皮层下,小脑和脑干区域,并通过多个神经网络进行协调。额叶,顶叶和颞叶在功能上至关重要的皮质区域在唱歌过程中双向参与了大脑的激活过程,从而确认了大脑在人类交流中的作用。右半球的perisylvian皮质活动似乎是这种激活的最关键的组成部分。这也解释了为什么由于左半球病变导致失语症患者能够唱歌但不会说相同的单词。对于这个关键的西尔斯维亚皮层皮质活化,提出了术语“太阳溶胶活化”,这是由于这些森林周围裂隙的皮质区域的地形分布的“太阳溶胶”形状。需要进一步研究以探索人脑如何激活唱歌的连通性和顺序。

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