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Magnetic resonance imaging of the brain and vocal tract: applications to the study of speech production and language learning.

机译:脑和声道的磁共振成像:在语音产生和语言学习研究中的应用。

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摘要

The human vocal system is highly plastic, allowing for the flexible expression of language, mood and intentions. However, this plasticity is not stable throughout the life span, and it is well documented that adult learners encounter greater difficulty than children in acquiring the sounds of foreign languages. Researchers have used magnetic resonance imaging (MRI) to interrogate the neural substrates of vocal imitation and learning, and the correlates of individual differences in phonetic “talent”. In parallel, a growing body of work using MR technology to directly image the vocal tract in real time during speech has offered primarily descriptive accounts of phonetic variation within and across languages. In this paper, we review the contribution of neural MRI to our understanding of vocal learning, and give an overview of vocal tract imaging and its potential to inform the field. We propose methods by which our understanding of speech production and learning could be advanced through the combined measurement of articulation and brain activity using MRI – specifically, we describe a novel paradigm, developed in our laboratory, that uses both MRI techniques to for the first time map directly between neural, articulatory and acoustic data in the investigation of vocalization. This non-invasive, multimodal imaging method could be used to track central and peripheral correlates of spoken language learning, and speech recovery in clinical settings, as well as provide insights into potential sites for targeted neural interventions.
机译:人声系统具有很高的可塑性,可以灵活表达语言,情绪和意图。但是,这种可塑性在整个生命周期中都不稳定,并且有据可查的是,成年学习者在学习外语语音方面比儿童遇到更大的困难。研究人员已经使用磁共振成像(MRI)来询问声音模仿和学习的神经基础,以及语音“才能”中个体差异的相关性。同时,越来越多的使用MR技术在语音过程中实时实时直接对声道进行成像的工作已经提供了语言内和语言间语音变化的主要描述性说明。在本文中,我们回顾了神经MRI对我们对声音学习的理解的贡献,并概述了声道成像及其在领域中的应用潜力。我们提出了一些方法,通过使用MRI对发音和脑部活动进行联合测量,可以提高对语音产生和学习的理解-特别是,我们描述了在实验室中开发的一种新颖的范例,该范例首次使用了两种MRI技术在发声研究中直接在神经,发音和声学数据之间映射。这种非侵入性的多模态成像方法可用于跟踪口语学习的中心和外围相关性,以及临床环境中的语音恢复,并提供有针对性的针对性神经干预的见解。

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