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Ultra-fast speech comprehension in blind subjects engages primary visual cortex fusiform gyrus and pulvinar – a functional magnetic resonance imaging (fMRI) study

机译:盲人对象的超快速语音理解可参与初级视觉皮层梭状回和肺泡–功能磁共振成像(fMRI)研究

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摘要

BackgroundIndividuals suffering from vision loss of a peripheral origin may learn to understand spoken language at a rate of up to about 22 syllables (syl) per second - exceeding by far the maximum performance level of normal-sighted listeners (ca. 8 syl/s). To further elucidate the brain mechanisms underlying this extraordinary skill, functional magnetic resonance imaging (fMRI) was performed in blind subjects of varying ultra-fast speech comprehension capabilities and sighted individuals while listening to sentence utterances of a moderately fast (8 syl/s) or ultra-fast (16 syl/s) syllabic rate.
机译:背景技术患有外围起源视力障碍的个人可能学会以每秒约22个音节(syl)的速度学习口语-远远超过正常视听者的最大表现水平(约8 syl / s) 。为了进一步阐明这种非凡技能的大脑机制,在听觉变化较快(8个音节/秒)或超快(16 syl / s)的音节速率。

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