夹带(生物音乐学)
经颅交流电刺激
听觉皮层
认知
心理学
语音识别
神经科学
节奏
集合(抽象数据类型)
脑电图
语音处理
运动皮层
阿尔法(金融)
神经计算语音处理
感觉系统
颞叶皮质
人脑
沟通
理解力
听觉系统
言语感知
计算机科学
刺激
认知心理学
刺激形态
听力学
皮质(解剖学)
磁刺激
阿尔法节律
作者
Yayue Gao,Jianing Fan,Na Xu,Libo Zhao,Lifang Deng,Ruolin Yang,Luyao Chen,Zhiwei Jing,Tingting Huang,Xiongfei Wang,Jing Wang,Pengfei Teng,Peng Cai,Guoming Luan,Yi Du,Qian Wang,Fang Fang
标识
DOI:10.1073/pnas.2601610123
摘要
Human cognition operates within distinct temporal windows spanning from very short to extremely long. Each cognitive function has its own processing speed range, beyond which performance deteriorates or even becomes impossible. Speech comprehension, as one of the most important cognitive functions in civilized societies, exemplifies this constraint: Performance declines markedly when speech rates exceed about 10 syllables per second. However, the neural mechanisms underlying this speed limit remain unclear. Here, by combining psychophysics, scalp-electroencephalography, transcranial alternating current stimulation (tACS), repetitive sensory stimulation, and stereo-electroencephalography (sEEG), we showed that the intrinsic alpha band activity determined the maximum rate of speech comprehension. In healthy participants, individual alpha frequency (IAF) precisely predicted the speech recognition rate threshold. Crucially, causally accelerating endogenous alpha rhythms via high-definition tACS and rhythmic auditory stimulation shifted this threshold, enhancing comprehension of ultrafast speech. Furthermore, sEEG recordings from the human auditory cortex revealed that this speed-limiting mechanism was locally determined: Faster alpha band activity in the left auditory cortex facilitated stronger neural entrainment to the speech envelope. These findings identify alpha band activity as a fundamental, malleable temporal bottleneck for linguistic processing, suggesting that the brain's intrinsic sampling rate sets the physiological limit on human communication.
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