Neural processing of speech comprehension in noise predicts individual age using fNIRS-based brain-behavior models

安静的 心理学 言语感知 感觉系统 理解力 功能近红外光谱 听力学 积极倾听 认知 颞中回 感知 判决 颞上回 大脑活动与冥想 认知心理学 神经科学 功能磁共振成像 前额叶皮质 计算机科学 沟通 脑电图 医学 人工智能 物理 程序设计语言 量子力学
作者
Yi Liu,Songjian Wang,Jing Lu,Junhua Ding,Younuo Chen,Yang Liu,Shuo Wang
出处
期刊:Cerebral Cortex [Oxford University Press]
卷期号:34 (5) 被引量:2
标识
DOI:10.1093/cercor/bhae178
摘要

Abstract Speech comprehension in noise depends on complex interactions between peripheral sensory and central cognitive systems. Despite having normal peripheral hearing, older adults show difficulties in speech comprehension. It remains unclear whether the brain’s neural responses could indicate aging. The current study examined whether individual brain activation during speech perception in different listening environments could predict age. We applied functional near-infrared spectroscopy to 93 normal-hearing human adults (20 to 70 years old) during a sentence listening task, which contained a quiet condition and 4 different signal-to-noise ratios (SNR = 10, 5, 0, −5 dB) noisy conditions. A data-driven approach, the region-based brain-age predictive modeling was adopted. We observed a significant behavioral decrease with age under the 4 noisy conditions, but not under the quiet condition. Brain activations in SNR = 10 dB listening condition could successfully predict individual’s age. Moreover, we found that the bilateral visual sensory cortex, left dorsal speech pathway, left cerebellum, right temporal–parietal junction area, right homolog Wernicke’s area, and right middle temporal gyrus contributed most to prediction performance. These results demonstrate that the activations of regions about sensory-motor mapping of sound, especially in noisy conditions, could be sensitive measures for age prediction than external behavior measures.

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