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

Author:

Liu Yi1,Wang Songjian1,Lu Jing2,Ding Junhua3,Chen Younuo1ORCID,Yang Liu4,Wang Shuo1

Affiliation:

1. Beijing Institute of Otolaryngology, Otolaryngology-Head and Neck Surgery, Key Laboratory of Otolaryngology Head and Neck Surgery (Capital Medical University), Ministry of Education, Beijing Tongren Hospital, Capital Medical University , No. 17, Hougou Hutong, Dongcheng District, Beijing 100005 , China

2. State Key Laboratory of Cognitive Neuroscience and Learning and IDG/McGovern Institute for Brain Research , No. 19, Xinjiekou Wai Street, Haidian District, Beijing 100875 , China

3. Department of Psychology, University of Edinburgh , 15Kings Buildings, Edinburgh EH8 9JZ , United Kingdom

4. School of Biomedical Engineering, Capital Medical University , No. 10, Xitoutiao, YouAnMen, Fengtai District, Beijing 100069 , China

Abstract

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.

Funder

National Natural Science Foundation of China

Capital’s Funds for Health Improvement and Research

High-Level Public Health Technical Talent Training Plan

Publisher

Oxford University Press (OUP)

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