听觉皮层
听力学
认知
神经科学
默认模式网络
扣带回前部
心理学
噪音(视频)
莫里斯水上航行任务
噪声性听力损失
听力损失
医学
噪声暴露
计算机科学
图像(数学)
人工智能
作者
Xiaomin Xu,Yu-Qun Zhang,Fengchao Zang,Chun-Qiang Lu,Lijie Liu,Jian Wang,Richard Salvi,Yu-Chen Chen,Gao-Jun Teng
标识
DOI:10.1007/s11682-022-00643-8
摘要
This study aimed to investigate the alterations of cognition and functional connectivity post noise, and find the progress and neural substrates of noise induced hearing loss (NIHL)-associated cognitive impairment. We exposed rats to 122 dB broad-band noise for 2 h to induce hearing loss and the auditory function was assessed by measuring auditory brainstem response thresholds. Morris water maze test and resting state MRI were computed at 0 day, 1, 3, 6 months post noise to reveal cognitive ability and neural substrate. The interregional connections in the auditory network and default mode network, as well as the connections using the auditory cortex and cingulate cortex as seeds were also examined addtionally. The deficit in spatial learning/memory was only observed at 6 months after noise exposure. The internal connections in the auditory network and default mode network were enhanced at 0 day and decreased at 6 months post noise. The connectivity using the auditory cortex and cingulate cortex as seeds generally followed the rule of “enhancement-normal-decrease-widely decrease”. A new model accounting for arousal, dementia, motor control of NIHL in is proposed. Our study highlights the fundamental flexibility of neural systems, and may also point toward novel therapeutic strategies for treating sensory disorders.
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