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衰老会影响聆听大脑中神经同步和自上而下神经调节之间的平衡。

Aging affects the balance of neural entrainment and top-down neural modulation in the listening brain.

机构信息

Max Planck Research Group 'Auditory Cognition', Max Planck Institute for Human Cognitive and Brain Sciences, Stephanstrasse 1a, Leipzig 04103, Germany.

Brain and Mind Institute, Department of Psychology, The University of Western Ontario, 1151 Richmond St., London, Ontario, Canada N6A 3K7.

出版信息

Nat Commun. 2017 Jun 27;8:15801. doi: 10.1038/ncomms15801.

Abstract

Healthy aging is accompanied by listening difficulties, including decreased speech comprehension, that stem from an ill-understood combination of sensory and cognitive changes. Here, we use electroencephalography to demonstrate that auditory neural oscillations of older adults entrain less firmly and less flexibly to speech-paced (∼3 Hz) rhythms than younger adults' during attentive listening. These neural entrainment effects are distinct in magnitude and origin from the neural response to sound per se. Non-entrained parieto-occipital alpha (8-12 Hz) oscillations are enhanced in young adults, but suppressed in older participants, during attentive listening. Entrained neural phase and task-induced alpha amplitude exert opposite, complementary effects on listening performance: higher alpha amplitude is associated with reduced entrainment-driven behavioural performance modulation. Thus, alpha amplitude as a task-driven, neuro-modulatory signal can counteract the behavioural corollaries of neural entrainment. Balancing these two neural strategies may present new paths for intervention in age-related listening difficulties.

摘要

健康衰老伴随着听力困难,包括言语理解能力下降,这源自于对感觉和认知变化的理解不足。在这里,我们使用脑电图来证明,在注意力集中听的过程中,老年人的听觉神经振荡比年轻人的神经振荡更不牢固和灵活地跟随言语节奏(~3 Hz)。这些神经同步效应在幅度和起源上都与声音本身的神经反应不同。在注意力集中听的过程中,年轻人的顶枕部α(8-12 Hz)振荡增强,而老年人的α振荡受到抑制。在注意力集中听的过程中,同步的神经相位和任务诱导的α 幅度对听力表现产生相反的、互补的影响:较高的α幅度与较弱的神经同步驱动的行为表现调制相关。因此,作为一种任务驱动的神经调节信号,α 幅度可以抵消神经同步的行为后果。平衡这两种神经策略可能为干预与年龄相关的听力困难提供新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f71/5490185/eaca84f04821/ncomms15801-f1.jpg

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