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Neural representations of auditory input accommodate to the context in a dynamically changing acoustic environment

机译:听觉输入的神经表示适应动态变化的声学环境中的环境

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摘要

The auditory scene is dynamic, changing from 1 min to the next as sound sources enter and leave our space. How does the brain resolve the problem of maintaining neural representations of the distinct yet changing sound sources? We used an auditory streaming paradigm to test the dynamics of multiple sound source representation, when switching between integrated and segregated sound streams. The mismatch negativity (MMN) component of event-related potentials was used as index of change detection to observe stimulus-driven modulation of the ongoing sound organization. Probe tones were presented randomly within ambiguously organized sound sequences to reveal whether the neurophysiological representation of the sounds was integrated (no MMN) or segregated (MMN). The pattern of results demonstrated context-dependent responses to a single tone that was modulated in dynamic fashion as the auditory environment rapidly changed from integrated to segregated sounds. This suggests a rapid form of auditory plasticity in which the longer-term sound context influences the current state of neural activity when it is ambiguous. These results demonstrate stimulus-driven modulation of neural activity that accommodates to the dynamically changing acoustic environment.
机译:听觉场景是动态的,从声源进入和离开我们的空间开始,从1分钟变化到下一个。大脑如何解决维持不同但不断变化的声源的神经表示的问题?当在集成声音流和分离声音流之间切换时,我们使用听觉流模式来测试多个声源表示的动力学。事件相关电位的失配负性(MMN)分量用作变化检测的指标,以观察正在进行的声音组织的刺激驱动调制。探针音在模糊组织的声音序列中随机显示,以揭示声音的神经生理学表现是整合的(无MMN)还是隔离的(MMN)。结果的模式表明,随着听觉环境从集成声音迅速变为分离声音,以动态方式调制的单个音调的上下文相关响应。这表明听觉可塑性的快速形式,其中长期的声音环境在模棱两可时会影响神经活动的当前状态。这些结果证明了神经活动的刺激驱动调节,以适应动态变化的声学环境。

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