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蝙蝠自发活动和听觉处理过程中的额颞耦合动力学

Fronto-Temporal Coupling Dynamics During Spontaneous Activity and Auditory Processing in the Bat .

作者信息

García-Rosales Francisco, López-Jury Luciana, González-Palomares Eugenia, Cabral-Calderín Yuranny, Hechavarría Julio C

机构信息

Institut für Zellbiologie und Neurowissenschaft, Goethe-Universität, Frankfurt, Germany.

Research Group Neural and Environmental Rhythms, MPI for Empirical Aesthetics, Frankfurt, Germany.

出版信息

Front Syst Neurosci. 2020 Mar 20;14:14. doi: 10.3389/fnsys.2020.00014. eCollection 2020.

Abstract

Most mammals rely on the extraction of acoustic information from the environment in order to survive. However, the mechanisms that support sound representation in auditory neural networks involving sensory and association brain areas remain underexplored. In this study, we address the functional connectivity between an auditory region in frontal cortex (the frontal auditory field, FAF) and the auditory cortex (AC) in the bat . The AC is a classic sensory area central for the processing of acoustic information. On the other hand, the FAF belongs to the frontal lobe, a brain region involved in the integration of sensory inputs, modulation of cognitive states, and in the coordination of behavioral outputs. The FAF-AC network was examined in terms of oscillatory coherence (local-field potentials, LFPs), and within an information theoretical framework linking FAF and AC spiking activity. We show that in the absence of acoustic stimulation, simultaneously recorded LFPs from FAF and AC are coherent in low frequencies (1-12 Hz). This "default" coupling was strongest in deep AC layers and was unaltered by acoustic stimulation. However, presenting auditory stimuli did trigger the emergence of coherent auditory-evoked gamma-band activity (>25 Hz) between the FAF and AC. In terms of spiking, our results suggest that FAF and AC engage in distinct coding strategies for representing artificial and natural sounds. Taken together, our findings shed light onto the neuronal coding strategies and functional coupling mechanisms that enable sound representation at the network level in the mammalian brain.

摘要

大多数哺乳动物依靠从环境中提取声学信息来生存。然而,在涉及感觉和联合脑区的听觉神经网络中支持声音表征的机制仍未得到充分探索。在本研究中,我们研究了蝙蝠额叶皮质中的一个听觉区域(额叶听觉场,FAF)与听觉皮质(AC)之间的功能连接。AC是处理声学信息的经典感觉区域。另一方面,FAF属于额叶,该脑区参与感觉输入的整合、认知状态的调节以及行为输出的协调。我们从振荡相干性(局部场电位,LFP)方面以及在将FAF和AC的尖峰活动联系起来的信息理论框架内研究了FAF-AC网络。我们发现,在没有声学刺激的情况下,同时记录的来自FAF和AC的LFP在低频(1-12赫兹)下是相干的。这种“默认”耦合在AC深层最强,并且不受声学刺激的影响。然而,呈现听觉刺激确实会引发FAF和AC之间相干的听觉诱发伽马波段活动(>25赫兹)的出现。在尖峰方面,我们的结果表明,FAF和AC采用不同的编码策略来表征人工声音和自然声音。综上所述,我们的研究结果揭示了在哺乳动物大脑中网络层面实现声音表征的神经元编码策略和功能耦合机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cef/7098971/625dfa8667df/fnsys-14-00014-g0001.jpg

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