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The Influence of Natural Scene Dynamics on Auditory Cortical Activity

机译:自然场景动力学对听觉皮层活动的影响

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摘要

The efficient cortical encoding of natural scenes is essential for guiding adaptive behavior. Because natural scenes and network activity in cortical circuits share similar temporal scales, it is necessary to understand how the temporal structure of natural scenes influences network dynamics in cortical circuits and spiking output. We examined the relationship between the structure of natural acoustic scenes and its impact on network activity [as indexed by local field potentials (LFPs)] and spiking responses in macaque primary auditory cortex. Natural auditory scenes led to a change in the power of the LFP in the 2–9 and 16–30 Hz frequency ranges relative to the ongoing activity. In contrast, ongoing rhythmic activity in the 9–16 Hz range was essentially unaffected by the natural scene. Phase coherence analysis showed that scene-related changes in LFP power were at least partially attributable to the locking of the LFP and spiking activity to the temporal structure in the scene, with locking extending up to 25 Hz for some scenes and cortical sites. Consistent with distributed place and temporal coding schemes, a key predictor of phase locking and power changes was the overlap between the spectral selectivity of a cortical site and the spectral structure of the scene. Finally, during the processing of natural acoustic scenes, spikes were locked to LFP phase at frequencies up to 30 Hz. These results are consistent with an idea that the cortical representation of natural scenes emerges from an interaction between network activity and stimulus dynamics.
机译:自然场景的有效皮质编码对于指导自适应行为至关重要。由于皮层回路中的自然场景和网络活动共享相似的时间尺度,因此有必要了解自然场景的时间结构如何影响皮层回路中的网络动态和峰值输出。我们检查了自然声学场景的结构与其对网络活动的影响之间的关系(按本地野外电势(LFP)进行索引)和猕猴初级听觉皮层的尖峰响应。自然的听觉场景导致LFP的功率相对于正在进行的活动在2–9和16–30 Hz频率范围内发生变化。相反,在9–16 Hz范围内正在进行的节奏活动基本上不受自然场景的影响。相位相干分析表明,与场景相关的LFP功率变化至少部分归因于LFP的锁定和峰值活动对场景中时间结构的影响,某些场景和皮质位置的锁定扩展到25 Hz。与分布式位置和时间编码方案一致,锁相和功率变化的关键预测因子是皮质部位的光谱选择性与场景的光谱结构之间的重叠。最终,在自然声学场景的处理过程中,峰值被锁定在LFP相位,频率高达30 Hz。这些结果与这样的想法是一致的,即自然场景的皮层表示来自网络活动与刺激动力学之间的相互作用。

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