首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Single-Trial Decoding of Visual Attention from Local Field Potentials in the Primate Lateral Prefrontal Cortex Is Frequency-Dependent
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Single-Trial Decoding of Visual Attention from Local Field Potentials in the Primate Lateral Prefrontal Cortex Is Frequency-Dependent

机译:灵长类动物横向前额外皮层中的局部现场电位的单次试验解码是频率依赖性的

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摘要

Local field potentials ( LFPs) are fluctuations of extracellular voltage that may reflect the physiological phenomena occurring within a volume of neural tissue. It is known that the allocation of spatial attention modulates the amplitude of LFPs in visual areas of primates. An issue that remains poorly investigated is whether and how attention modulates LFPs in executive brain areas, such as the lateral prefrontal cortex (LPFC), thought to be involved in the origins of attention. Weaddressed this issue by recording LFPs from multielectrode arrays implanted in the LPFC of two macaques. We found that the allocation of attention can be reliably decoded on a single-trial basis from ensembles of LFPs with frequencies >60 Hz. Using LFP frequencies <60 Hz, we could not decode the allocation of attention, but we could decode the location of a visual stimulus as well as the endpoint of saccades toward that stimulus. The information contained in the high-frequency LFPs was fully redundant with the information contained in the spiking activity of single neurons recorded from the same electrodes. Moreover, the decoding of attention using gamma frequency LFPs was less accurate than using spikes, but it was twice more stable across time. Finally, decorrelating the LFP signals from the different electrodes increased decoding performance in the high frequencies by up to similar to 14%. Our findings suggest that LFPs recorded from chronically implanted multielectrode arrays in the LPFC contain information about sensory, cognitive, and motor components of a task in a frequency-dependent manner.
机译:局部场电位(LFP)是细胞外电压的波动,其可能反映在神经组织的体积内发生的生理现象。众所周知,空间注意力的分配调制了灵长类动物视觉区域中的LFP的幅度。仍然持久调查的问题是如何在行政脑区域(如横向前额外皮层(LPFC))中的LFPS,以为涉及注意的起源。通过从植入的两个MAKQUES的LPFC中植入的多电极阵列记录LFP来编写这个问题。我们发现,可以从LFP的集合与带频率> 60Hz的LFP的集合可靠地解码注意力分配。使用LFP频率<60 Hz,我们无法解码关注的分配,但我们可以解码视觉刺激的位置以及对该刺激的扫视终点。高频LFP中包含的信息完全冗余,其中包含从相同电极记录的单一神经元的尖峰活动中包含的信息。此外,使用伽马频率LFP的注意力的解码比使用尖峰更低,但在时间越稳定。最后,去相关从不同电极的LFP信号增加到高频上的解码性能,直到相似达的14%。我们的研究结果表明,LPFC中的长期植入的多电极阵列记录的LFP包含有关频率相关方式的有关任务的感觉,认知和电机组件的信息。

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