Centre for Neuroscience, Indian Institute of Science, Bangalore 560012, India.
Department of Ophthalmology, University of Pittsburgh, Pittsburgh, Pennsylvania 15219.
eNeuro. 2024 Nov 8;11(11). doi: 10.1523/ENEURO.0327-24.2024. Print 2024 Nov.
Successful behavior depends on the attentional state and other factors related to decision-making, which may modulate neuronal activity differently. Here, we investigated whether attentional state and behavioral outcome (i.e., whether a target is detected or missed) are distinguishable using the power and phase of local field potential recorded bilaterally from area V4 of two male rhesus monkeys performing a cued visual attention task. To link each trial's outcome to pairwise measures of attention that are typically averaged across trials, we used several methods to obtain single-trial estimates of spike count correlation and phase consistency. Surprisingly, while attentional location was best discriminated using gamma and high-gamma power, behavioral outcome was best discriminated by alpha power and steady-state visually evoked potential. Power outperformed absolute phase in attentional/behavioral discriminability, although single-trial gamma phase consistency provided reasonably high attentional discriminability. Our results suggest a dissociation between the neuronal mechanisms that regulate attentional focus and behavioral outcome.
成功的行为取决于注意状态和其他与决策相关的因素,这些因素可能会以不同的方式调节神经元活动。在这里,我们研究了使用从两只雄性恒河猴执行提示视觉注意力任务的 V4 区双侧记录的局部场电位的功率和相位,是否可以区分注意状态和行为结果(即目标是否被检测到或错过)。为了将每次试验的结果与通常在试验中平均的成对注意测量相关联,我们使用了几种方法来获得尖峰计数相关性和相位一致性的单试估计。令人惊讶的是,虽然注意力位置可以通过伽马和高伽马功率最佳区分,但是行为结果可以通过阿尔法功率和稳态视觉诱发电位最佳区分。在注意力/行为可区分性方面,功率优于绝对相位,尽管单试伽马相位一致性提供了相当高的注意力可区分性。我们的结果表明,调节注意力焦点和行为结果的神经元机制之间存在分离。