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Electrophysiological Mechanisms in the Anterior Insula Cortex during Reward Expectancy

Yang, L.; Lehongre, K.; Ye, H.; Yu, X.; Navarro, V.; Cheng, S.; Lin, Z.; Axmacher, N.; Wang, S.; Zhang, H.

2023-12-21 neuroscience
10.1101/2023.09.19.558205 bioRxiv
Show abstract

Reward expectancy shapes behavioral performance by coordinating the allocation of cognitive resources, which incorporates the involvement of the anterior insular cortex (AIC). To investigate the electrophysiological mechanisms of the AIC during reward expectancy, we collected intracranial electroencephalographic data from epilepsy patients undergoing clinical monitoring. Subjects navigated a virtual T-maze containing rewards at three predetermined locations. We focused on the period immediately before entering the reward zone, termed the reward expectancy stage. During this stage, we identified the reward-specific brain patterns (RBPs) that were preactivated in the AIC. This pre-activation preceded the emergence of robust phase-amplitude coupling (PAC), where theta oscillations (5-7 Hz) modulated gamma activities (75-110 Hz). The PAC strength correlated positively with the pre-activation level of RBPs, implying the potential role of oscillatory coordination in amplifying preactivated reward representations. Strikingly, this PAC effect exhibited a specific temporal structure that peak gamma activity became progressively coupled to earlier theta phases as reward approached, mirroring the theta phase precession phenomenon previously observed in frontal and temporal lobes. We refer to this dynamic as phase-precession-like effect (PPLE). Moreover, subjects exhibiting PPLE in the AIC presented greater trial-by-trial improvements in response latency. Taken together, these findings shed light on the electrophysiological mechanisms of the AIC underlying reward expectancy.

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