Department of Psychology, University of Michigan, United States; Department of Psychiatry, University of Michigan, United States.
Department of Psychiatry, University of Michigan, United States.
Psychiatry Res Neuroimaging. 2023 Jun;331:111629. doi: 10.1016/j.pscychresns.2023.111629. Epub 2023 Mar 18.
Impaired social cognition is common in bipolar disorder (BD) and predicts poor functional outcomes. A critical determinant of social cognition is the ability to discriminate others' gaze direction, and its alteration may contribute to functional impairment in BD. However, the neural mechanisms underlying gaze processing in BD are unclear. Because neural oscillations are crucial neurobiological mechanisms supporting cognition, we aimed to understand their role in gaze processing in BD. Using electroencephalography (EEG) data recorded during a gaze discrimination task for 38 BD and 34 controls (HC), we examined: theta and gamma power over bilateral posterior and midline anterior locations associated with early face processing and higher-level cognitive processing, and theta-gamma phase-amplitude coupling (PAC) between locations. Compared to HC, BD showed reduced midline-anterior and left-posterior theta power, and diminished bottom-up/top-down theta-gamma PAC between anterior/posterior sites. Reduced theta power and theta-gamma PAC related to slower response times. These findings suggest that altered theta oscillations and anterior-posterior cross-frequency coupling between areas associated with higher-level cognition and early face processing may underlie impaired gaze processing in BD. This is a crucial step towards translational research that may inform novel social cognitive interventions (e.g., neuromodulation to target specific oscillatory dynamics) to improve functioning in BD.
社会认知障碍在双相情感障碍(BD)中很常见,并且预测功能预后不良。社会认知的一个关键决定因素是辨别他人注视方向的能力,其改变可能导致 BD 中的功能障碍。然而,BD 中注视加工的神经机制尚不清楚。因为神经振荡是支持认知的关键神经生物学机制,我们旨在了解它们在 BD 中注视加工中的作用。我们使用脑电图(EEG)记录了 38 名 BD 和 34 名对照(HC)在注视辨别任务期间的数据,检查了与早期面部处理和高级认知处理相关的双侧后区和中线前区的θ和γ功率,以及位置之间的θ-γ相位-振幅耦合(PAC)。与 HC 相比,BD 表现出中线前区和左后侧θ功率降低,以及前区/后区之间自上而下/自下而上的θ-γ PAC 减少。θ 功率降低和 θ-γ PAC 与较慢的反应时间相关。这些发现表明,与高级认知和早期面部处理相关的区域之间的θ 振荡和前-后交叉频域耦合的改变可能是 BD 中注视加工受损的基础。这是朝着转化研究迈出的重要一步,可能为改善 BD 中的功能提供新的社会认知干预措施(例如,针对特定振荡动力学的神经调节)。