Zalasky Nicole A, Luo Feng, Kim Linda H, Noor M Sohail, Brown Elliot C, Arantes Ana P, Ramasubbu Rajamannar, Gruber Aaron J, Kiss Zelma H T, Clark Darren L
Hotchkiss Brain Institute, University of Calgary, Calgary, Canada.
Department of Clinical Neurosciences, Cumming School of Medicine, University of Calgary, Calgary, Canada.
Mol Psychiatry. 2025 Jan;30(1):188-200. doi: 10.1038/s41380-024-02667-6. Epub 2024 Jul 20.
The subgenual anterior cingulate cortex (sgACC) has been identified as a key brain area involved in various cognitive and emotional processes. While the sgACC has been implicated in both emotional valuation and emotional conflict monitoring, it is still unclear how this area integrates multiple functions. We characterized both single neuron and local field oscillatory activity in 14 patients undergoing sgACC deep brain stimulation for treatment-resistant depression. During recording, patients were presented with a modified Stroop task containing emotional face images that varied in valence and congruence. We further analyzed spike-field interactions to understand how network dynamics influence single neuron activity in this area. Most single neurons responded to both valence and congruence, revealing that sgACC neuronal activity can encode multiple processes within the same task, indicative of multifunctionality. During peak neuronal response, we observed increased spectral power in low frequency oscillations, including theta-band synchronization (4-8 Hz), as well as desynchronization in beta-band frequencies (13-30 Hz). Theta activity was modulated by current trial congruency with greater increases in spectral power following non-congruent stimuli, while beta desynchronizations occurred regardless of emotional valence. Spike-field interactions revealed that local sgACC spiking was phase-locked most prominently to the beta band, whereas phase-locking to the theta band occurred in fewer neurons overall but was modulated more strongly for neurons that were responsive to task. Our findings provide the first direct evidence of spike-field interactions relating to emotional cognitive processing in the human sgACC. Furthermore, we directly related theta oscillatory dynamics in human sgACC to current trial congruency, demonstrating it as an important regulator during conflict detection. Our data endorse the sgACC as an integrative hub for cognitive emotional processing through modulation of beta and theta network activity.
膝下前扣带回皮质(sgACC)已被确定为参与各种认知和情感过程的关键脑区。虽然sgACC与情绪评估和情绪冲突监测都有关联,但该区域如何整合多种功能仍不清楚。我们对14名因难治性抑郁症接受sgACC深部脑刺激的患者的单个神经元和局部场振荡活动进行了特征描述。在记录过程中,向患者呈现一种经过修改的包含情绪面孔图像的Stroop任务,这些图像在效价和一致性方面有所不同。我们进一步分析了锋电位-场相互作用,以了解网络动力学如何影响该区域的单个神经元活动。大多数单个神经元对效价和一致性都有反应,这表明sgACC神经元活动可以在同一任务中编码多个过程,体现了多功能性。在神经元反应峰值期间,我们观察到低频振荡的频谱功率增加,包括θ波段同步(4-8赫兹),以及β波段频率(13-30赫兹)的去同步化。θ活动受当前试验一致性的调节,在非一致性刺激后频谱功率增加更大,而β去同步化无论情绪效价如何都会发生。锋电位-场相互作用表明,局部sgACC放电最显著地与β波段锁相,而与θ波段锁相的神经元总体较少,但对任务有反应的神经元受其调制更强。我们的研究结果首次提供了与人类sgACC中情绪认知处理相关的锋电位-场相互作用的直接证据。此外,我们将人类sgACC中的θ振荡动力学与当前试验一致性直接联系起来,证明其在冲突检测过程中是一个重要的调节器。我们的数据支持sgACC作为通过调节β和θ网络活动进行认知情绪处理的整合枢纽。