Preisig Basil C, Riecke Lars, Sjerps Matthias J, Kösem Anne, Kop Benjamin R, Bramson Bob, Hagoort Peter, Hervais-Adelman Alexis
Donders Institute for Brain, Cognition, and Behaviour, Radboud University, 6500 HB Nijmegen, The Netherlands;
Max Planck Institute for Psycholinguistics, 6525 XD Nijmegen, The Netherlands.
Proc Natl Acad Sci U S A. 2021 Feb 16;118(7). doi: 10.1073/pnas.2015488118.
Brain connectivity plays a major role in the encoding, transfer, and integration of sensory information. Interregional synchronization of neural oscillations in the γ-frequency band has been suggested as a key mechanism underlying perceptual integration. In a recent study, we found evidence for this hypothesis showing that the modulation of interhemispheric oscillatory synchrony by means of bihemispheric high-density transcranial alternating current stimulation (HD-TACS) affects binaural integration of dichotic acoustic features. Here, we aimed to establish a direct link between oscillatory synchrony, effective brain connectivity, and binaural integration. We experimentally manipulated oscillatory synchrony (using bihemispheric γ-TACS with different interhemispheric phase lags) and assessed the effect on effective brain connectivity and binaural integration (as measured with functional MRI and a dichotic listening task, respectively). We found that TACS reduced intrahemispheric connectivity within the auditory cortices and antiphase (interhemispheric phase lag 180°) TACS modulated connectivity between the two auditory cortices. Importantly, the changes in intra- and interhemispheric connectivity induced by TACS were correlated with changes in perceptual integration. Our results indicate that γ-band synchronization between the two auditory cortices plays a functional role in binaural integration, supporting the proposed role of interregional oscillatory synchrony in perceptual integration.
脑连接性在感觉信息的编码、传递和整合中起着主要作用。γ频段神经振荡的区域间同步被认为是知觉整合的关键机制。在最近的一项研究中,我们发现了支持这一假设的证据,即通过双侧高密度经颅交流电刺激(HD-TACS)调节半球间振荡同步会影响双耳对双耳听觉特征的整合。在这里,我们旨在建立振荡同步、有效脑连接性和双耳整合之间的直接联系。我们通过实验操纵振荡同步(使用具有不同半球间相位滞后的双侧γ-TACS),并分别评估其对有效脑连接性和双耳整合的影响(分别通过功能磁共振成像和双耳分听任务进行测量)。我们发现,TACS降低了听觉皮层内的半球内连接性,而反相(半球间相位滞后180°)TACS调节了两个听觉皮层之间的连接性。重要的是,TACS引起的半球内和半球间连接性变化与知觉整合的变化相关。我们的结果表明,两个听觉皮层之间的γ频段同步在双耳整合中发挥着功能作用,支持了区域间振荡同步在知觉整合中的作用。