Ghosh Priyanka, Talwar Siddharth, Banerjee Arpan
Cognitive Brain Dynamics Lab, National Brain Research Centre, Gurgaon 122052, India.
Cognitive Brain Dynamics Lab, National Brain Research Centre, Gurgaon 122052, India
eNeuro. 2024 May 3;11(5). doi: 10.1523/ENEURO.0251-23.2024. Print 2024 May.
Elicited upon violation of regularity in stimulus presentation, mismatch negativity (MMN) reflects the brain's ability to perform automatic comparisons between consecutive stimuli and provides an electrophysiological index of sensory error detection whereas P300 is associated with cognitive processes such as updating of the working memory. To date, there has been extensive research on the roles of MMN and P300 individually, because of their potential to be used as clinical markers of consciousness and attention, respectively. Here, we intend to explore with an unsupervised and rigorous source estimation approach, the underlying cortical generators of MMN and P300, in the context of prediction error propagation along the hierarchies of brain information processing in healthy human participants. The existing methods of characterizing the two ERPs involve only approximate estimations of their amplitudes and latencies based on specific sensors of interest. Our objective is twofold: first, we introduce a novel data-driven unsupervised approach to compute latencies and amplitude of ERP components accurately on an individual-subject basis and reconfirm earlier findings. Second, we demonstrate that in multisensory environments, MMN generators seem to reflect a significant overlap of "modality-specific" and "modality-independent" information processing while P300 generators mark a shift toward completely "modality-independent" processing. Advancing earlier understanding that multisensory contexts speed up early sensory processing, our study reveals that temporal facilitation extends to even the later components of prediction error processing, using EEG experiments. Such knowledge can be of value to clinical research for characterizing the key developmental stages of lifespan aging, schizophrenia, and depression.
当刺激呈现违反规律性时引发的失匹配负波(MMN),反映了大脑对连续刺激进行自动比较的能力,并提供了感觉错误检测的电生理指标,而P300与诸如工作记忆更新等认知过程相关。迄今为止,由于MMN和P300分别有可能被用作意识和注意力的临床标志物,因此对它们各自的作用进行了广泛研究。在此,我们打算采用一种无监督且严谨的源估计方法,在健康人类参与者大脑信息处理层次结构中预测误差传播的背景下,探究MMN和P300的潜在皮质发生器。现有的表征这两种事件相关电位的方法仅基于特定感兴趣的传感器对其幅度和潜伏期进行近似估计。我们的目标有两个:第一,我们引入一种新颖的数据驱动无监督方法,在个体受试者基础上准确计算事件相关电位成分的潜伏期和幅度,并再次确认早期研究结果。第二,我们证明在多感官环境中,MMN发生器似乎反映了“特定模态”和“非特定模态”信息处理的显著重叠,而P300发生器则标志着向完全“非特定模态”处理的转变。我们的研究推进了对多感官环境加速早期感觉处理的早期认识,揭示了时间促进甚至延伸到预测误差处理的后期成分,采用脑电图实验。这些知识对于表征寿命老化、精神分裂症和抑郁症的关键发育阶段的临床研究可能具有价值。