Institute of Medical Psychology and Systems Neuroscience, University of Münster, Münster 48149, Germany; Otto Creutzfeldt Center for Cognitive and Behavioral Neuroscience, University of Münster, Münster 48149, Germany.
Institute of Medical Psychology and Systems Neuroscience, University of Münster, Münster 48149, Germany.
Neuroimage. 2022 Oct 1;259:119445. doi: 10.1016/j.neuroimage.2022.119445. Epub 2022 Jul 2.
Neural mismatch responses have been proposed to rely on different mechanisms, including prediction error-related activity and adaptation to frequent stimuli. However, the hierarchical cortical structure of these mechanisms is unknown. To investigate this question, we recorded hemodynamic responses while participants (N = 54) listened to an auditory oddball sequence as well as a suited control condition. In addition to effects in sensory processing areas (Heschl's gyrus, superior temporal gyrus (STG)), we found several distinct clusters that indexed deviance processing in frontal and parietal regions (anterior cingulate cortex/supplementary motor area (ACC/SMA), inferior parietal lobule (IPL), anterior insula (AI), inferior frontal junction (IFJ)). Comparing responses to the control stimulus with the deviant and standard enabled us to delineate the contributions of prediction error- or adaptation-related brain activation, respectively. We observed significant effects of adaptation in Heschl's gyrus, STG and ACC/SMA, while prediction error-related activity was observed in STG, IPL, AI and IFJ. Additional dynamic causal modeling confirmed the superiority of a hierarchical processing structure compared to a flat structure. Thus, we found that while prediction-error related processes increased with the hierarchical level of the brain area, adaptation declined. This suggests that the relative contribution of different mechanisms in deviance processing varies across the cortical hierarchy.
神经失配响应被认为依赖于不同的机制,包括预测误差相关活动和对频繁刺激的适应。然而,这些机制的分层皮质结构尚不清楚。为了研究这个问题,我们在参与者(N=54)听听觉Oddball 序列和适合的对照条件时记录了血流动力学反应。除了在感觉处理区域(Heschl gyrus、颞上回(STG))的影响外,我们还发现了几个在额区和顶区(前扣带皮层/辅助运动区(ACC/SMA)、下顶叶小叶(IPL)、前岛叶(AI)、下额额连接区(IFJ))中索引偏差处理的不同簇。将对对照刺激的反应与偏差和标准进行比较,使我们能够分别描绘出与预测误差或适应相关的大脑激活的贡献。我们观察到在 Heschl gyrus、STG 和 ACC/SMA 中适应的显著影响,而在 STG、IPL、AI 和 IFJ 中观察到与预测误差相关的活动。额外的动态因果建模证实了分层处理结构优于平面结构。因此,我们发现,虽然与预测误差相关的过程随着大脑区域的分层水平而增加,但适应却下降了。这表明在偏差处理中不同机制的相对贡献在皮质层次结构中是不同的。