Department of Physiology, Faculty of Medicine, University of Helsinki, Helsinki 00014, Finland.
Department of Neuroscience and Biomedical Engineering, Aalto University School of Science, Aalto 00076, Finland.
Cereb Cortex. 2017 Nov 1;27(11):5343-5352. doi: 10.1093/cercor/bhx219.
The human prefrontal cortex (PFC) has been shown to be important for metacognition, the capacity to monitor and control one's own cognitive processes. Here we dissected the neural architecture of somatosensory metacognition using navigated single-pulse transcranial magnetic stimulation (TMS) to modulate tactile working memory (WM) processing. We asked subjects to perform tactile WM tasks and to give a confidence rating for their performance after each trial. We circumvented the challenge of interindividual variability in functional brain anatomy by applying TMS to two PFC areas that, according to tractography, were neurally connected with the primary somatosensory cortex (S1): one area in the superior frontal gyrus (SFG), another in the middle frontal gyrus (MFG). These two PFC locations and a control cortical area were stimulated during both spatial and temporal tactile WM tasks. We found that tractography-guided TMS of the SFG area selectively enhanced metacognitive accuracy of tactile temporal, but not spatial WM. Stimulation of the MFG area that was also neurally connected with the S1 had no such effect on metacognitive accuracy of either the temporal or spatial tactile WM. Our findings provide causal evidence that the PFC contains distinct neuroanatomical substrates for introspective accuracy of tactile WM.
人类前额叶皮层(PFC)对于元认知,即监控和控制自身认知过程的能力,具有重要作用。在这里,我们使用导航单脉冲经颅磁刺激(TMS)来调节触觉工作记忆(WM)处理,剖析了躯体感觉元认知的神经结构。我们要求受试者执行触觉 WM 任务,并在每次试验后对其表现进行信心评分。我们通过将 TMS 应用于两个与初级躯体感觉皮层(S1)在神经上相连的 PFC 区域,规避了功能脑解剖个体间变异性的挑战:一个位于额上回(SFG),另一个位于额中回(MFG)。在空间和时间触觉 WM 任务期间,对这两个 PFC 位置和一个对照皮质区域进行了刺激。我们发现,SFG 区域的轨迹引导 TMS 选择性地增强了触觉时间 WM 的元认知准确性,但对空间 WM 没有这种影响。与 S1 也有神经连接的 MFG 区域的刺激对时间或空间触觉 WM 的元认知准确性均无影响。我们的研究结果提供了因果证据,表明 PFC 包含触觉 WM 内省准确性的不同神经解剖学基础。