Moharramipour Ali, Kitazawa Shigeru
Dynamic Brain Network Laboratory, Graduate School of Frontier Biosciences, Osaka University, Osaka 565-0871, Japan.
Cereb Cortex Commun. 2021 Apr 5;2(2):tgab025. doi: 10.1093/texcom/tgab025. eCollection 2021.
Our subjective temporal order of two successive tactile stimuli, delivered one to each hand, is often inverted when our hands are crossed. However, there is great variability among different individuals. We addressed the question of why some show almost complete reversal, but others show little reversal. To this end, we obtained structural magnetic resonance imaging data from 42 participants who also participated in the tactile temporal order judgment (TOJ) task. We extracted the cortical thickness and the convoluted surface area as cortical characteristics in 68 regions. We found that the participants with a thinner, larger, and more convoluted cerebral cortex in 10 regions, including the right pars-orbitalis, right and left postcentral gyri, left precuneus, left superior parietal lobule, right middle temporal gyrus, left superior temporal gyrus, right cuneus, left supramarginal gyrus, and right rostral middle frontal gyrus, showed a smaller degree of judgment reversal. In light of major theoretical accounts, we suggest that cortical elaboration in the aforementioned regions improve the crossed-hand TOJ performance through better integration of the tactile stimuli with the correct spatial representations in the left parietal regions, better representation of spatial information in the postcentral gyrus, or improvement of top-down inhibitory control by the right pars-orbitalis.
当我们双手交叉时,分别施加于每只手上的两个连续触觉刺激的主观时间顺序常常会颠倒。然而,不同个体之间存在很大差异。我们探讨了为什么有些人几乎完全颠倒,而另一些人则很少颠倒这个问题。为此,我们从42名参与者那里获取了结构磁共振成像数据,这些参与者也参与了触觉时间顺序判断(TOJ)任务。我们提取了68个区域的皮质厚度和卷曲表面积作为皮质特征。我们发现,在包括右侧眶部、左右中央后回、左侧楔前叶、左侧顶上小叶、右侧颞中回、左侧颞上回、右侧楔叶、左侧缘上回和右侧额中回喙部在内的10个区域中,大脑皮质较薄、较大且卷曲较多的参与者,其判断颠倒程度较小。根据主要的理论观点,我们认为上述区域的皮质精细化通过以下方式改善交叉手TOJ表现:将触觉刺激与左侧顶叶区域正确的空间表征更好地整合,在中央后回更好地表征空间信息,或者右侧眶部改善自上而下的抑制控制。