Aston Brain Centre, School of Life and Health Sciences, Aston University, Birmingham, B4 7ET, United Kingdom; ARC Centre of Excellence in Cognition and Its Disorders, Macquarie University, Sydney, 2109, Australia; Department of Cognitive Science, Macquarie University, Sydney, 2109, Australia.
Aston Brain Centre, School of Life and Health Sciences, Aston University, Birmingham, B4 7ET, United Kingdom.
Neuroimage. 2018 Aug 15;177:98-107. doi: 10.1016/j.neuroimage.2018.05.016. Epub 2018 May 7.
Mentally imagining another's perspective is a high-level social process, reliant on manipulating internal representations of the self in an embodied manner. Recently Wang et al. (2016) showed that theta-band (3-7 Hz) brain oscillations within the right temporo-parietal junction (rTPJ) and brain regions coding for motor/body schema contribute to the process of perspective-taking. Using a similar paradigm, we set out to unravel the extended functional brain network in detail. Increasing the angle between self and other perspective was accompanied by longer reaction times and increases in theta power within rTPJ, right lateral prefrontal cortex (PFC) and right anterior cingulate cortex (ACC). Using Granger-causality, we showed that lateral PFC and ACC exert top-down influence over rTPJ, indicative of executive control processes required for managing conflicts between self and other perspectives. Finally, we quantified patterns of whole-brain phase coupling in relation to the rTPJ. Results suggest that rTPJ increases its theta-band phase synchrony with brain regions involved in mentalizing and regions coding for motor/body schema; whilst decreasing synchrony to visual regions. Implications for neurocognitive models are discussed, and it is proposed that rTPJ acts as a 'hub' to route bottom-up visual information to internal representations of the self during perspective-taking, co-ordinated by theta-band oscillations.
从另一个人的角度进行心理想象是一种高级的社会过程,依赖于以体现的方式操纵自我的内部表示。最近,Wang 等人(2016 年)表明,右颞顶联合区(rTPJ)内的 theta 波段(3-7 Hz)脑振荡以及编码运动/身体图式的大脑区域有助于视角的转换。使用类似的范式,我们着手详细阐明扩展的功能大脑网络。自我和他人视角之间的角度增加伴随着反应时间的延长和 rTPJ、右侧外侧前额叶皮层(PFC)和右侧前扣带皮层(ACC)内的 theta 功率增加。使用格兰杰因果关系,我们表明外侧 PFC 和 ACC 对 rTPJ 施加自上而下的影响,表明需要管理自我和他人视角之间冲突的执行控制过程。最后,我们定量地描述了与 rTPJ 相关的全脑相位耦合模式。结果表明,rTPJ 增加了与心理化相关的脑区和编码运动/身体图式的脑区的 theta 波段相位同步性;同时减少了与视觉区域的同步性。讨论了对神经认知模型的影响,并提出 rTPJ 充当“枢纽”,在视角转换期间将来自视觉信息的底部向上信息路由到自我的内部表示,由 theta 波段振荡协调。