触摸观察的神经网络

Michael Schaefer, Esther Kühn, Felix Schweitzer, Markus Muehlhan
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摘要

摘要 研究不断表明,仅仅观察触觉就能调动我们自身的体感皮层。然而,目前还缺乏对相关网络的系统评估。在此,我们展示了一种元分析连接建模(MACM)方法的结果,该方法基于激活似然估计(ALE)与静息状态分析相结合所揭示的集群,以检测我们与他人的触觉体验产生共鸣的能力所依赖的网络。激活似然估计分析发现了额叶、颞叶和顶叶脑区的8个集群,这些脑区的行为领域特征主要与认知和感知有关。MACM 分析进一步确定了由皮层下结构提供服务的独特网络,揭示了所有参与触摸观察的集群都与额叶中下部和扣带前皮层控制区相连,并表明颞叶内侧记忆结构不会在触摸观察期间为网络激活提供信息(经事后静息状态连接分析证实)。我们的数据强调了高层控制区域的重要性,并表明过去的身体经验在对他人经验的临时感知中只起了很小的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The neural networks of touch observation
Abstract Studies have consistently demonstrated that the mere observation of touch engages our own somatosensory cortices. However, a systematic evaluation of the involved networks is missing. Here, we present results of a meta-analytic connectivity modeling (MACM) approach based on clusters revealed by activation likelihood estimation (ALE) combined with resting-state analysis to detect networks subserving our ability to empathize with tactile experiences of other people. ALE analysis revealed 8 clusters in frontal, temporal, and parietal brain areas, which behavioral domain profiles predominantly refer to cognition and perception. The MACM analysis further identified distinct networks that are subserved by subcortical structures, revealed that all clusters involved in touch observation are connected to dorso-medial frontal and anterior cingulate cortex control regions, and showed that medial temporal lobe memory structures do not inform network activation during touch observation (confirmed by post hoc resting-state connectivity analyses). Our data highlight the importance of higher-level control areas and suggest only a minor role for past bodily experiences in the ad hoc perception of other people’s experiences.
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