The University of Maryland, College Park, United States.
The University of Maryland, College Park, United States; The University of California, Davis, United States.
Dev Cogn Neurosci. 2019 Jun;37:100655. doi: 10.1016/j.dcn.2019.100655. Epub 2019 May 7.
Although many studies have examined the location and function of the mirror neuron system (MNS) in human adults, we know relatively little about its development. The current study fills this gap by using fMRI to examine for the first time the development of the brain regions implicated in action execution, action observation, and their overlap. We examined age-related differences in brain activation by contrasting a group of children (n = 21) and adults (n = 18). Surfaced-based analyses of action execution and action observation revealed that brain activity for action observation and execution in children is similar to adults, though adults displayed greater activity than children within the right superior parietal lobe during action execution and the occipital lobe during action observation compared to control. Further, within-individual measures of overlapping activation between action observation and execution revealed age-related differences, such that adults, compared to children, displayed more spatial overlap. Moreover, the extent of the overlap in activation across conditions was related to better motor skills and action representation abilities in children. These data indicate that the MNS changes between middle childhood and adulthood. The data also demonstrate the functional significance of the putative MNS to motor skills and action representation during development.
尽管许多研究都探讨了人类成年人中镜像神经元系统 (MNS) 的位置和功能,但我们对其发展过程知之甚少。本研究通过使用 fMRI 首次检查了与动作执行、动作观察及其重叠相关的脑区的发展情况,填补了这一空白。我们通过对比儿童组 (n = 21) 和成年组 (n = 18) 来研究大脑激活的年龄相关性差异。对动作执行和动作观察的基于表面的分析表明,儿童的动作观察和执行的大脑活动与成年人相似,但与控制组相比,成年人在动作执行时的右侧顶叶上回和动作观察时的枕叶中表现出比儿童更高的活动。此外,在个体内部对动作观察和执行之间的重叠激活进行的测量揭示了与年龄相关的差异,例如,与儿童相比,成年人在动作观察和执行之间显示出更多的空间重叠。此外,条件之间激活的重叠程度与儿童更好的运动技能和动作表示能力有关。这些数据表明 MNS 在从中年到成年期间发生变化。这些数据还证明了在发展过程中,假定的 MNS 对运动技能和动作表示具有功能意义。