Center for Brain Plasticity and Recovery, Georgetown University, Building D, Suite 145, 4000 Reservoir Road NW, Washington, DC 20057, USA.
Center for Brain Plasticity and Recovery, Georgetown University, Building D, Suite 145, 4000 Reservoir Road NW, Washington, DC 20057, USA; Intellectual and Developmental Disabilities Research Center, Children's National Health System, 111 Michigan Avenue NW, Washington, DC 20010, USA.
Neuropsychologia. 2017 Nov;106:194-206. doi: 10.1016/j.neuropsychologia.2017.10.005. Epub 2017 Oct 4.
In this paper, we examine brain lateralization patterns for a complex visual-spatial task commonly used to assess general spatial abilities. Although spatial abilities have classically been ascribed to the right hemisphere, evidence suggests that at least some tasks may be strongly bilateral. For example, while functional neuroimaging studies show right-lateralized activations for some spatial tasks (e.g., line bisection), bilateral activations are often reported for others, including classic spatial tasks such as mental rotation. Moreover, constructive apraxia has been reported following left- as well as right-hemisphere damage in adults, suggesting a role for the left hemisphere in spatial function. Here, we use functional neuroimaging to probe lateralization while healthy adults carry out a simplified visual-spatial construction task, in which they judge whether two geometric puzzle pieces can be combined to form a square. The task evokes strong bilateral activations, predominantly in parietal and lateral occipital cortex. Bilaterality was observed at the single-subject as well as at the group level, and regardless of whether specific items required mental rotation. We speculate that complex visual-spatial tasks may generally engage more bilateral activation of the brain than previously thought, and we discuss implications for understanding hemispheric specialization for spatial functions.
在本文中,我们研究了一种常用于评估一般空间能力的复杂视觉-空间任务的大脑偏侧化模式。尽管空间能力通常归因于右脑,但有证据表明,至少某些任务可能具有强烈的双侧性。例如,虽然功能神经影像学研究显示某些空间任务(例如,线二分)存在右侧激活,但其他任务通常报告存在双侧激活,包括经典的空间任务,如心理旋转。此外,成年人的左脑和右脑损伤后都报告了构象性失用症,这表明左脑在空间功能中发挥作用。在这里,我们使用功能神经影像学来探测健康成年人在执行简化的视觉-空间构建任务时的偏侧化,他们在该任务中判断两个几何拼图是否可以组合成一个正方形。该任务引发了强烈的双侧激活,主要在顶叶和外侧枕叶皮层。在个体水平和群体水平上都观察到了双侧性,并且无论特定项目是否需要心理旋转。我们推测,复杂的视觉-空间任务可能比以前认为的更能引起大脑的双侧激活,我们还讨论了对理解空间功能的半球专门化的影响。