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重新审视作为研究半球专门化工具的标志性任务:什么才是正确的?

Revisiting the Landmark Task as a tool for studying hemispheric specialization: What's really right?

机构信息

Center for Brain Plasticity and Recovery, Georgetown University, Building D, Suite 145, 4000 Reservoir Road NW, Washington, D.C. 20057, USA.

Center for Brain Plasticity and Recovery, Georgetown University, Building D, Suite 145, 4000 Reservoir Road NW, Washington, D.C. 20057, USA.

出版信息

Neuropsychologia. 2019 Apr;127:57-65. doi: 10.1016/j.neuropsychologia.2019.01.022. Epub 2019 Feb 22.

Abstract

The "Landmark Task" (LT) is a line bisection judgment task that predominantly activates right parietal cortex. The typical version requires observers to judge bisections for horizontal lines that cross their egocentric midline and therefore may depend on spatial attention as well as spatial representation of the line segments. To ask whether the LT is indeed right-lateralized regardless of spatial attention (for which the right hemisphere is known to be important), we examined LT activation in 26 neurologically healthy young adults using vertical (instead of horizontal) stimuli, as compared with a luminance control task that made similar demands on spatial attention. We also varied task difficulty, which is known to affect lateralization in both spatial and language tasks. Despite these changes to the task, we observed right-lateralized parietal activations similar to those reported in other LT studies, both at group level and in individual lateralization indices. We conclude that LT activation is robustly right-lateralized, perhaps uniquely so among commonly-studied spatial tasks. We speculate that the unique properties of the LT reside in its requirement to judge relative magnitudes of the two line segments, rather than in the more general aspects of spatial attention or visual-spatial representation.

摘要

“地标任务”(LT)是一种线二分判断任务,主要激活右顶叶皮层。典型的版本要求观察者判断穿过自我中心中线的水平线的二分法,因此可能依赖于空间注意以及线段的空间表示。为了确定 LT 是否确实与空间注意无关(而右半球已知对空间注意很重要),我们使用垂直(而不是水平)刺激检查了 26 名神经健康的年轻成年人的 LT 激活情况,并与亮度控制任务进行了比较,该任务对空间注意有类似的要求。我们还改变了任务难度,这在空间和语言任务中都已知会影响侧化。尽管任务发生了这些变化,但我们在组水平和个体侧化指数上都观察到了类似于其他 LT 研究报告的右侧顶叶激活。我们的结论是,LT 激活是稳健的右侧化,在常用的空间任务中可能是独一无二的。我们推测,LT 的独特性质在于它需要判断两个线段的相对大小,而不是更一般的空间注意或视觉空间表示方面。

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