Laboratory for Neurorehabilitation Science, Medicine Section, Faculty of Science and Medicine, University of Fribourg, Fribourg, Switzerland.
Laboratory for Neurorehabilitation Science, Medicine Section, Faculty of Science and Medicine, University of Fribourg, Fribourg, Switzerland.
Cortex. 2023 Aug;165:38-56. doi: 10.1016/j.cortex.2023.04.007. Epub 2023 May 5.
Mental flexibility (MF) refers to the capacity to dynamically switch from one task to another. Current neurocognitive models suggest that since this function requires interactions between multiple remote brain areas, the integrity of the anatomic tracts connecting these brain areas is necessary to maintain performance. We tested this hypothesis by assessing with a connectome-based lesion-symptom mapping approach the effects of white matter lesions on the brain's structural connectome and their association with performance on the trail making test, a neuropsychological test of MF, in a sample of 167 first unilateral stroke patients. We found associations between MF deficits and damage of i) left lateralized fronto-temporo-parietal connections and interhemispheric connections between left temporo-parietal and right parietal areas; ii) left cortico-basal connections; and iii) left cortico-pontine connections. We further identified a relationship between MF and white matter disconnections within cortical areas composing the cognitive control, default mode and attention functional networks. These results for a central role of white matter integrity in MF extend current literature by providing causal evidence for a functional interdependence among the regional cortical and subcortical structures composing the MF network. Our results further emphasize the necessity to consider connectomics in lesion-symptom mapping analyses to establish comprehensive neurocognitive models of high-order cognitive functions.
心理灵活性 (MF) 是指从一项任务动态切换到另一项任务的能力。目前的神经认知模型表明,由于该功能需要多个远程脑区之间的相互作用,因此连接这些脑区的解剖束的完整性对于维持性能是必要的。我们通过使用基于连接组学的病变 - 症状映射方法来测试这个假设,该方法评估了脑白质病变对大脑结构连接组的影响,以及它们与 167 名首次单侧中风患者的 trail making 测试(一种 MF 的神经心理学测试)表现之间的关联。我们发现 MF 缺陷与以下方面之间存在关联:i)左侧额颞顶叶连接和左颞顶叶与右顶叶之间的半球间连接的损伤;ii)皮质基底连接的损伤;以及 iii)皮质桥脑连接的损伤。我们还发现 MF 与构成认知控制、默认模式和注意力功能网络的皮质区域内的白质连接中断之间存在关系。这些结果为白质完整性在 MF 中的核心作用提供了因果证据,从而扩展了当前文献,证明了构成 MF 网络的区域皮质和皮质下结构之间存在功能相互依赖关系。我们的结果进一步强调了在病变 - 症状映射分析中考虑连接组学的必要性,以建立高级认知功能的综合神经认知模型。