Leunissen Inge, Coxon James P, Caeyenberghs Karen, Michiels Karla, Sunaert Stefan, Swinnen Stephan P
Movement Control and Neuroplasticity Research Group, Department of Kinesiology, Group Biomedical Sciences, KU Leuven.
Hum Brain Mapp. 2014 May;35(5):2459-69. doi: 10.1002/hbm.22341. Epub 2013 Aug 2.
Suppressing and flexibly adapting actions are a critical part of our daily behavioral repertoire. Traumatic brain injury (TBI) patients show clear impairments in this type of action control; however, the underlying mechanisms are poorly understood. Here, we tested whether white matter integrity of cortico-subcortical pathways could account for impairments in task switching, an important component of executive functioning. Twenty young adults with TBI and eighteen controls performed a switching task requiring attention to global versus local stimulus features. Diffusion weighted images were acquired and whole brain tract-based spatial statistics (TBSS) were used to explore where white matter damage was associated with switching impairment. A crossing fiber model and probabilistic tractography further identified the specific fiber populations. Relative to controls, patients with a history of TBI had a higher switch cost and were less accurate. The TBI group showed a widespread decline in fractional anisotropy (FA) throughout the TBSS skeleton. FA in the superior corona radiata showed a negative relationship with switch cost. More specifically, this involved cortico-subcortical loops with the (pre-)supplementary motor area and superior frontal gyrus. These findings provide evidence for damage to frontal-subcortical projections in TBI, which is associated with task switching impairments.
抑制和灵活调整行为是我们日常行为技能的关键部分。创伤性脑损伤(TBI)患者在这类行为控制方面表现出明显的损伤;然而,其潜在机制却知之甚少。在此,我们测试了皮质 - 皮质下通路的白质完整性是否能够解释任务转换(执行功能的一个重要组成部分)中的损伤。20名患有TBI的年轻成年人与18名对照组人员进行了一项转换任务,该任务要求关注全局与局部刺激特征。采集了扩散加权图像,并使用基于全脑纤维束的空间统计学(TBSS)来探究白质损伤与转换损伤相关的部位。交叉纤维模型和概率性纤维束成像进一步确定了特定的纤维群体。相对于对照组,有TBI病史的患者具有更高的转换成本且准确性更低。TBI组在整个TBSS骨架中各向异性分数(FA)普遍下降。放射冠上部的FA与转换成本呈负相关。更具体地说,这涉及到与(前)辅助运动区和额上回的皮质 - 皮质下环路。这些发现为TBI中额叶 - 皮质下投射受损提供了证据,这与任务转换损伤有关。