Umarova Roza M, Reisert Marco, Beier Tanja-Ute, Kiselev Valerij G, Klöppel Stefan, Kaller Christoph P, Glauche Volkmar, Mader Irina, Beume Lena, Hennig Jürgen, Weiller Cornelius
Department of Neurology, University Medical Centre Freiburg, Freiburg, Germany; Freiburg Brain Imaging, University Medical Centre Freiburg, Freiburg, Germany; BrainLinks-BrainTools Cluster of Excellence, University of, Freiburg, Germany.
Hum Brain Mapp. 2014 Sep;35(9):4678-92. doi: 10.1002/hbm.22503. Epub 2014 Mar 25.
Visual neglect results from dysfunction within the spatial attention network. The structural connectivity in undamaged brain tissue in neglect has barely been investigated until now. In the present study, we explored the microstructural white matter characteristics of the contralesional hemisphere in relation to neglect severity and recovery in acute stroke patients. We compared age-matched healthy subjects and three groups of acute stroke patients (9 ± 0.5 days after stroke): (i) patients with nonrecovered neglect (n = 12); (ii) patients with rapid recovery from initial neglect (within the first week post-stroke, n = 7), (iii) stroke patients without neglect (n = 17). We analyzed the differences between groups in grey and white matter density and fractional anisotropy (FA) and used fiber tracking to identify the affected fibers. Patients with nonrecovered neglect differed from those with rapid recovery by FA-reduction in the left inferior parietal lobe. Fibers passing through this region connect the left-hemispheric analogues of the ventral attention system. Compared with healthy subjects, neglect patients with persisting neglect had FA-reduction in the left superior parietal lobe, optic radiation, and left corpus callosum/cingulum. Fibers passing through these regions connect centers of the left dorsal attention system. FA-reduction in the identified regions correlated with neglect severity. The study shows for the first time white matter changes within the spatial attention system remote from the lesion and correlating with the extent and persistence of neglect. The data support the concept of neglect as disintegration within the whole attention system and illustrate the dynamics of structural-functional correlates in acute stroke.
视觉忽视是由空间注意力网络功能障碍引起的。迄今为止,几乎没有研究过忽视患者未受损脑组织的结构连通性。在本研究中,我们探讨了急性中风患者对侧半球的微观结构白质特征与忽视严重程度和恢复情况的关系。我们比较了年龄匹配的健康受试者和三组急性中风患者(中风后9±0.5天):(i)忽视未恢复的患者(n = 12);(ii)最初忽视迅速恢复的患者(中风后第一周内,n = 7);(iii)无忽视的中风患者(n = 17)。我们分析了各组在灰质和白质密度以及分数各向异性(FA)方面的差异,并使用纤维追踪来识别受影响的纤维。忽视未恢复的患者与迅速恢复的患者相比,左侧顶下叶FA降低。穿过该区域的纤维连接腹侧注意力系统的左半球对应区域。与健康受试者相比,持续存在忽视的患者在左侧顶上叶、视辐射以及左侧胼胝体/扣带束有FA降低。穿过这些区域的纤维连接左侧背侧注意力系统的中心。在识别区域的FA降低与忽视严重程度相关。该研究首次显示了远离病变的空间注意力系统内的白质变化,且与忽视的程度和持续时间相关。数据支持将忽视视为整个注意力系统瓦解的概念,并说明了急性中风中结构-功能相关性的动态变化。