Department of Neurology, Albert Szent-Györgyi Clinical Center, University of Szeged, Szeged, Hungary.
Neuroscience Research Group of the Hungarian Academy of Sciences and University of Szeged, Szeged, Hungary.
PLoS One. 2019 Apr 26;14(4):e0216032. doi: 10.1371/journal.pone.0216032. eCollection 2019.
Healthy people have a slight leftward bias of spatial attention as measured on the Landmark task. Former studies indicated that lateralisation of brain activation contributes to this attentional bias. In this study we hypothesised that if the spatial bias was consistent over several measurements there would be structural background of it.
Reproducibility of the spatial bias of visuo-spatial attention was measured in twenty healthy subject in a Landmark task over three consecutive days. In order to evaluate the correlation between the spatial attentional bias and the white matter microstructure high angular resolution diffusion MRI was acquired for each subjects. The Track Based Spatial Statistics method was used to measure the hemispheric differences of the white matter microstructure. Probabilistic tractography was used to reveal the connection of the identified regions.
The analysis showed correlation between the behavioural scores and the lateralisation of the white matter microstructure in the parietal white matter (p<0.05, corrected for multiple correlations). Higher FA values on the left are associated to rightward bias. The parietal cluster showed connectivity along the superior longitudinal fascicle on one end to posterior parietal cortex and anteriorly to the putative frontal eye field. From the frontal eye field some of the fibres run towards the nodes of the dorsal attention network to the intraparietal suclus, while some of the fibres travelled toward to ventral attention network to the temporo-parietal junction.
These results indicate that the structural integrity dorsal fronto-parietal network and the connection between the dorsal and ventral attention networks are responsible for the attentional bias in normal healthy controls.
健康人在 Landmark 任务中表现出轻微的左侧空间注意偏向。以前的研究表明,大脑激活的侧化有助于这种注意偏向。在这项研究中,我们假设如果空间偏向在几次测量中保持一致,那么它就有结构背景。
在连续三天的 Landmark 任务中,我们对 20 名健康受试者的视空间注意力空间偏向进行了可重复性测量。为了评估空间注意力偏向与白质微观结构之间的相关性,我们为每位受试者采集了高角度分辨率扩散 MRI。使用基于轨迹的空间统计学方法测量白质微观结构的半球差异。概率追踪用于揭示所确定区域的连接。
分析表明,行为评分与顶叶白质的白质微观结构侧化之间存在相关性(p<0.05,经多重相关性校正)。左侧 FA 值较高与右侧偏向相关。顶叶簇在一个末端与上纵束相连,另一端与后顶叶皮质相连,向前与假设的额眼区相连。从前额眼区,一些纤维向背侧注意网络的节点运行,进入顶内沟,而一些纤维向腹侧注意网络运行,进入颞顶联合。
这些结果表明,背侧额顶网络的结构完整性以及背侧和腹侧注意网络之间的连接,是正常健康对照组注意力偏向的原因。