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抑制控制与右侧额下回的结构分割

Inhibitory Control and the Structural Parcelation of the Right Inferior Frontal Gyrus.

作者信息

Boen Rune, Raud Liisa, Huster Rene J

机构信息

Multimodal Imaging and Cognitive Control Lab, Department of Psychology, University of Oslo, Oslo, Norway.

Department of Medical Genetics, Oslo University Hospital, Oslo, Norway.

出版信息

Front Hum Neurosci. 2022 Feb 24;16:787079. doi: 10.3389/fnhum.2022.787079. eCollection 2022.

Abstract

The right inferior frontal gyrus (rIFG) has most strongly, although not exclusively, been associated with response inhibition, not least based on covariations of behavioral performance measures and local gray matter characteristics. However, the white matter microstructure of the rIFG as well as its connectivity has been less in focus, especially when it comes to the consideration of potential subdivisions within this area. The present study reconstructed the structural connections of the three main subregions of the rIFG (i.e., pars opercularis, pars triangularis, and pars orbitalis) using diffusion tensor imaging, and further assessed their associations with behavioral measures of inhibitory control. The results revealed a marked heterogeneity of the three subregions with respect to the pattern and extent of their connections, with the pars orbitalis showing the most widespread inter-regional connectivity, while the pars opercularis showed the lowest number of interconnected regions. When relating behavioral performance measures of a stop signal task to brain structure, the data indicated an association between the dorsal opercular connectivity and the go reaction time and the stopping accuracy.

摘要

右下额叶回(rIFG)与反应抑制的关联最为紧密,尽管并非唯一,这至少是基于行为表现测量与局部灰质特征的协变关系。然而,rIFG的白质微观结构及其连接性较少受到关注,尤其是在考虑该区域内潜在的细分区域时。本研究使用扩散张量成像重建了rIFG三个主要亚区域(即岛盖部、三角部和眶部)的结构连接,并进一步评估了它们与抑制控制行为测量的关联。结果显示,这三个亚区域在连接模式和范围方面存在显著异质性,其中眶部显示出最广泛的区域间连接,而岛盖部显示出相互连接区域的数量最少。当将停止信号任务的行为表现测量与脑结构相关联时,数据表明背侧岛盖连接与“继续”反应时间和停止准确性之间存在关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f4a/8907402/e9044a864308/fnhum-16-787079-g001.jpg

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