Schilling Kurt, Zhang Fan, Román Claudio, O'Donnell Lauren J, Guevara Pamela
Vanderbilt University Institute of Imaging Science, Nashville, TN, USA.
University of Electronic Science and Technology of China, Chengdu, China.
Brain Struct Funct. 2025 Jun 14;230(6):97. doi: 10.1007/s00429-025-02966-w.
Brain short association fibers (SAFs) significantly outnumber long fibers; however, these short connections have been less studied due to their small size, high inter-subject variability, and partial volume effects. Recent advancements in neuroimaging have made SAF tractography feasible through improvements in image quality and processing pipelines, though their tracking remains challenging, requiring specific tractography parameters and adapted pipelines for a reproducible reconstruction of superficial white matter (WM) bundles. Consequently, the segmentation and clustering of U-fibers within SAFs have proven feasible, providing new insights into the organization of cortical connectivity and enabling the study of SAFs in both healthy and pathological brains.
脑内短联合纤维(SAFs)的数量显著多于长纤维;然而,由于其尺寸小、个体间变异性高以及部分容积效应,这些短连接的研究较少。神经影像学的最新进展通过提高图像质量和处理流程使SAF纤维束成像变得可行,尽管其追踪仍然具有挑战性,需要特定的纤维束成像参数和适配的流程来实现对浅表白质(WM)束的可重复重建。因此,已证明对SAFs内U型纤维进行分割和聚类是可行的,这为皮质连接组织提供了新见解,并有助于对健康和患病大脑中的SAFs进行研究。