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Evaluating arcuate fasciculus laterality measurements across dataset and tractography pipelines

机译:在数据集和牵引管中评估arcatuate框横向性测量

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摘要

Abstract The arcuate fasciculi are white‐matter pathways that connect frontal and temporal lobes in each hemisphere. The arcuate plays a key role in the language network and is believed to be left‐lateralized, in line with left hemisphere dominance for language. Measuring the arcuate in vivo requires diffusion magnetic resonance imaging–based tractography, but asymmetry of the in vivo arcuate is not always reliably detected in previous studies. It is unknown how the choice of tractography algorithm, with each method's freedoms, constraints, and vulnerabilities to false‐positive and ‐negative errors, impacts findings of arcuate asymmetry. Here, we identify the arcuate in two independent datasets using a number of tractography strategies and methodological constraints, and assess their impact on estimates of arcuate laterality. We test three tractography methods: a deterministic, a probabilistic, and a tractography‐evaluation (LiFE) algorithm. We extract the arcuate from the whole‐brain tractogram, and compare it to an arcuate bundle constrained even further by selecting only those streamlines that connect to anatomically relevant cortical regions. We test arcuate macrostructure laterality, and also evaluate microstructure profiles for properties such as fractional anisotropy and quantitative R1. We find that both tractography choice and implementing the cortical constraints substantially impact estimates of all indices of arcuate laterality. Together, these results emphasize the effect of the tractography pipeline on estimates of arcuate laterality in both macrostructure and microstructure.
机译:摘要arcatuari是白盘途径,可以在每个半球中连接正面和颞叶。 arcation在语言网络中发挥着关键作用,被认为是左侧的,符合左半球对语言的偏好。测量体内弓形需要扩散磁共振成像的杂图,但在先前的研究中,体内弓形的不对称性并不总是可靠地检测到的。尚不清楚如何选择牵引算法,每种方法的自由,约束和漏洞都对假正和阴误误差,影响弧形不对称的结果。在这里,我们使用许多牵引策略和方法限制来确定两个独立数据集的弓形,并评估它们对弓形横向性估计的影响。我们测试三个牵引方法:确定性,概率和牵引评估(Life)算法。我们通过选择连接到解剖学相关的皮质区域的简化线,将其从整个脑外牵引图中提取到弧形束的弧形束。我们测试弧形宏观结构横向,并且还评估用于分数各向异性和定量R1的性质的微观结构型材。我们发现,牵引选择和实施皮质约束基本上影响所有弓形横向性指数的估计。这些结果在一起强调了牵引管道对宏观结构和微观结构的弓形横向性估计的影响。

著录项

  • 来源
    《Human brain mapping》 |2019年第13期|共17页
  • 作者单位

    The Edmond &

    Lily Safra Center for Brain SciencesThe Hebrew University of JerusalemJerusalem Israel;

    Institute for Learning &

    Brain Sciences and Department of Speech and Hearing ScienceThe University;

    The Edmond &

    Lily Safra Center for Brain SciencesThe Hebrew University of JerusalemJerusalem Israel;

    The University of Washington eScience InstituteThe University of WashingtonSeattle Washington USA;

    The Edmond &

    Lily Safra Center for Brain SciencesThe Hebrew University of JerusalemJerusalem Israel;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

    asymmetry; diffusion MRI; microstructure; quantitative MRI; tractogram;

    机译:不对称;扩散MRI;微观结构;定量MRI;牵引图;

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