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深部脑沟标志:脑沟凹定义与提取中的算法及概念改进

Deep sulcal landmarks: algorithmic and conceptual improvements in the definition and extraction of sulcal pits.

作者信息

Auzias G, Brun L, Deruelle C, Coulon O

机构信息

Institut de Neurosciences de la Timone, UMR7289, Aix-Marseille Université & CNRS, Marseille, France; Laboratoire des Sciences de l'Information et des Systèmes, UMR7296, Aix-Marseille Université & CNRS, Marseille, France.

Institut de Neurosciences de la Timone, UMR7289, Aix-Marseille Université & CNRS, Marseille, France.

出版信息

Neuroimage. 2015 May 1;111:12-25. doi: 10.1016/j.neuroimage.2015.02.008. Epub 2015 Feb 9.

Abstract

Recent interest has been growing concerning points of maximum depth within folds, the sulcal pits, that can be used as reliable cortical landmarks. These remarkable points on the cortical surface are defined algorithmically as the outcome of an automatic extraction procedure. The influence of several crucial parameters of the reference technique (Im et al., 2010) has not been evaluated extensively, and no optimization procedure has been proposed so far. Designing an appropriate optimization framework for these parameters is mandatory to guarantee the reproducibility of results across studies and to ensure the feasibility of sulcal pit extraction and analysis on large cohorts. In this work, we propose a framework specifically dedicated to the optimization of the parameters of the method. This optimization framework relies on new measures for better quantifying the reproducibility of the number of sulcal pits per region across individuals, in line with the assumptions of one-to-one correspondence of sulcal roots across individuals which is an explicit aspect of the sulcal roots model (Régis et al., 2005). Our procedure benefits from a combination of improvements, including the use of a convenient sulcal depth estimation and is methodologically sound. Our experiments on two different groups of individuals, with a total of 137 subjects, show an increased reliability across subjects in deeper sulcal pits, as compared to the previous approach, and cover the entire cortical surface, including shallower and more variable folds that were not considered before. The effectiveness of our method ensures the feasibility of a systematic study of sulcal pits on large cohorts. On top of these methodological advances, we quantify the relationship between the reproducibility of the number of sulcal pits per region across individuals and their respective depth and demonstrate the relatively high reproducibility of several pits corresponding to shallower folds. Finally, we report new results regarding the local pit asymmetry, providing evidence that the algorithmic and conceptual approach defended here may contribute to better understanding of the key role of sulcal pits in neuroanatomy.

摘要

近期,人们对褶皱内的最大深度点,即脑沟凹陷的关注度日益增加,这些点可作为可靠的皮质标志。皮质表面上的这些显著点通过算法定义为自动提取程序的结果。参考技术((技术(Im等人,2010年)的几个关键参数的影响尚未得到广泛评估,并且到目前为止尚未提出优化程序。为这些参数设计一个合适的优化框架对于确保跨研究结果的可重复性以及确保在大型队列中进行脑沟凹陷提取和分析的可行性是必不可少的。在这项工作中,我们提出了一个专门用于优化该方法参数的框架。这个优化框架依赖于新的测量方法,以便更好地量化个体间每个区域脑沟凹陷数量的可重复性,这与脑沟根部在个体间一一对应的假设相一致,而这是脑沟根部模型(Régis等人,2005年)的一个明确方面。我们的程序受益于多种改进措施的结合,包括使用方便的脑沟深度估计,并且在方法上是合理的。我们对两组不同个体(共137名受试者)进行的实验表明,与之前的方法相比,更深脑沟凹陷在受试者间的可靠性有所提高,并且覆盖了整个皮质表面,包括之前未考虑过的较浅和更具变异性的褶皱。我们方法的有效性确保了在大型队列中系统研究脑沟凹陷的可行性。除了这些方法上的进步,我们量化了个体间每个区域脑沟凹陷数量的可重复性与其各自深度之间的关系,并证明了对应于较浅褶皱的几个凹陷具有相对较高的可重复性。最后,我们报告了关于局部凹陷不对称性的新结果,提供了证据表明这里所倡导的算法和概念方法可能有助于更好地理解脑沟凹陷在神经解剖学中的关键作用。

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