A new evaluation of the brain parenchymal fraction: Application in multiple sclerosis longitudinal studies

J. Souplet, C. Lebrun, N. Ayache, G. Malandain
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引用次数: 2

Abstract

In multiple sclerosis (MS) research, burden of disease and treatments efficacy are mainly evaluated with lesion load and atrophy. The former being poorly correlated with patient's handicap, it is of interest to evaluate accurately the latter. A lot of methods to measure the brain atrophy are available in the literature. The brain parenchymal fraction (BPF) is one of these methods. It needs a precise segmentation of the brain and of the cerebro-spinal fluid. However, artefacts like partial volume effects (PVE) can impair this classification. According to some articles, the BPF may also be less precise in longitudinal studies. To address these points, this article proposes a new method to evaluate the BPF which is based on an expectation-minimization framework taking into consideration the PVE. Modifications of the workflow are also proposed to improve its reliability in longitudinal study. Experiments have been conducted on simulated pathological images that validate the different measures.
脑实质分数的新评价:在多发性硬化症纵向研究中的应用
在多发性硬化症(MS)研究中,主要以病变负荷和萎缩程度来评价疾病负担和治疗效果。前者与患者的残疾相关性较差,因此对后者的准确评估具有重要意义。文献中有很多测量脑萎缩的方法。脑实质分数(BPF)是其中一种方法。需要对大脑和脑脊液进行精确的分割。然而,像部分体积效应(PVE)这样的人为因素会损害这种分类。根据一些文章,BPF在纵向研究中也可能不太精确。为了解决这些问题,本文提出了一种新的评估BPF的方法,该方法基于考虑PVE的期望最小化框架。本文还提出了改进工作流程的建议,以提高其在纵向研究中的可靠性。在模拟病理图像上进行了实验,验证了不同的措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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