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Automatic Magnetic Resonance Spinal Cord Segmentation with Topology Constraints for Variable Fields of View

机译:具有拓扑约束的可变视野自动磁共振脊髓分割

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摘要

Spinal cord segmentation is an important step in the analysis of neurological diseases such as multiple sclerosis. Several studies have shown correlations between disease progression and metrics relating to spinal cord atrophy and shape changes. Current practices primarily involve segmenting the spinal cord manually or semi-automatically, which can be inconsistent and time-consuming for large datasets. An automatic method that segments the spinal cord and cerebrospinal fluid from magnetic resonance images is presented. The method uses a deformable atlas and topology constraints to produce results that are robust to noise and artifacts. The method is designed to be easily extended to new data with different modalities, resolutions, and fields of view. Validation was performed on two distinct datasets. The first consists of magnetization transfer-prepared T2*-weighted gradient-echo MRI centered only on the cervical vertebrae (C1-C5). The second consists of T1-weighted MRI that cover both the cervical and portions of the thoracic vertebrae (C1-T4). Results were found to be highly accurate in comparison to manual segmentations. A pilot study was carried out to demonstrate the potential utility of this new method for research and clinical studies of multiple sclerosis.
机译:脊髓分割是分析神经系统疾病(如多发性硬化症)的重要步骤。多项研究表明,疾病进展与与脊髓萎缩和形状变化有关的指标之间具有相关性。当前的实践主要涉及手动或半自动分割脊髓,这对于大型数据集可能是不一致且耗时的。提出了一种从磁共振图像中分割脊髓和脑脊液的自动方法。该方法使用可变形的图集和拓扑约束来生成对噪声和伪影具有鲁棒性的结果。该方法旨在轻松扩展到具有不同模式,分辨率和视野的新数据。验证是在两个不同的数据集上进行的。第一个包括仅在颈椎(C1-C5)上居中的磁化转移准备的T2 *加权梯度回波MRI。第二个包括T1加权MRI,覆盖子宫颈和部分胸椎(C1-T4)。与手动分割相比,发现结果是高度准确的。进行了一项初步研究,以证明该新方法在多发性硬化症的研究和临床研究中的潜在效用。

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