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Improved segmentation of deep brain grey matter structures using magnetization transfer (MT) parameter maps

机译:使用磁化传递(MT)参数图改善深部脑灰质结构的分割

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摘要

Basal ganglia and brain stem nuclei are involved in the pathophysiology of various neurological and neuropsychiatric disorders. Currently available structural T1-weighted (T1w) magnetic resonance images do not provide sufficient contrast for reliable automated segmentation of various subcortical grey matter structures. We use a novel, semi-quantitative magnetization transfer (MT) imaging protocol that overcomes limitations in T1w images, which are mainly due to their sensitivity to the high iron content in subcortical grey matter. We demonstrate improved automated segmentation of putamen, pallidum, pulvinar and substantia nigra using MT images. A comparison with segmentation of high-quality T1w images was performed in 49 healthy subjects. Our results show that MT maps are highly suitable for automated segmentation, and so for multi-subject morphometric studies with a focus on subcortical structures.
机译:基底神经节和脑干核参与各种神经系统疾病和神经精神疾病的病理生理。当前可用的结构T1加权(T1w)磁共振图像不能为各种皮层下灰质结构的可靠自动分割提供足够的对比度。我们使用一种新颖的半定量磁化转移(MT)成像协议,该协议克服了T1w图像的局限性,这主要是由于它们对皮层下灰质中高铁含量的敏感性。我们演示了使用MT图像改进的壳壳,苍白质,眼睑和黑质的自动分割。在49位健康受试者中进行了高质量T1w图像分割的比较。我们的结果表明,MT映射非常适合自动分割,因此也适合于以皮下结构为重点的多对象形态计量学研究。

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