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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >One component? Two components? Three? the effect of including a nonexchanging 'free' water component in multicomponent driven equilibrium single pulse observation of T1 and T2
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One component? Two components? Three? the effect of including a nonexchanging 'free' water component in multicomponent driven equilibrium single pulse observation of T1 and T2

机译:一个组成部分?两个组成部分?三? T1和T2的多组分驱动平衡单脉冲观测中包括非交换“游离”水组分的影响

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摘要

Quantitative myelin content imaging provides novel and pertinent information related to underlying pathogenetic mechanisms of myelin-related disease or disorders arising from aberrant connectivity. Multicomponent driven equilibrium single pulse observation of T1 and T2 is a time-efficient multicomponent relaxation analysis technique that provides estimates of the myelin water fraction, a surrogate measure of myelin volume. Unfortunately, multicomponent driven equilibrium single pulse observation of T1 and T2 relies on a two water-pool model (myelin-associated water and intra/extracellular water), which is inadequate within partial volume voxels, i.e., containing brain tissue and ventricle or meninges, resulting in myelin water fraction underestimation. To address this, a third, nonexchanging "free-water" component was introduced to the multicomponent driven equilibrium single pulse observation of T1 and T2 model. Numerical simulations and experimental in vivo data show that the model to perform advantageously within partial volume regions while providing robust and reproducible results. It is concluded that this model is preferable for future studies and analysis.
机译:定量的髓磷脂含量成像提供了与异常连接相关的髓磷脂相关疾病或病症的潜在致病机制相关的新颖而相关的信息。 T1和T2的多组分驱动平衡单脉冲观测是一种省时的多组分弛豫分析技术,可提供对髓磷脂水含量的估算,这是髓磷脂体积的替代量度。不幸的是,T1和T2的多组分驱动平衡单脉冲观测依赖于两个水池模型(髓磷脂相关水和细胞内/细胞外水),在部分体积的体素(即包含脑组织和脑室或脑膜)中是不够的,导致髓磷脂水分数被低估。为了解决这个问题,将第三种不可交换的“自由水”成分引入到T1和T2模型的多成分驱动平衡单脉冲观测中。数值模拟和体内实验数据表明,该模型在部分体积区域内具有优势,同时提供了可靠且可重现的结果。结论是,该模型对于将来的研究和分析是更可取的。

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