Characterisation of the neonatal brain using myelin-sensitive magnetisation transfer imaging

Manuel Blesa Cábez, Kadi Vaher, Elizabeth N. York, Paola Galdi, Gemma Sullivan, David Q. Stoye, Jill Hall, Amy E. Corrigan, Alan J. Quigley, Adam D. Waldman, Mark E. Bastin, Michael J. Thrippleton, James P. Boardman
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Abstract

Abstract A cardinal feature of the encephalopathy of prematurity is dysmaturation of developing white matter and subsequent hypomyelination. Magnetisation transfer imaging (MTI) offers surrogate markers for myelination, including magnetisation transfer ratio (MTR) and magnetisation transfer saturation (MTsat). Using data from 105 neonates, we characterise MTR and MTsat in the developing brain and investigate how these markers are affected by gestational age at scan and preterm birth. We explore correlations of the two measures with fractional anisotropy (FA), radial diffusivity (RD) and T1w/T2w ratio which are commonly used markers of white matter integrity in early life. We used two complementary analysis methods: voxel-wise analysis across the white matter skeleton, and tract-of-interest analysis across 16 major white matter tracts. We found that MTR and MTsat positively correlate with gestational age at scan. Preterm infants at term-equivalent age had lower values of MTsat in the genu and splenium of the corpus callosum, while MTR was higher in central white matter regions, the corticospinal tract and the uncinate fasciculus. Correlations of MTI metrics with other MRI parameters revealed that there were moderate positive correlations between T1w/T2w and MTsat and MTR at voxel level, but at tract level FA had stronger positive correlations with these metrics. RD had the strongest correlations with MTI metrics, particularly with MTsat in major white matter tracts. The observed changes in MTI metrics are consistent with an increase in myelin density during early postnatal life, and lower myelination and cellular/axonal density in preterm infants at term-equivalent age compared to term controls. Furthermore, correlations between MTI-derived features and conventional measures from diffusion MRI provide new understanding about the contribution of myelination to non-specific imaging metrics that are often used to characterise early brain development.
使用髓磷脂敏感磁化转移成像表征新生儿大脑
早产儿脑病的一个主要特征是发育中的白质发育异常和随后的髓鞘发育不足。磁化转移成像(MTI)为髓鞘形成提供了替代标记,包括磁化转移比(MTR)和磁化转移饱和度(MTsat)。利用105名新生儿的数据,我们描述了发育中的大脑中MTR和MTsat的特征,并研究了这些标记如何受到扫描时胎龄和早产的影响。我们探讨了这两项指标与分数各向异性(FA)、径向扩散率(RD)和T1w/T2w比率(早期生活中常用的白质完整性标记)之间的相关性。我们使用了两种互补的分析方法:跨白质骨架的体素分析和跨16个主要白质束的兴趣束分析。我们发现MTR和MTsat与扫描时的胎龄呈正相关。足月等龄早产儿的膝和胼胝体脾的MTsat值较低,而中央白质区、皮质脊髓束和钩状束的MTR值较高。MTI指标与其他MRI参数的相关性显示,T1w/T2w与MTsat和MTR在体素水平上存在中度正相关,但在束水平上FA与这些指标有较强的正相关。RD与MTI指标的相关性最强,特别是与主要白质束的MTsat。观察到的MTI指标的变化与出生后早期髓磷脂密度的增加是一致的,与足月对照组相比,足月等龄早产儿的髓鞘和细胞/轴突密度较低。此外,mti衍生特征与弥散MRI常规测量之间的相关性为髓鞘形成对非特异性成像指标的贡献提供了新的理解,这些指标通常用于表征早期大脑发育。
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