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Atlas-based investigation of human brain tissue microstructural spatial heterogeneity and interplay between transverse relaxation time and radial diffusivity.

机译:基于图集的人脑组织微观结构空间异质性以及横向弛豫时间与径向扩散率之间相互作用的研究。

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摘要

Microstructural metrics obtained using magnetic resonance imaging (MRI) such as transverse relaxation time and radial diffusivity have been used as in vivo markers of human brain tissue integrity. Considering the sensitivity of these parameters to some common biophysical contributors and their structural and spatial heterogeneity, we hypothesized that strong inter and intra-regional associations exist between these variables providing evidence to possible interplay between transverse relaxation time and radial diffusivity. To validate our hypothesis we obtained high resolution anatomical T1-weighted data and fused it with T2-relaxometry and diffusion tensor imaging (DTI) data on a cohort of healthy adults. The anatomical data were parcellated using FreeSurfer and then coaligned and fused with the T2 and DTI maps. Our data reveal some association between transverse relaxation and radial diffusivity that may help toward the interpretation and modeling of the biophysical contributors to the measured MRI metrics.
机译:使用磁共振成像(MRI)获得的微观结构指标(例如横向弛豫时间和径向扩散率)已被用作人脑组织完整性的体内标记。考虑到这些参数对某些常见生物物理成分的敏感性及其结构和空间异质性,我们假设这些变量之间存在强烈的区域间和区域内关联,从而提供了横向弛豫时间和径向扩散率之间可能相互作用的证据。为了验证我们的假设,我们获得了高分辨率的解剖T1加权数据,并将其与T2松弛测量法和弥散张量成像(DTI)数据融合在了一组健康成年人身上。使用FreeSurfer分割解剖数据,然后将其与T2和DTI映射图对齐并融合。我们的数据揭示了横向弛豫和径向扩散率之间的某种关联,这可能有助于解释和建模所测MRI指标的生物物理成分。

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