NMR Methods & Development Group, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.
Department of Neurophysics, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.
Sci Rep. 2024 Jun 5;14(1):12961. doi: 10.1038/s41598-024-63483-0.
A variation of the longitudinal relaxation time in brain regions that differ in their main fiber direction has been occasionally reported, however, with inconsistent results. Goal of the present study was to clarify such inconsistencies, and the origin of potential orientation dependence, by applying direct sample rotation and comparing the results from different approaches to measure . A section of fixed porcine spinal cord white matter was investigated at 3 T with variation of the fiber-to-field angle . The experiments included one-dimensional inversion-recovery, MP2RAGE, and variable flip-angle measurements at 22 °C and 36 °C as well as magnetization-transfer (MT) and diffusion-weighted acquisitions. Depending on the technique, different degrees of anisotropy (between 2 and 10%) were observed as well as different dependencies on (monotonic variation or maximum at 30-40°). More pronounced anisotropy was obtained with techniques that are more sensitive to MT effects. Furthermore, strong correlations of -dependent MT saturation and were found. A comprehensive analysis based on the binary spin-bath model for MT revealed an interplay of several orientation-dependent parameters, including the transverse relaxation times of the macromolecular and the water pool as well as the longitudinal relaxation time of the macromolecular pool.
在大脑区域中,纵向弛豫时间 在主纤维方向不同的区域中会发生变化,这种现象时有报道,但结果并不一致。本研究的目的是通过应用直接样品旋转,并比较不同方法测量 的结果,来澄清这种不一致性和潜在的 方向依赖性的来源。在 3T 下,对一段固定的猪脊髓白质进行了研究,变化纤维与场的夹角 。实验包括一维反转恢复、MP2RAGE 和可变翻转角 测量,在 22°C 和 36°C 以及磁化转移(MT)和扩散加权采集。根据技术的不同,观察到不同程度的 各向异性(在 2%到 10%之间),以及对 (单调变化或在 30-40°时达到最大值)的不同依赖性。对 MT 效应更敏感的技术可以获得更明显的各向异性。此外,还发现了与 相关的 MT 饱和和 的强烈相关性。基于 MT 的二进制自旋池模型的综合分析揭示了几个与方向相关的参数的相互作用,包括大分子和水相的横向弛豫时间以及大分子相的纵向弛豫时间。