Western University, London, Ontario, Canada.
University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Magn Reson Med. 2025 Feb;93(2):788-802. doi: 10.1002/mrm.30298. Epub 2024 Sep 25.
To investigate microstructural alterations induced by perfusion fixation in brain tissues using advanced diffusion MRI techniques and estimate their potential impact on the application of ex vivo models to in vivo microstructure.
We used oscillating gradient spin echo (OGSE) and b-tensor encoding diffusion MRI to examine in vivo and ex vivo microstructural differences in the marmoset brain. OGSE was used to shorten effective diffusion times, whereas b-tensor encoding allowed for the differentiation of isotropic and anisotropic kurtosis. Additionally, we performed Monte Carlo simulations to estimate the potential microstructural changes in the tissues.
We report large changes (˜50%-60%) in kurtosis frequency dispersion (OGSE) and in both anisotropic and isotropic kurtosis (b-tensor encoding) after perfusion fixation. Structural MRI showed an average volume reduction of about 10%. Monte Carlo simulations indicated that these alterations could likely be attributed to extracellular fluid loss possibly combined with axon beading and increased dot compartment signal fraction. Little evidence was observed for reductions in axonal caliber.
Our findings shed light on advanced MRI parameter changes that are induced by perfusion fixation and potential microstructural sources for these changes. This work also suggests that caution should be exercised when applying ex vivo models to infer in vivo tissue microstructure, as significant differences may arise.
使用先进的扩散 MRI 技术研究灌注固定在脑组织中引起的微观结构改变,并评估其对将离体模型应用于活体微观结构的潜在影响。
我们使用振荡梯度回波(OGSE)和 b 张量编码扩散 MRI 来检查狨猴大脑的体内和离体微观结构差异。OGSE 用于缩短有效扩散时间,而 b 张量编码则允许区分各向同性和各向异性的峰度。此外,我们进行了蒙特卡罗模拟来估计组织中潜在的微观结构变化。
我们报告了在灌注固定后,各向异性峰度(OGSE)和各向同性和各向异性峰度(b 张量编码)的频散都会发生较大变化(约 50%-60%)。结构 MRI 显示平均体积减少了约 10%。蒙特卡罗模拟表明,这些改变可能归因于细胞外液的损失,可能伴有轴突珠化和增加的点腔信号分数。很少有证据表明轴突口径减小。
我们的研究结果揭示了灌注固定引起的高级 MRI 参数变化及其潜在的微观结构来源。这项工作还表明,在将离体模型应用于推断活体组织微观结构时应谨慎,因为可能会出现显著差异。