论文标题
FEXI如何衡量?
What Does FEXI Measure?
论文作者
论文摘要
过滤器交换成像(FEXI)已经在几项生物医学研究中用于评估细胞膜的渗透性。该方法依赖于使用强扩散权重(导致整体扩散率降低的迁移率过滤器)抑制细胞外信号并监测随后的扩散率恢复。使用Monte Carlo(MC)模拟,我们证明了FEXI对跨环膜交换并不唯一敏感,也不对所涉及的隔室的几何形状:复杂的几何形状提供的位置提供了旋转不受迁移率过滤器影响的位置;此后移至其他位置,此类旋转会导致扩散率恢复,而无需实际渗透到任何膜。这种交换机制挑战了在复杂介质(例如脑灰质)中对FEXI的解释,并为调查的空间打开了巨大的空间,以结晶真正的膜渗透并表征隔室几何形状。
Filter-exchange imaging (FEXI) has already been utilized in several biomedical studies for evaluating the permeability of cell membranes. The method relies on suppressing the extracellular signal using strong diffusion weighting (the mobility filter causing a reduction in the overall diffusivity) and monitoring the subsequent diffusivity recovery. Using Monte Carlo (MC) simulations, we demonstrate that FEXI is not uniquely sensitive to the transcytolemmal exchange but also to the geometry of involved compartments: Complicated geometry offers locations where spins remain unaffected by the mobility filter; moving to other locations afterward, such spins contribute to the diffusivity recovery without actually permeating any membrane. This exchange mechanism challenges the interpretation of FEXI in complex media such as brain gray matter and opens large room for investigation towards crystallizing the genuine membrane permeation and characterizing the compartment geometry.