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An Explanation of Signal Changes in DW-fMRI: Monte Carlo Simulation Study of Restricted Diffusion of Water Molecules Using 3D and Two-Compartment Cortical Cell Models

机译:DW-fMRI中信号变化的解释:使用3D和两室皮质细胞模型的水分子受限扩散的Monte Carlo模拟研究

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摘要

Diffusion-weighted (DW)-functional magnetic resonance imaging (fMRI) is a recently reported technique for measuring neural activities by using diffusion-weighted imaging (DWI). DW-fMRI is based on the property that cortical cells swell when the brain is activated. This approach can be used to observe changes in water diffusion around cortical cells. The spatial and temporal resolutions of DW-fMRI are superior to those of blood-oxygenation-level-dependent (BOLD)-fMRI. To investigate how the DWI signal intensities change in DW-fMRI measurement, we carried out Monte Carlo simulations to evaluate the intensities before and after cell swelling. In the simulations, we modeled cortical cells as two compartments by considering differences between the intracellular and the extracellular regions. Simulation results suggested that DWI signal intensities increase after cell swelling because of an increase in the intracellular volume ratio. The simulation model with two compartments, which respectively represent the intracellular and the extracellular regions, shows that the differences in the DWI signal intensities depend on the ratio of the intracellular and the extracellular volumes. We also investigated the MPG parameters, b-value, and separation time dependences on the percent signal changes in DW-fMRI and obtained useful results for DW-fMRI measurements.
机译:扩散加权(DW)功能磁共振成像(fMRI)是最近报道的一种通过使用扩散加权成像(DWI)测量神经活动的技术。 DW-fMRI基于大脑激活时皮质细胞膨胀的特性。该方法可用于观察皮质细胞周围水扩散的变化。 DW-fMRI的时空分辨率优于血氧依赖水平(BOLD)-fMRI。为了研究DW-fMRI测量中DWI信号强度如何变化,我们进行了蒙特卡洛模拟以评估细胞肿胀前后的强度。在模拟中,我们通过考虑细胞内和细胞外区域之间的差异,将皮质细胞建模为两个隔室。模拟结果表明,由于细胞内体积比的增加,DWI信号强度在细胞肿胀后会增加。具有两个分别代表细胞内和细胞外区域的区室的模拟模型表明,DWI信号强度的差异取决于细胞内和细胞外体积的比例。我们还研究了DW-fMRI中MPG参数,b值和分离时间对信号变化百分比的依赖性,并获得了用于DW-fMRI测量的有用结果。

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