Division of Biomedical Physics, Office of Science and Engineering Laboratories, Center for Devices and Radiological Health, Office of Medical Products and Tobacco, U.S. Food and Drug Administration, Silver Spring, MD, USA.
Brain Behav. 2020 Jun;10(6):e01617. doi: 10.1002/brb3.1617. Epub 2020 Apr 19.
High reproducibility is critical for ensuring the confidence needed to use functional magnetic resonance imaging (fMRI) activation maps for presurgical planning.
In this study, the comparison of different motion correction methods, spatial smoothing methods, regression methods, and thresholding methods was performed to see whether specific data processing methods can be employed to improve the reproducibility of single-subject fMRI activation. Three test-retest metrics were used: the percent difference in activation volume (PDAV), the difference in the center of mass (DCM), and the Dice Similarity Coefficient (DSC).
The PDAV was minimized when using little or no spatial smoothing and AMPLE thresholding. The DCM was minimized when using affine motion correction and little or no spatial smoothing. The DSC was improved when using affine motion correction and generous spatial smoothing. However, it is believed that the overlap metric may be unsuitable for testing fMRI reproducibility.
Processing methods to improve fMRI reproducibility were determined. Importantly, the processing methods needed to improve reproducibility were dependent on the fMRI activation metric of interest.
高重现性对于确保使用功能磁共振成像 (fMRI) 激活图进行术前规划所需的信心至关重要。
在这项研究中,比较了不同的运动校正方法、空间平滑方法、回归方法和阈值方法,以确定是否可以采用特定的数据处理方法来提高单个体 fMRI 激活的重现性。使用了三个测试-再测试指标:激活体积的百分比差异(PDAV)、质心的差异(DCM)和骰子相似系数(DSC)。
使用很少或不进行空间平滑和 AMPLE 阈值时,PDAV 最小化。使用仿射运动校正和很少或不进行空间平滑时,DCM 最小化。使用仿射运动校正和宽松的空间平滑时,DSC 得到改善。然而,人们认为重叠度量可能不适合测试 fMRI 的重现性。
确定了可提高 fMRI 重现性的处理方法。重要的是,提高重现性所需的处理方法取决于感兴趣的 fMRI 激活度量。