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Orientation-independent magnetization transfer imaging of brain white matter
Zijian Gao1, Ziqin Zhou2, Ziqiang Yu1
1Department of Imaging and Interventional Radiology, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong, China.
Abstract:
White matter in the brain has a highly anisotropic structure, leading to orientation-dependent MRI contrasts, such as those observed in quantitative magnetization transfer (MT). These orientation-dependent contrasts can complicate the quantification of tissue parameters, posing significant challenges for correction methods. A common physical mechanism underlying this orientation dependence is residual dipolar coupling (RDC), which plays a critical role in the anisotropy observed in MRI spin relaxation. A novel technique, macromolecular proton fraction mapping based on spin-lock (MPF-SL), was recently proposed to achieve orientation-independent MT measurements by minimizing RDC effects during data acquisition. This study aimed to validate the orientation independence of MPF-SL in vivo in brain white matter. Experiments were conducted on 20 healthy volunteers, with data collected at two different head orientations. MRI exams were repeated one week apart. MPF-SL measurements showed negligible differences (<2%) between head orientations, while conventional quantitative MT imaging exhibited statistically significant variation (p < 0.05). Both methods demonstrated good repeatability, with intraclass correlation coefficients (ICC) > 0.75, bias < 0.05%, and limits of agreement < 0.5%. These findings confirm that MPF-SL effectively addresses orientation-dependent limitations in MT measurements of white matter, offering a reliable approach for future clinical and research applications.
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