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Sensitivity of literature T1 mapping methods to the underlying magnetization transfer parameters

Medical Physics 2025-12-15 v3 Biological Physics

Abstract

Purpose: Magnetization transfer (MT) has been identified as the principal source of T1T_1 variability in the MRI literature. This study assesses the sensitivity of established T1T_1 mapping techniques to variations in the underlying MT parameters. Methods: For each T1T_1-mapping method, the observed T1T_1 was simulated as a function of the underlying MT parameters piMTp_i^\text{MT}, corresponding to different brain regions of interest (ROIs) at 3T. As measures of sensitivity, the derivatives T1observed/piMT\partial T_1^\text{observed} / \partial p_i^\text{MT} were computed and analyzed with a linear mixed-effects model as a function of piMTp_i^\text{MT}, ROI, pulse sequence type (e.g., inversion recovery, variable flip angle), and the individual sequences. Results: The analyzed T1T_1-mapping sequences have a considerable sensitivity to changes in the semi-solid spin pool size m0sm_0^\text{s}, T1fT_1^\text{f} of the free, T1sT_1^\text{s} of the semi-solid spin pool, and the (inverse) exchange rate TxT_\text{x}. All derivatives vary considerably with the underlying MT parameters and between pulse sequences. In general, the derivatives cannot be determined by the sequence type, but rather depend on the implementation details of the sequence. One notable exception is that variable-flip-angle methods are, in general, more sensitive to the exchange rate than inversion-recovery methods. Conclusion: Variations in the observed T1T_1 can be caused by several underlying MT parameters, and the sensitivity to each parameter depends on both the underlying MT parameters and the sequence.

Keywords

Cite

@article{arxiv.2509.13644,
  title  = {Sensitivity of literature T1 mapping methods to the underlying magnetization transfer parameters},
  author = {Jakob Assländer},
  journal= {arXiv preprint arXiv:2509.13644},
  year   = {2025}
}