most citedReduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner

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physics.med-ph2026

Vendor-Agnostic Joint Relaxometry and Myelin Water Fraction Mapping with B1 and Motion Correction

Unay Dorken Gallastegi, Shohei Fujita, Yohan Jun +19

Obtaining consistent quantitative maps of myelin content and relaxation times across different sites and vendors is essential for advancing our understanding of brain development.…

physics.med-ph2026

MWF-MIMOSA for efficient simultaneous relaxometry and myelin water fraction mapping

Yuting Chen, Yohan Jun, Hyeong-Geol Shin +15

Quantitative magnetic resonance imaging (qMRI) provides improved sensitivity and specificity to tissue composition and pathological alterations compared with conventional contrast-…

physics.med-ph20261 cited

Reduced NEXI protocol for the quantification of human gray matter microstructure on the Connectome 2.0 scanner

Quentin Uhl, Tommaso Pavan, Julianna Gerold +10

Biophysical diffusion MRI models like Neurite Exchange Imaging (NEXI) are essential for probing gray matter microstructure, estimating compartment diffusivities, neurite fraction,…

physics.med-ph2025

MIMOSA: Multi-parametric Imaging using Multiple-echoes with Optimized Simultaneous Acquisition for highly-efficient quantitative MRI

Yuting Chen, Yohan Jun, Amir Heydari +8

Purpose: To develop a new sequence, MIMOSA, for highly-efficient T1, T2, T2*, proton density (PD), and source separation quantitative susceptibility mapping (QSM). Methods: MIMOSA…

physics.med-ph2025

PRIME: Phase Reversed Interleaved Multi-Echo acquisition enables highly accelerated distortion-free diffusion MRI

Yohan Jun, Qiang Liu, Ting Gong +13

Purpose: To develop and evaluate a new pulse sequence for highly accelerated distortion-free diffusion MRI (dMRI) by inserting additional echoes without prolonging TR, when general…

physics.med-ph2025

Multishot Dual Polarity GRAPPA: Robust Nyquist Ghost Correction for multishot EPI

Yuancheng Jiang, Yohan Jun, Qiang Liu +4

Purpose: This work aims to develop a robust Nyquist ghost correction method for multishot echo-planar imaging (EPI). The method helps correct challenging Nyquist ghosts, particular…