Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Cardiac DTI using short‐axis PROPELLER: A feasibility study

作者:Mehdi Sadıghı, Danielle Kara, Dingheng Mai, Khôi Nguyen, Shi Chen, Deborah Kwon, Christopher Nguyen · 发表于:Magnetic Resonance in Medicine · 年份:2024 · DOI:10.1002/mrm.30020 · 被引用次数:5 · 研究领域:Advanced Neuroimaging Techniques and Applications、Advanced MRI Techniques and Applications、Cardiac Imaging and Diagnostics

PURPOSE: We aimed to develop a free-breathing (FB) cardiac DTI (cDTI) method based on short-axis PROPELLER (SAP) and M2 motion compensated spin-echo EPI (SAP-M2-EPI) to mitigate geometric distortion and eliminate aliasing in acquired diffusion-weighted (DW) images, particularly in patients with a higher body mass index (BMI). THEORY AND METHODS: The study involved 10 healthy volunteers whose BMI values fell into specific categories: BMI <25 (4 volunteers), 25< BMI <28 (5 volunteers), and BMI >30 (1 volunteer). We compared DTI parameters, including fractional anisotropy (FA), mean diffusivity (MD), and helix angle transmurality (HAT), between SAP-M2-EPI and M2-ssEPI. To evaluate the performance of SAP-M2-EPI in reducing geometric distortions in the left ventricle (LV) compared to CINE and M2-ssEPI, we utilized the DICE similarity coefficient (DSC) and assessed misregistration area. RESULTS: ) and diminished signal loss due to bulk motion when compared to M2-ssEPI. DTI parameter maps exhibited consistent patterns across slices without motion related artifacts. CONCLUSION: SAP-M2-EPI facilitates free-breathing cDTI of the entire LV, effectively eliminating aliasing and minimizing geometric distortion compared to M2-ssEPI. Furthermore, it preserves accurate quantification of myocardial microstructure.