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Published on: July 5, 2021
Feasibility of Using Short Repetition Time for Brain Tumors in 23Na-MRI
Koji Yamashita1, Makoto Obara2, Kazufumi Kikuchi3
1Departments of Molecular Imaging and Diagnosis, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan (K.Y.).
Rationale And Objectives:
23Na‑MR imaging requires lengthy acquisition times, it remains difficult to implement routinely in clinical workflows and limits broader clinical application. This study aimed to determine whether a TR of 60 ms (TR60) could maintain brain tumor conspicuity while reducing acquisition time compared to TR100.
Materials And Methods:
This prospective study includes adult patients with histopathologically confirmed supratentorial brain tumors. A 3 T scanner with a dual-tuned 1H/23Na birdcage head coil was used. A 3D radial stack-of-stars sequence was employed for the acquisition of 23Na-MR images. The lesion conspicuity on 23Na-MR images was evaluated using the contrast-to-noise ratio (CNR) and CNR efficiency (CNR/√ acquisition time; time-CNR), calculated by comparing the signal intensity of the tumor with that of the background. The CNR and time-CNR were then compared between TR60 and TR100 in detecting brain tumors.
Results:
A total of 30 patients (22 men) were enrolled. No significant differences were observed in the CNR between TR60 and TR100 (p = 0.56). The time-CNR of TR60 was significantly higher than that of TR100 (p < 0.001).
Conclusion:
23Na-MR imaging using TR60 achieved a significantly higher time-CNR than TR100 while maintaining comparable CNR, indicating improved acquisition efficiency for brain tumor evaluation.
