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Updated: Sep 11, 2026

A Cognitive Fusion-guided Prostate Biopsy Using Multiparametric Magnetic Resonance Imaging and Transrectal Ultrasound
Published on: March 21, 2025
Consistency of MR Cytometry Mappings across Different Acquisition Protocols in Prostate Imaging
Tianquan Xu1, Xinyi Luo2, Fan Liu3
1Department of Magnetic Resonance Imaging Diagnostic, The 2nd Affiliated Hospital of Harbin Medical University, Harbin 150001, China.
Rationale And Objectives:
To evaluate the consistency of MR cytometry mappings across protocols, and quantify the variations in prostate imaging between oscillating gradient spin-echo (OGSE) frequencies of 17/33Hz and 25/50Hz.
Materials And Methods:
This prospective study enrolled 40 patients requiring prostate MRI examinations, who underwent 3T-MRI scans including pulsed gradient spin-echo (PGSE) and OGSE sequences. Two acquisition protocols with different OGSE sequences were employed: 17/33Hz and 25/50Hz. Regions of interest (ROIs) encompassing entire prostates were manually delineated and further subdivided into peripheral (PZ) and transitional zones (TZ) by a radiologist. Microstructural parameters were fitted using the IMPULSED model, and time-dependent apparent diffusion coefficients (ADCs) were calculated. Common first-order and radiomic features were extracted from their mappings. Wilcoxon signed-rank test was performed to evaluate paired differences (17/33Hz vs. 25/50Hz); relative variation coefficients were calculated for each patient; Pearson correlation analysis quantified correlations between two sets of results. All statistical analyses were performed separately for entire prostate, PZ, and TZ.
Results:
The results for the entire prostate, PZ, and TZ were similar: Although several first-order features (such as mean and median) of imaging parameters showed strong correlations (r>0.7), most features exhibited inconsistencies between the two protocols, including significant paired differences, large relative variations and low correlations, particularly for cell diameter mappings. Over 30% of radiomic features exhibited correlations of r<0.5 across different protocols.
Conclusion:
MR cytometry imaging, including IMPULSED model fitting and time-dependent ADC measurements, depends on the specific acquisition protocol; in particular, cell diameter mapping is highly dependent on OGSE frequencies.

