4.2 Article

The Influence of Data-Driven Compressed Sensing Reconstruction on Quantitative Pharmacokinetic Analysis in Breast DCE MRI

期刊

TOMOGRAPHY
卷 8, 期 3, 页码 1552-1569

出版社

MDPI
DOI: 10.3390/tomography8030128

关键词

breast DCE-MRI; compressed sensing; quantitative imaging

资金

  1. National Cancer Institute
  2. National Institute of Biomedical Imaging and Bioengineering of the National Institutes of Health [R01CA248192, R21EB018483, R01EB027087, P30CA014520]
  3. GE Healthcare
  4. Departments of Radiology and Medical Physics, University of Wisconsin-Madison
  5. RSNA Research and Education Foundation

向作者/读者索取更多资源

In this study, we evaluated the MOCCO reconstruction method for high spatial and temporal resolution breast DCE imaging. The results showed that MOCCO was able to accurately reconstruct curves with different temporal contrast enhancement, resulting in a more accurate measurement of PK parameters compared to conventional low-rank reconstruction and compressed sensing methods.
Radial acquisition with MOCCO reconstruction has been previously proposed for high spatial and temporal resolution breast DCE imaging. In this work, we characterize MOCCO across a wide range of temporal contrast enhancement in a digital reference object (DRO). Time-resolved radial data was simulated using a DRO with lesions in different PK parameters. The under sampled data were reconstructed at 5 s temporal resolution using the data-driven low-rank temporal model for MOCCO, compressed sensing with temporal total variation (CS-TV) and more conventional low-rank reconstruction (PCB). Our results demonstrated that MOCCO was able to recover curves with K-trans values ranging from 0.01 to 0.8 min(-1) and fixed V-e = 0.3, where the fitted results are within a 10% bias error range. MOCCO reconstruction showed less impact on the selection of different temporal models than conventional low-rank reconstruction and the greater error was observed with PCB. CS-TV showed overall underestimation in both K-trans and V-e. For the Monte-Carlo simulations, MOCCO was found to provide the most accurate reconstruction results for curves with intermediate lesion kinetics in the presence of noise. Initial in vivo experiences are reported in one patient volunteer. Overall, MOCCO was able to provide reconstructed time-series data that resulted in a more accurate measurement of PK parameters than PCB and CS-TV.

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