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Abstract #3852

Comparison of Tracer Kinetic Models for Differentiating Glioblastoma and Primary Central Nervous System Lymphoma

Jianan Zhou1, Zujun Hou2, Zhengyang Zhu1, Chuanshuai Tian1, Bing Zhang1, and Xin Zhang1
1Department of Radiology, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing, China, 2Jiangsu Key Laboratory of Medical Optics, Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou, China., Suzhou, China

Synopsis

Keywords: Tumors (Pre-Treatment), DSC & DCE Perfusion, Glioblastoma, PCNSL, dynamic contrast-enhanced, tracer kinetic model

Motivation: The overlapping radiographical features between glioblastoma and primary central nervous system lymphoma (PCNSL) make it difficult to distinguish the two clinically.

Goal(s): This study aimed to compare values of conventional and advanced tracer kinetic models based on dynamic contrast enhanced (DCE)-MRI in differentiating glioblastoma and lymphoma.

Approach: Patients diagnosed as glioblastoma or lymphoma were examined using dynamic contrast-enhanced MRI. Imaging data were analyzed using tracer kinetic models.

Results: Permeability parameters of DP model attained best performance in differential diagnosis, with dominant features comprising significantly higher PS and E in the tumor region of lymphoma than in that of glioblastoma.

Impact: Distributed parameter (DP) model demonstrated excellent performance in differentiating PCNSL and glioblastoma and permeability parameters of advanced tracer kinetic models such as PS and E could be promising imaging biomarkers.

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Keywords