Narrow interval dual phase 18F-FDG PET/CT: A practical approach for distinguishing tumor recurrence from radiation necrosis in brain metastasis

Author:

Aggarwal Aashri12,Aggarwal Ashwin K.23,Prakash Siddhant24,Vile Douglas J.56ORCID,Aggarwal Atul78ORCID

Affiliation:

1. Department of Computer Science, Cornell University, Ithaca, NY

2. Research Intern at Johnston Willis Hospital, Department of Radiology, Richmond, VA

3. High school senior at Collegiate School, Richmond, VA

4. Undergraduate student at Wake Forest University, NC

5. Department of Gamma Knife and Neuroscience Center, Johnston Willis Hospital, Richmond, VA

6. Hospital Corporation of America, Richmond, VA

7. Johnston Willis Hospital, Department of Radiology, Richmond, VA

8. Radiology Associates of Richmond, Richmond, VA.

Abstract

Purpose of our research is to demonstrate efficacy of narrow interval dual phase [18F]-fluorodeoxyglucose positron emission tomography/computed tomography (FDG-PET/CT) imaging in distinguishing tumor recurrence (TR) from radiation necrosis (RN) in patients treated for brain metastases. 35 consecutive patients (22 female, 13 male) with various cancer subtypes, lesion size > 1.0 cm3, and suspected recurrence on brain magnetic resonance imaging (MRI) underwent narrow interval dual phase FDG-PET/CT (30 and 90 min after tracer injection). Clinical outcome was determined via sequential MRIs or pathology reports. Maximum standard uptake value (SUVmax) of lesion (L), gray matter (GM), and white matter (WM) was measured on early (1) and delayed (2) imaging. Analyzed variables include % change, late phase, and early phase for L uptake, L/GM uptake, and L/WM uptake. Statistical analysis (P < .01), receiver operator characteristic (ROC) curve and area under curve (AUC) cutoff values were obtained. Change in L/GM ratio of > −2% was 95% sensitive, 91% specific, and 93% accurate (P < .001, AUC = 0.99) in distinguishing TR from RN. Change in SUVmax of lesion alone was the second-best indicator (P < .001, AUC = 0.94) with an ROC cutoff > 30.5% yielding 86% sensitivity, 83% specificity, and 84% accuracy. Other variables (L alone or L/GM ratios in early or late phase, all L/WM ratios) were significantly less accurate. Utilizing narrow interval dual phase FDG-PET/CT in patients with brain metastasis treated with radiation therapy provides a practical approach to distinguish TR from RN. Narrow time interval allows for better patient comfort, greater efficiency of PET/CT scanner, and lower disruption of workflow.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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