Margin reduction in radiotherapy for glioblastoma through <sup>18</sup>F-fluoroethyltyrosine PET? - A recurrence pattern analysis.
retrospective_cohort · Level III
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- Record sourced from PubMed, PMID 31923709.
- Also identified by DOI 10.1016/j.radonc.2019.12.005.
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Abstract
<sup>18</sup>F-fluoroethyltyrosine (<sup>18</sup>F-FET) PET is increasingly used in radiation treatment planning for the primary treatment of glioblastoma (GBM) patients additionally to contrast-enhanced MRI. To answer the question, whether a margin reduction in the primary treatment setting could be achieved through <sup>18</sup>F-FET PET imaging, a recurrence pattern analysis was performed. GBM patients undergoing <sup>18</sup>F-FET PET examination before primary radiochemotherapy from 05/2009 to 11/2014 were included into the recurrence pattern analysis. Biological tumour volumes were semi-automatically created and fused with MR-based gross tumour volumes (<sub>MR</sub>GTVs). The pattern of recurrence was examined for <sub>MR</sub>GTVs and for <sub>PET-MR</sub>GTVs. The minimal margin including all recurrent tumour sites was assessed by gradual expansion of the <sub>PET-MR</sub>GTVs and <sub>MR</sub>GTVs until inclusion of all contrast-enhancing areas at recurrence. 36 GBM patients were included to the analysis. The minimal margin including all contrast enhancing tumour at recurrence was significantly smaller for the <sub>PET-MR</sub>GTVs compared to the <sub>MR</sub>GTVs (median 12.5 mm vs. 16.5 mm; p < 0.001, Wilcoxon-Test). <sub>PET-MR</sub>GTVs with 15 mm CTV margins were significantly smaller than <sub>MR</sub>GTVs with 20 mm CTV margins (median volume 255.92 vs. 258.35 cm<sup>3</sup>; p = 0.020, Wilcoxon-Test; excluding 3 cases with large non-contrast enhancing tumours). The pattern of recurrence of <sub>PET-MR</sub>GTVs with 15 mm CTV margins was comparable to <sub>MR</sub>GTVs with 20 mm CTV margins (32 vs. 30 central, 2 vs. 4 in-field, 2 vs. 2 ex-field and no marginal recurrences). Target volume delineation of GBM patients can be improved through <sup>18</sup>F-FET PET imaging prior to primary radiation treatment, since vital tumour can be detected more accurately. Furthermore, the results suggest that CTV margins could be reduced through <sup>18</sup>F-FET PET imaging prior to primary RT of GBM.
Medical subject headings
- Brain Neoplasms
- Glioblastoma