Stereotactic body radiation therapy planning for liver tumors using functional images from dual-energy computed tomography.

Ohira, Shingo; Kanayama, Naoyuki; Toratani, Masayasu; Ueda, Yoshihiro; Koike, Yuhei; Karino, Tsukasa; Shunsuke, Ono; Miyazaki, Masayoshi et al. · Radiother Oncol · 2020

retrospective_cohort · Level III

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Abstract

This study aimed to generate a functional image of the liver using dual-energy computed tomography (DECT) and a functional-image-based stereotactic body radiation therapy plan to minimize the dose to the volume of the functional liver (V<sub>fl</sub>). A normalized iodine density (NID) map was generated for fifteen patients with liver tumors. The volume of liver with an NID < 0.46 was defined as V<sub>fl</sub>, and the ratio between V<sub>fl</sub> and the total volume of the liver (FLR) was calculated. The relationship between the FLR and Fibrosis-4 (FIB-4) was assessed. For patients with 15% < FLR < 85%, functional volumetric modulated-arc therapy plans (F-VMAT) were retrospectively generated to preserve V<sub>fl</sub>, and compared to the clinical plans (C-VMAT). FLR showed a significantly strong correlation with FIB-4 (r = -0.71, p < 0.01). For ten generated F-VMAT plans, the dosimetric parameters of D<sub>99%</sub>, D<sub>50%</sub>, D<sub>1%</sub> and the conformity index were comparable to those of the C-VMAT (p > 0.05). For V<sub>fl</sub>, F-VMAT plans achieved lower V<sub>5Gy</sub> (122.4 ± 31.7 vs 181.1 ± 57.3 cc), V<sub>10Gy</sub> (44.4 ± 22.2 vs 98.2 ± 33.3 cc), V<sub>15Gy</sub> (22.6 ± 20.3 vs 49.8 ± 33.7 cc), V<sub>20Gy</sub> (11.6 ± 14.1 vs 24.9 ± 25.1 cc), and D<sub>mean</sub> (3.9 ± 2.3 vs 5.8 ± 3.0 Gy) values than the C-VMAT plans (p < 0.01). The functional image derived from DECT was successfully used, allowing for a reduction in the dose to the V<sub>fl</sub> without compromising target coverage.

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