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Functional Interrogation of Adult Hypothalamic Neurogenesis with Focal Radiological Inhibition
Published on: November 14, 2013
Dosimetric comparison of TomoTherapy and non-coplanar VMAT for hippocampal-avoidance prophylactic cranial irradiation
Young Kyu Lee1, Wonjoong Cheon1, Yunji Seol1
1Department of Radiation Oncology, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea.
Purpose:
To compare the dosimetric characteristics of non-coplanar volumetric modulated arc therapy (VMAT) and TomoTherapy for hippocampal-avoidance prophylactic cranial irradiation (HA-PCI) in small cell lung cancer (SCLC) patients.
Methods:
Ten SCLC patients who received HA-PCI were retrospectively analyzed. Two plans were generated as TrueBeam non-coplanar VMAT with four arcs and helical TomoTherapy. The hippocampal avoidance zone used a 3-mm margin, reduced from RTOG 0933's 5-mm specification. Planning target volume of whole brain (PTV_WB) was prescribed 25 Gy in 10 fractions, normalized to D95%=2500 cGy. RTOG 0933 hippocampal constraints (Dmax ≤ 1600 cGy, D100%≤900 cGy) were applied. Dosimetric parameters for hippocampus, PTV_WB, organs at risk, treatment efficiency (monitor units, delivery time), Paddick conformity index, and homogeneity index were compared using Wilcoxon signed-rank test.
Results:
Non-coplanar VMAT achieved significantly lower hippocampal Dmax than TomoTherapy (1353 cGy vs 1638 cGy, p=0.004), meeting RTOG 0933 constraints, while TomoTherapy exceeded the per-protocol constraint by 38 cGy but remained within the acceptable deviation threshold, indicating clinically acceptable dosimetric outcomes. Non-coplanar VMAT demonstrated superior PTV_WB coverage: V98% (96.68% vs 95.77%), V95% (97.66% vs 96.48%), D98% (2320 cGy vs 2095 cGy) (all p=0.004). Paddick conformity index was higher (0.91 vs 0.84, p=0.012) and homogeneity index lower (0.20 vs 0.27, p=0.004). Non-coplanar VMAT reduced monitor units by 88.5% (748 vs 6528 MU, p=0.004) and treatment time by 25.2% (287 vs 384 seconds, p=0.004). Bilateral eye Dmax was 21-27% lower (all p=0.004) and bilateral cochlear Dmax approximately 15% lower (p ≤ 0.008).
Conclusions:
Non-coplanar VMAT demonstrated superior dosimetric characteristics compared to TomoTherapy for HA-PCI with 3-mm margin, meeting hippocampal constraints while improving target coverage and treatment efficiency. Prospective validation with neurocognitive outcomes is needed.
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