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Dose accuracy evaluation of multi-leaf collimator modeling in single-isocenter multi-target stereotactic radiosurgery

Journal
Physics and imaging in radiation oncology (Q1)
Published
10 September 2026
Study design
Unclassified
Evidence level
Level 5, Expert Opinion (CEBM 5)
Authors
Farnaz Rahim Li, Rex A Cardan, Joel A Pogue, Natalie N Viscariello, Rodney J Sullivan, John B Fiveash, et al.
PMID
42830817
DOI
10.1016/j.phro.2026.101076

Why clinicians should know about it

  • Picked for Medical Physics (paper of the day, 6 October 2026): MLC modeling accuracy for single‑isocenter multi‑target SRS

Abstract

BACKGROUND AND PURPOSE: Accurate modeling of multi-leaf collimators is critical for dose calculation in stereotactic radiosurgery (SRS), where steep dose gradients and small target volumes amplify modeling uncertainties. This study compared enhanced leaf modeling and dosimetric leaf gap approaches using two clinically implemented dose calculation algorithms in single-isocenter SRS plans. MATERIALS AND METHODS: Sixty clinical volumetric modulated arc therapy (VMAT) single-isocenter SRS plans (30 single-target, SIST; 30 multi-target, SIMT) were selected and measured with a two-dimensional diode array, normalized to a point measurement. Dose was calculated using both enhanced leaf model (ELM) and dosimetric leaf gap (DLG) models and the anisotropic analytical algorithm (AAA) and Acuros XB (AXB) algorithms across several spot-size configurations. Plan quality assurance was assessed using gamma analysis for several dose-distance criteria. Dose differences were further analyzed as functions of target size and distance from isocenter. RESULTS: Under 2%/1 mm gamma criteria, AXB-DLG having spot size 0.5 × 0.5 mm2 showed the highest median and mean gamma pass rate (fraction of points having gamma >1), 98.7% and 97.4% respectively, while AXB-ELM having spot-size 0.5 × 0.7 mm2 had the lowest, 98% and 96.3%, respectively. SIST and SIMT plans showed no clinically significant differences. AAA-ELM (spot size: 0 × 0 mm2) achieved the highest median and mean gamma values, while AXB-DLG remained robust across plan types. Dose calculations were accurate for both configurations, with minimal mean differences (0.0%, range - 2.7% to +1.8%) reported. CONCLUSIONS: DLG showed slightly better VMAT SRS agreement than ELM, but differences were clinically negligible. ELM's model-based MLC configuration removes user-specific DLG variability, potentially improving dose-calculation precision and consistency across institutions.

Abstract as published, via PubMed.

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For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.