Using Modularized Pin Ridge Filter in Proton FLASH Planning for Liver Stereotactic Ablative Body Radiotherapy
Chaoqiong Ma, Xiaofeng Yang, Yinan Wang, David Yu, Pretesh Patel, and, Jun Zhou

TL;DR
This study refines a modular pin-ridge-filter design for proton FLASH radiotherapy in liver SABR, demonstrating its feasibility and potential clinical benefits through dose reduction analysis in three patient cases.
Contribution
It introduces a reusable modular pin-RF design for streamlined single-energy proton FLASH planning, optimizing assembly and clinical application in liver SABR.
Findings
Higher dose reductions in two-beam cases at 5 Gy threshold.
Moderate dose reductions in three-beam cases, up to 14.7%.
Positive clinical benefits observed in specific configurations at 1 Gy threshold.
Abstract
We previously developed a FLASH planning framework for streamlined pin-ridge-filter (pin-RF) design, demonstrating its feasibility for single-energy proton FLASH planning. In this study, we refined the pin-RF design for easy assembly using reusable modules, focusing on its application in liver SABR. This framework generates an intermediate IMPT plan and translates it into step widths and thicknesses of pin-RFs for a single-energy FLASH plan. Parameters like energy spacing, monitor unit limit, and spot quantity were adjusted during IMPT planning, resulting in pin-RFs assembled using predefined modules with widths from 1 to 6 mm, each with a WET of 5 mm. This approach was validated on three liver SABR cases. FLASH doses, quantified using the FLASH effectiveness model at 1 to 5 Gy thresholds, were compared to conventional IMPT (IMPT-CONV) doses to assess clinical benefits. The highest…
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Taxonomy
TopicsAdvanced Radiotherapy Techniques · Radiation Therapy and Dosimetry · Radiation Detection and Scintillator Technologies
