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Design, testing and characterization of a proton central axis alignment device for the dynamic collimation system. | LitMetric

AI Article Synopsis

  • Proton therapy has advanced from passive scattering to more precise spot scanning technologies, enhancing dose delivery and conformity.
  • The development of the Central Axis Alignment Device (CAAD) aims to ensure accurate alignment between the Dynamic Collimation System (DCS) and the proton beam's central axis by using a camera and scintillating screen for measurement.
  • The CAAD achieves high precision in determining the offset between the DCS and proton beam alignment, improving accuracy to 0.054 mm, thus eliminating reliance on less accurate x-ray sources for calibration.

Article Abstract

. Proton therapy conformity has improved over the years by evolving from passive scattering to spot scanning delivery technologies with smaller proton beam spot sizes. Ancillary collimation devices, such the Dynamic Collimation System (DCS), further improves high dose conformity by sharpening the lateral penumbra. However, as spot sizes are reduced, collimator positional errors play a significant impact on the dose distributions and hence accurate collimator to radiation field alignment is critical.. The purpose of this work was to develop a system to align and verify coincidence between the center of the DCS and the proton beam central axis. The Central Axis Alignment Device (CAAD) is composed of a camera and scintillating screen-based beam characterization system. Within a light-tight box, a 12.3-megapixel camera monitors a P43/Gadox scintillating screen via a 45° first-surface mirror. When a collimator trimmer of the DCS is placed in the uncalibrated center of the field, the proton radiation beam continuously scans a 7×7 cmsquare field across the scintillator and collimator trimmer while a 7 s exposure is acquired. From the relative positioning of the trimmer to the radiation field, the true center of the radiation field can be calculated.The CAAD can calculate the offset between the proton beam radiation central axis and the DCS central axis within 0.054 mm accuracy and 0.075 mm reproducibility.Using the CAAD, the DCS is now able to be aligned accurately to the proton radiation beam central axis and no longer relies on an x-ray source in the gantry head which is only validated to within 1.0 mm of the proton beam.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10330655PMC
http://dx.doi.org/10.1088/2057-1976/acdad5DOI Listing

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