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Updated: Feb 14, 2026

A Whole Body Dosimetry Protocol for Peptide-Receptor Radionuclide Therapy PRRT: 2D Planar Image and Hybrid 2D+3D SPECT/CT Image Methods
Published on: April 24, 2020
A novel high-resolution 2D silicon array detector for small field dosimetry with FFF photon beams
G Biasi1, M Petasecca1, S Guatelli1
1Centre for Medical Radiation Physics, University of Wollongong, Wollongong, NSW, Australia.
The Octa silicon array detector shows accurate performance for stereotactic radiotherapy (SRT) using flattening filter free (FFF) beams. This dosimeter offers high-resolution 2D dose mapping for small field dosimetry.
Area of Science:
- Medical Physics
- Radiation Oncology
- Detector Technology
Background:
- Flattening filter free (FFF) beams are increasingly utilized in stereotactic radiotherapy (SRT).
- Accurate dosimetry is crucial for effective SRT delivery.
- Novel detector technologies are needed to characterize FFF beams.
Purpose of the Study:
- To evaluate the performance of the "Octa" monolithic silicon array detector with 6 and 10 MV FFF beams.
- To compare the Octa detector's performance against commercially available detectors for small field dosimetry.
- To assess the dosimeter's suitability for stereotactic radiotherapy applications.
Main Methods:
- Investigated output factors (OFs), percentage depth-dose (PDD), dose profiles (DPs), and dose per pulse (DPP) dependence.
- Benchmarked results against commercially available detectors for small field dosimetry.
- Measured cross-plane, in-plane, and diagonal dose profiles with high spatial resolution and real-time readout.
Main Results:
- The Octa detector demonstrated 'correction-free' performance for OFs and PDD measurements across investigated beam qualities.
- OFs were accurate within 3% and PDD values within 2% compared to benchmarks.
- A dose per pulse dependence was identified but correctable for quality assurance.
Conclusions:
- The Octa detector exhibits robust performance for relative dosimetry across various beam qualities and dose per pulses.
- Its high-resolution 2D dose map characterization makes it a unique real-time detector for small field dosimetry.
- The technology supports the use of FFF beams in SRT, offering advanced capabilities over predecessors.
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