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Commissioning and robustness evaluation of external laser sensor for respiratory gating in carbon-ion radiotherapy

Authors
 Kim, Tae-ho  ;  Han, Soorim  ;  Yoo, Dohyeon  ;  Lee, Sangmin  ;  Oh, Taegeon  ;  Lee, Dongjoon  ;  Kim, Changhwan  ;  Han, Min Cheol  ;  Hong, Chae-seon  ;  Kim, Jin Sung 
Citation
 JOURNAL OF APPLIED CLINICAL MEDICAL PHYSICS, Vol.27(1), 2026-01 
Article Number
 e70438 
Journal Title
JOURNAL OF APPLIED CLINICAL MEDICAL PHYSICS
ISSN
 1526-9914 
Issue Date
2026-01
MeSH
Four-Dimensional Computed Tomography / methods ; Heavy Ion Radiotherapy* / instrumentation ; Heavy Ion Radiotherapy* / methods ; Humans ; Lasers* ; Movement ; Neoplasms* / radiotherapy ; Phantoms, Imaging* ; Radiotherapy Dosage ; Radiotherapy Planning, Computer-Assisted* / methods ; Radiotherapy, Intensity-Modulated / methods ; Respiration ; Respiratory-Gated Imaging Techniques* / instrumentation ; Respiratory-Gated Imaging Techniques* / methods
Keywords
ANZAI laser sensor ; CIRT ; respiratory-gated radiotherapy
Abstract
Background: Respiratory-induced tumor motion remains a significant challenge in carbon-ion radiotherapy (CIRT), potentially compromising dose accuracy and escalating dose in nearby organs. Although belt-based sensors are commonly used for gating, issues related to setup reproducibility and patient comfort increased the demand for laser-based, non-contact alternatives. Purpose: This study evaluates the performance of an ANZAI laser-based respiratory gating system for potential use in this modality based on total delay measurements and assessment of the accuracy and signal robustness of the sensor under a broad range of simulated and clinical conditions. Methods: The total system delay was quantified through segmentation of the signal pathway into four steps: motion-to-waveform, waveform-to-gate, gate-to-beam, and signal-to-irradiation. A programmable motion phantom was used to assess the tracking accuracy under various conditions, including changes in amplitude, period, and irregular breathing patterns, such as baseline shifts and phase variations. Signal robustness was evaluated with varying the sensor-to-surface distance (9-17 cm), sensor angle (0-45 degrees), ambient lighting, and interference from adjacent lasers. A volunteer study correlated the external laser signal with internal diaphragm motion obtained via four-dimensional computed tomography (4DCT) in supine and prone positions and assessed cross-compatibility with a belt-type sensor. Results: The total system delay was 59.3 ms for beam-on and 40.4 ms for beam-off, which is well below the 100-ms threshold. In the phantom tests, the sensor achieved precise tracking, with cross-correlation coefficients > 0.99 (regular and irregular respiratory patterns). The signal was robust across a 9-17 cm span and was stable in a dark environment. However, the measured amplitude increased at sensor angles > 20 degrees, and considerable signal distortion occurred due to interference from an adjacent laser. A strong correlation between the sensor signal and internal organ motion was observed in volunteer tests in supine (r = 0.986) and prone (r = 0.961) positions. The interoperability with the belt sensor was excellent (r = 0.99). Conclusions: The ANZAI laser sensor system is accurate and reliable, and it meets clinical latency requirements in respiratory-gated CIRT. It provides stable tracking under varied respiratory conditions. For optimal performance, maintaining a perpendicular sensor angle is recommended to ensure amplitude accuracy and mitigate crosstalk from adjacent lasers. These findings confirm the clinical readiness of the system and inform practical implementation.
Files in This Item:
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DOI
10.1002/acm2.70438
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Radiation Oncology (방사선종양학교실) > 1. Journal Papers
Yonsei Authors
Kim, Jinsung(김진성) ORCID logo https://orcid.org/0000-0003-1415-6471
Kim, Changhwan(김창환)
Kim, Tae-Ho(김태호)
Yoo, Dohyeon(유도현)
Lee, Sangmin(이상민)
Han, Min Cheol(한민철)
Han, Soorim(한수림)
Hong, Chae-Seon(홍채선) ORCID logo https://orcid.org/0000-0001-9120-6132
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/210095
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