Literature DB >> 29322071

Algorithm development for intrafraction radiotherapy beam edge verification from Cherenkov imaging.

Clare Snyder1, Brian W Pogue1,2,3, Michael Jermyn1,2, Irwin Tendler1, Jacqueline M Andreozzi1, Petr Bruza1, Venkat Krishnaswamy1,2, David J Gladstone1,3,4, Lesley A Jarvis3,4.   

Abstract

Imaging of Cherenkov light emission from patient tissue during fractionated radiotherapy has been shown to be a possible way to visualize beam delivery in real time. If this tool is advanced as a delivery verification methodology, then a sequence of image processing steps must be established to maximize accurate recovery of beam edges. This was analyzed and developed here, focusing on the noise characteristics and representative images from both phantoms and patients undergoing whole breast radiotherapy. The processing included temporally integrating video data into a single, composite summary image at each control point. Each image stack was also median filtered for denoising and ultimately thresholded into a binary image, and morphologic small hole removal was used. These processed images were used for day-to-day comparison computation, and either the Dice coefficient or the mean distance to conformity values can be used to analyze them. Systematic position shifts of the phantom up to 5 mm approached the observed variation values of the patient data. This processing algorithm can be used to analyze the variations seen in patients being treated concurrently with daily Cherenkov imaging to quantify the day-to-day disparities in delivery as a quality audit system for position/beam verification.

Entities:  

Keywords:  dosimetry; image processing; linac; quality audit; radiation therapy

Year:  2018        PMID: 29322071      PMCID: PMC5749647          DOI: 10.1117/1.JMI.5.1.015001

Source DB:  PubMed          Journal:  J Med Imaging (Bellingham)        ISSN: 2329-4302


  15 in total

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Authors:  Luca Cozzi; Antonella Fogliata; Giorgia Nicolini
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2.  Incident Learning Systems for Radiation Oncology: Development and Value at the Local, National and International Level.

Authors:  T Pawlicki; M Coffey; M Milosevic
Journal:  Clin Oncol (R Coll Radiol)       Date:  2017-07-21       Impact factor: 4.126

3.  Cherenkov video imaging allows for the first visualization of radiation therapy in real time.

Authors:  Lesley A Jarvis; Rongxiao Zhang; David J Gladstone; Shudong Jiang; Whitney Hitchcock; Oscar D Friedman; Adam K Glaser; Michael Jermyn; Brian W Pogue
Journal:  Int J Radiat Oncol Biol Phys       Date:  2014-03-28       Impact factor: 7.038

4.  Fast and Provably Accurate Bilateral Filtering.

Authors:  Kunal N Chaudhury; Swapnil D Dabhade
Journal:  IEEE Trans Image Process       Date:  2016-06       Impact factor: 10.856

5.  Time-gated Cherenkov emission spectroscopy from linear accelerator irradiation of tissue phantoms.

Authors:  Adam K Glaser; Rongxiao Zhang; Scott C Davis; David J Gladstone; Brian W Pogue
Journal:  Opt Lett       Date:  2012-04-01       Impact factor: 3.776

6.  Cherenkoscopy based patient positioning validation and movement tracking during post-lumpectomy whole breast radiation therapy.

Authors:  Rongxiao Zhang; Jacqueline M Andreozzi; David J Gladstone; Whitney L Hitchcock; Adam K Glaser; Shudong Jiang; Brian W Pogue; Lesley A Jarvis
Journal:  Phys Med Biol       Date:  2014-12-12       Impact factor: 3.609

7.  Reliability of portal control procedure in irradiation of breast cancer: a Bayesian analysis.

Authors:  Avelino Alía; Javier Mar; Roberto Pastor-Barriuso
Journal:  Radiother Oncol       Date:  2005-04-18       Impact factor: 6.280

8.  Camera selection for real-time in vivo radiation treatment verification systems using Cherenkov imaging.

Authors:  Jacqueline M Andreozzi; Rongxiao Zhang; Adam K Glaser; Lesley A Jarvis; Brian W Pogue; David J Gladstone
Journal:  Med Phys       Date:  2015-02       Impact factor: 4.071

9.  Visual sensations during megavoltage radiotherapy to the orbit attributable to Cherenkov radiation.

Authors:  Francis Newman; Masoud Asadi-Zeydabadi; Vikram D Durairaj; Meisong Ding; Kelly Stuhr; Brian Kavanagh
Journal:  Med Phys       Date:  2008-01       Impact factor: 4.071

10.  Clinical Experience and Evaluation of Patient Treatment Verification With a Transit Dosimeter.

Authors:  Kate Ricketts; Clara Navarro; Katherine Lane; Claire Blowfield; Gary Cotten; Dee Tomala; Christine Lord; Joanne Jones; Abiodun Adeyemi
Journal:  Int J Radiat Oncol Biol Phys       Date:  2016-03-25       Impact factor: 7.038

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  4 in total

1.  Cherenkov imaging for Total Skin Electron Therapy - an evaluation of dose uniformity.

Authors:  Timothy C Zhu; Yihong Ong; Hongjin Sun; Weili Zhong; Tianshun Miao; Andreea Dimofte; Petr Bruza; Amit Maity; John P Plastaras; Ima Paydar; Lei Dong; Brian W Pogue
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2021-03-30

2.  Direct in-water radiation dose measurements using Cherenkov emission corrected signals from polarization imaging for a clinical radiotherapy application.

Authors:  Émily Cloutier; Luc Beaulieu; Louis Archambault
Journal:  Sci Rep       Date:  2022-06-10       Impact factor: 4.996

3.  Cherenkov imaging for total skin electron therapy (TSET).

Authors:  Yunhe Xie; Heather Petroccia; Amit Maity; Tianshun Miao; Yihua Zhu; Petr Bruza; Brian W Pogue; John P Plastaras; Lei Dong; Timothy C Zhu
Journal:  Med Phys       Date:  2019-11-26       Impact factor: 4.071

4.  Improvements to an optical scintillator imaging-based tissue dosimetry system.

Authors:  Irwin I Tendler; Petr Bruza; Michael Jermyn; Antoine Fleury; Benjamin B Williams; Lesley A Jarvis; Brian W Pogue; David J Gladstone
Journal:  J Biomed Opt       Date:  2019-07       Impact factor: 3.170

  4 in total

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