MLC Transmission and Dosimetric Leaf Gap Measurement Using CU Values from Integrated Images of Varian VitalBeam LINAC.

Md. Motiur Rahman
Md. Motiur Rahman
Md Fajle Rabby
Md Fajle Rabby
Mahmuda Akter
Mahmuda Akter
Rubel Ahmed
Rubel Ahmed
MMH Bhuiyan
MMH Bhuiyan
MKA Khan
MKA Khan

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MLC Transmission and Dosimetric Leaf Gap Measurement Using CU Values from Integrated Images of Varian VitalBeam LINAC.

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References

19 Cites in Article
  1. Justus Adamson,Qiuwen Wu (2012). Independent verification of gantry angle for pre-treatment VMAT QA using EPID.
  2. Todsaporn Fuangrod,Henry Woodruff,Eric Van Uytven,Boyd Mccurdy,Zdenka Kuncic,Daryl O'connor,Peter Greer (2013). A system for EPID‐based real‐time treatment delivery verification during dynamic IMRT treatment.
  3. Karl Otto (2008). Volumetric modulated arc therapy: IMRT in a single gantry arc.
  4. Giorgia Nicolini,Alessandro Clivio,Luca Cozzi,Antonella Fogliata,Eugenio Vanetti (2011). On the impact of dose rate variation upon RapidArc® implementation of volumetric modulated arc therapy.
  5. Eric Klein,Joseph Hanley,John Bayouth,Fang‐fang Yin,William Simon,Sean Dresser,Christopher Serago,Francisco Aguirre,Lijun Ma,Bijan Arjomandy,Chihray Liu,Carlos Sandin,Todd Holmes (2009). Task Group 142 report: Quality assurance of medical acceleratorsa).
  6. Koren Smith,Peter Balter,John Duhon,Gerald White,David Vassy,Robin Miller,Christopher Serago,Lynne Fairobent (2017). AAPM Medical Physics Practice Guideline 8.a.: Linear accelerator performance tests.
  7. Gary Ezzell,James Galvin,Daniel Low,Jatinder Palta,Isaac Rosen,Michael Sharpe,Ping Xia,Ying Xiao,Lei Xing,Cedric Yu (2003). Guidance document on delivery, treatment planning, and clinical implementation of IMRT: Report of the IMRT subcommittee of the AAPM radiation therapy committee.
  8. G Ezzell,J Burmeister,N Dogan,T Losasso,J Mechalakos,D Mihailidis,A Molineu,J Palta,C Ramsey,B Salter,J Shi (2009). IMRT commissioning: multiple institution planning and dosimetry comparisons, a report from AAPM Task Group 119.
  9. E Klein,J Hanley,J Bayouth,F Yin,W Simon,S Dresser,C Serago,F Aguirre,L Ma,B Arjomandy,C Liu (2009). Task Group 142 report: Quality assurance of medical accelerators a.
  10. Ravindra Shende,Ganesh Patel (2017). Validation of Dosimetric Leaf Gap (DLG) prior to its implementation in Treatment Planning System (TPS): TrueBeam™ millennium 120 leaf MLC.
  11. B Mccurdy,K Luchka,S Pistorius (2001). Dosimetric investigation and portal dose image prediction using an amorphous silicon electronic portal imaging device.
  12. Varian Associates Inc Palo Alto Ca (2011). Improved Field Emitter Current Densities and Stability through the Application of a Proprietary Process.
  13. Sandra Vieira,Maarten Dirkx,Kasper Pasma,Ben Heijmen (2002). Fast and accurate leaf verification for dynamic multileaf collimation using an electronic portal imaging device.
  14. K Pasma,M Kroonwijk,J Boer,A Visser,B Heijmen (1998). Accurate portal dose measurement with a fluoroscopic electronic portal imaging device (EPID) for open and wedged beams and dynamic multileaf collimation.
  15. J Chavaudra,A Bridier (2001). Definition of volumes in external radiotherapy: ICRU reports 50 and 62.
  16. Jacob Van Dyk,James Smathers (2005). The Modern Technology of Radiation Oncology: A Compendium for Medical Physicists and Radiation Oncologists.
  17. Masaru Isono,Yuichi Akino,Hirokazu Mizuno,Yoshihiro Tanaka,Norihisa Masai,Toshijiro Yamamoto (2020). Inter-unit variability of multi-leaf collimator parameters for IMRT and VMAT treatment planning: a multi-institutional survey.
  18. Md. Rahman,M Shamsuzzaman,Mmh Bhuiyan,K Khan,Sadiq Malik (2022). Development of spreadsheet for rapid assessment of therapeutic radiation dose delivery with electron and photon beams at various energies.
  19. M Rahman,M Shamsuzzaman (2021). Dosimetric characterization of medical linear accelerator Photon and Electron beams for the treatment accuracy of cancer patients.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Md. Motiur Rahman. 2026. \u201cMLC Transmission and Dosimetric Leaf Gap Measurement Using CU Values from Integrated Images of Varian VitalBeam LINAC.\u201d. Global Journal of Medical Research - D: Radiology, Diagnostic GJMR-D Volume 23 (GJMR Volume 23 Issue D1).

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Accurate measurement of prostate leaf gaps using innovative imaging techniques.
Journal Specifications

Crossref Journal DOI 10.17406/gjmra

Print ISSN 0975-5888

e-ISSN 2249-4618

Keywords
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GJMR-D Classification NLM code: WN 230
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v1.2

Issue date
June 7, 2023

Language
en
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MLC Transmission and Dosimetric Leaf Gap Measurement Using CU Values from Integrated Images of Varian VitalBeam LINAC.

Md. Motiur Rahman
Md. Motiur Rahman <p>Pabna University of Science and Technology</p>
Md Fajle Rabby
Md Fajle Rabby
Mahmuda Akter
Mahmuda Akter
Rubel Ahmed
Rubel Ahmed
MMH Bhuiyan
MMH Bhuiyan
MKA Khan
MKA Khan

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