Water equivalent path length calculations using scatter-corrected head and neck CBCT images to evaluate patients for adaptive proton therapy

被引:26
作者
Kim, Jihun [1 ]
Park, Yang-Kyun
Sharp, Gregory
Busse, Paul
Winey, Brian
机构
[1] Massachusetts Gen Hosp, Dept Radiat Oncol, Boston, MA 02114 USA
关键词
adaptive proton therapy; head and neck; cone-beam CT; scatter correction; proton therapy; CONE-BEAM CT; MODULATED RADIATION-THERAPY; CANCER RADIOTHERAPY; COMPUTED-TOMOGRAPHY; DEFORMABLE REGISTRATION; TREATMENT UNCERTAINTIES; OROPHARYNGEAL CANCER; SETUP UNCERTAINTIES; DOSE RECALCULATION; GEOMETRIC CHANGES;
D O I
10.1088/1361-6560/62/1/59
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Proton therapy has dosimetric advantages due to the well-defined range of the proton beam over photon radiotherapy. When the proton beams, however, are delivered to the patient in fractionated radiation treatment, the treatment outcome is affected by delivery uncertainties such as anatomic change in the patient and daily patient setup error. This study aims at establishing a method to evaluate the dosimetric impact of the anatomic change and patient setup error during head and neck proton therapy. Range variations due to the delivery uncertainties were assessed by calculating water equivalent path length (WEPL) to the distal edge of tumor volume using planning CT and weekly treatment cone-beam CT (CBCT) images. Specifically, mean difference and root mean squared deviation (RMSD) of the distal WEPLs were calculated as the weekly range variations. To accurately calculate the distal WEPLs, an existing CBCT scatter correction algorithm was used. An automatic rigid registration was used to align the planning CT and treatment CBCT images, simulating a six degree-of-freedom couch correction at treatments. The authors conclude that the dosimetric impact of the anatomic change and patient setup error was reasonably captured in the differences of the distal WEPL variation with a range calculation uncertainty of 2%. The proposed method to calculate the distal WEPL using the scatter-corrected CBCT images can be an essential tool to decide the necessity of re-planning in adaptive proton therapy.
引用
收藏
页码:59 / 72
页数:14
相关论文
共 32 条
[1]   RANDOM POSITIONAL VARIATION AMONG THE SKULL, MANDIBLE, AND CERVICAL SPINE WITH TREATMENT PROGRESSION DURING HEAD-AND-NECK RADIOTHERAPY [J].
Ahn, Peter H. ;
Ahn, Andrew I. ;
Lee, C. Joe ;
Shen, Jin ;
Miller, Ekeni ;
Lukaj, Alex ;
Milan, Elissa ;
Yaparpalvi, Ravindra ;
Kalnicki, Shaloni ;
Garg, Madhur K. .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2009, 73 (02) :626-633
[2]   Quantification of volumetric and geometric changes occurring during fractionated radiotherapy for head-and-neck cancer using an integrated CT/linear accelerator system [J].
Barker, JL ;
Garden, AS ;
Ang, KK ;
O'Daniel, JC ;
Wang, H ;
Court, LE ;
Morrison, WH ;
Rosenthal, DI ;
Chao, KSC ;
Tucker, SL ;
Mohan, R ;
Dong, L .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2004, 59 (04) :960-970
[3]   Calibration of CT Hounsfield units for proton therapy treatment planning: use of kilovoltage and megavoltage images and comparison of parameterized methods [J].
De Marzi, L. ;
Lesven, C. ;
Ferrand, R. ;
Sage, J. ;
Boule, T. ;
Mazal, A. .
PHYSICS IN MEDICINE AND BIOLOGY, 2013, 58 (12) :4255-4276
[4]  
Holliday E., 2015, INT J PARTICLE THER, V2, P19, DOI [10.14338/IJPT-15-00011.1, DOI 10.14338/IJPT-15-00011.1]
[5]   The impact of daily setup variations on head-and-neck intensity-modulated radiation therapy [J].
Hong, TS ;
Tomé, WA ;
Chappell, RJ ;
Chinnaiyan, P ;
Mehta, MP ;
Harari, PM .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2005, 61 (03) :779-788
[6]   Spot-scanning beam proton therapy vs intensity-modulated radiation therapy for ipsilateral head and neck malignancies: A treatment planning comparison [J].
Kandula, Shravan ;
Zhu, Xiaorong ;
Garden, Adam S. ;
Gillin, Michael ;
Rosenthal, David I. ;
Ang, Kie-Kian ;
Mohan, Radhe ;
Amin, Mayankkumar V. ;
Garcia, John A. ;
Wu, Richard ;
Sahoo, Narayah ;
Frank, Steven J. .
MEDICAL DOSIMETRY, 2013, 38 (04) :390-394
[7]   Dose Uncertainties in IMPT for Oropharyngeal Cancer in the Presence of Anatomical, Range, and Setup Errors [J].
Kraan, Aafke C. ;
van de Water, Steven ;
Teguh, David N. ;
Al-Mamgani, Abrahim ;
Madden, Tom ;
Kooy, Hanne M. ;
Heijmen, Ben J. M. ;
Hoogeman, Mischa S. .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2013, 87 (05) :888-896
[8]   Investigating deformable image registration and scatter correction for CBCT-based dose calculation in adaptive IMPT [J].
Kurz, Christopher ;
Kamp, Florian ;
Park, Yang-Kyun ;
Zoellner, Christoph ;
Rit, Simon ;
Hansen, David ;
Podesta, Mark ;
Sharp, Gregory C. ;
Li, Minglun ;
Reiner, Michael ;
Hofmaier, Jan ;
Neppl, Sebastian ;
Thieke, Christian ;
Nijhuis, Reinoud ;
Ganswindt, Ute ;
Belka, Claus ;
Winey, Brian A. ;
Parodi, Katia ;
Landry, Guillaume .
MEDICAL PHYSICS, 2016, 43 (10) :5635-5646
[9]   Comparing cone- beam CT intensity correction methods for dose recalculation in adaptive intensity- modulated photon and proton therapy for head and neck cancer [J].
Kurz, Christopher ;
Dedes, George ;
Resch, Andreas ;
Reiner, Michael ;
Ganswindt, Ute ;
Nijhuis, Reinoud ;
Thieke, Christian ;
Belka, Claus ;
Parodi, Katia ;
Landry, Guillaume .
ACTA ONCOLOGICA, 2015, 54 (09) :1651-1657
[10]   Investigating CT to CBCT image registration for head and neck proton therapy as a tool for daily dose recalculation [J].
Landry, Guillaume ;
Nijhuis, Reinoud ;
Dedes, George ;
Handrack, Josefine ;
Thieke, Christian ;
Janssens, Guillaume ;
de Xivry, Jonathan Orban ;
Reiner, Michael ;
Kamp, Florian ;
Wilkens, Jan J. ;
Paganelli, Chiara ;
Riboldi, Marco ;
Baroni, Guido ;
Ganswindt, Ute ;
Belka, Claus ;
Parodi, Katia .
MEDICAL PHYSICS, 2015, 42 (03) :1354-1366