Dosimetric evaluation of lung tumor immobilization using breath hold at deep inspiration

被引:178
|
作者
Barnes, EIA
Murray, BR
Robinson, DM
Underwood, LJ
Hanson, J
Roa, WHY
机构
[1] Cross Canc Inst, Dept Radiat Oncol, Edmonton, AB T6G 1Z2, Canada
[2] Cross Canc Inst, Dept Med Phys, Edmonton, AB T6G 1Z2, Canada
[3] Cross Canc Inst, Dept Epidemiol, Edmonton, AB T6G 1Z2, Canada
来源
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS | 2001年 / 50卷 / 04期
关键词
lung cancer; radiotherapy; respiration gating; self-gating; deep-inspiration breath hold;
D O I
10.1016/S0360-3016(01)01592-9
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Purpose:To examine the dosimetric benefit of self-gated radiotherapy at deep-inspiration breath hold (DIBH) in the treatment of patients with non-small-cell lung cancer (NSCLC). The relative contributions of tumor immobilization at breath hold (BH) and increased lung volume at deep inspiration (DI) in sparing high-dose lung irradiation (greater than or equal to 20 Gy) were examined. Methods and Materials:Ten consecutive patients undergoing radiotherapy for Stage I-IIIB NSCLC who met the screening criteria were entered on this study. Patients were instructed to BH at DI without the use of external monitors or breath-holding devices (self-gating), Computed tomography (CT) scans of the thorax were performed during free breathing (FB) and DIBH. Fluoroscopy screened for reproducible tumor position throughout DIBH, and determined the maximum superior-inferior (SI) tumor motion during both FB and DIBH. Margins used to define the planning target volume (PTV) from the clinical target volume included 1 cm for setup error and organ motion, plus an additional SI margin for tumor motion, as determined from fluoroscopy. Three conformal treatment plans were then generated for each patient, one from the FB scan with FB PTV margins, a second from the DIBH scan with FB PTV margins, and a third from the DIBH scan with DIBH PTV margins, The percent of total lung volume receiving greater than or equal to 20 Gy (using a prescription dose of 70.9 Gy to isocenter) was determined for each plan. Results:Self-gating at DIBH was possible for 8 of the 10 patients; 2 patients were excluded, because they were not able to perform a reproducible DIBH, For these 8 patients, the median BH time was 23 (range, 19-52) s. The mean percent of total lung volume receiving greater than or equal to 20 Gy under FB conditions (FB scan with FB PTV margins) was 12.8%. With increased lung volume alone (DIBH scan with FB PTV margins), this was reduced to 11.0%, tending toward a significant: decrease in lung irradiation over FB (p = 0.086). With both increased lung volume and tumor immobilization (DIBH scan with DIBH PTV margins), the mean percent lung volume receiving greater than or equal to 20 Gy was further reduced to 8.8%, a significant decrease in lung irradiation compared to FB (p = 0.011). Furthermore, at DIBH, the additional benefit provided by tumor immobilization (i.e., using DIBH instead of FB PTV margins) was also significant (p = 0.006). The relative contributions of tumor immobilization and increased lung volume toward reducing the percent total lung volume receiving greater than or equal to 20 Gy were patient specific; however, all 8 of the patients analyzed showed a dosimetric benefit with this DIBH technique. Conclusion:Compared to FB conditions, at DIBH the mean reduction in percent lung volume receiving greater than or equal to 20 Gy was 14.3% with the increase in lung volume alone, 22.1% with tumor immobilization alone, and 32.5% with the combined effect. The dosimetric benefit seen at DIBH was patient specific, and due to both the increased lung volume seen at DI and the PTV margin reduction seen with tumor immobilization. (C) 2001 Elsevier Science Inc.
引用
收藏
页码:1091 / 1098
页数:8
相关论文
共 50 条
  • [21] Heart Shift with Deep Inspiration Breath Hold
    Gergel, T. J.
    Veale, C. J.
    Jones, A. O.
    Treas, J.
    Vognetz, J. A.
    Christie, A. D.
    Yumen, O.
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2011, 81 (02): : S246 - S247
  • [22] Dosimetric analysis of Deep- Inspiration-Breath-Hold for right breast cancer radiotherapy
    Busato, Fabio
    Schifano, Marco Ciro
    Fiorentin, Davide
    Nicoletto, Mattia
    Maffi, Erick
    Antonelli, Claudio
    Testolin, Alessandro
    Fusella, Marco
    RADIOTHERAPY AND ONCOLOGY, 2024, 194 : S672 - S673
  • [23] Dosimetric analysis with or without Deep Inspiration Breath-Hold in the left sided breast cancers
    Hunugundmath, S.
    RADIOTHERAPY AND ONCOLOGY, 2022, 170 : S1015 - S1016
  • [24] Dosimetric advantages for cardiac substructures in radiotherapy of esophageal cancer in deep-inspiration breath hold
    Mohamed, Ahmed Allam
    Douglas, Melina Nausikaa
    Bruners, Philipp
    Eble, Michael J.
    STRAHLENTHERAPIE UND ONKOLOGIE, 2024, 200 (07) : 624 - 632
  • [25] Deep inspiration breath-hold technique for lung tumors: The potential value of target immobilization and reduced lung density in dose escalation
    Hanley, J
    Debois, MM
    Mah, D
    Mageras, GS
    Raben, A
    Rosenzweig, K
    Mychalczak, B
    Schwartz, LH
    Gloeggler, PJ
    Lutz, W
    Ling, CC
    Leibel, SA
    Fuks, Z
    Kutcher, GJ
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 1999, 45 (03): : 603 - 611
  • [26] Evaluation of daily residual pancreatic tumor motion for deep-inspiration breath-hold radiotherapy
    Mao, Weihua
    Wu, Binbin
    Ding, Kai
    Han-Oh, Sarah
    Narang, Amol
    JOURNAL OF APPLIED CLINICAL MEDICAL PHYSICS, 2025,
  • [27] Evaluation of deep inspiration breath-hold lung treatment plans with Monte Carlo dose calculation
    Yorke, ED
    Wang, L
    Rosenzweig, KE
    Mah, D
    Paoli, JB
    Chui, CS
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2002, 53 (04): : 1058 - 1070
  • [28] A Dosimetric Comparison of Free-breathing (FB) and Deep Inspiration Breath Hold (DIBH) in Patients Undergoing Lung Cancer Radiotherapy
    Marchand, V.
    Zefkili, S.
    Desrousseaux, J.
    Dauphinot, C.
    Giraud, P.
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2009, 75 (03): : S581 - S581
  • [29] Deep Inspiration Breath Hold (DIBH) Technique and Irradiated Lung Mass and Volume
    Villa, O.
    Coonce, M.
    Jozsef, G.
    MEDICAL PHYSICS, 2019, 46 (06) : E243 - E243
  • [30] Heart position reproducibility in deep inspiration breath hold radiotherapy for lung cancer
    Josipovic, M.
    Aznar, M. C.
    Thomsen, J. B.
    Scherman, J.
    Damkjaer, S. M. S.
    Nygard, L.
    Specht, L.
    Pohl, M.
    Persson, G. F.
    RADIOTHERAPY AND ONCOLOGY, 2019, 133 : S1062 - S1063