Overview of patient preparation strategies to manage internal organ motion during radiotherapy in the pelvis

被引:2
|
作者
Slevin, F. [1 ,2 ]
Beasley, M. [1 ]
Speight, R. [1 ]
Lilley, J. [1 ]
Murray, L. [1 ,2 ]
Henry, A. [1 ,2 ]
机构
[1] Leeds Canc Ctr, Leeds, W Yorkshire, England
[2] Univ Leeds, Leeds, W Yorkshire, England
关键词
bladder filling; organ motion; pelvis; radiotherapy; rectal emptying; EXTERNAL-BEAM RADIOTHERAPY; IMAGE-GUIDED RADIOTHERAPY; INTENSITY-MODULATED RADIOTHERAPY; SMALL-BOWEL MOTILITY; PROSTATE-CANCER; RADIATION-THERAPY; CONFORMAL RADIOTHERAPY; ADAPTIVE RADIOTHERAPY; RECTAL DISTENSION; SEMINAL-VESICLES;
D O I
10.1017/S1460396919000530
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Introduction: Pelvic internal organs change in volume and position during radiotherapy. This may compromise the efficacy of treatment or worsen its toxicity. There may be limitations to fully correcting these changes using online image guidance; therefore, effective and consistent patient preparation and positioning remain important. This review aims to provide an overview of the extent of pelvic organ motion and strategies to manage this motion. Methods and Materials: Given the breadth of this topic, a systematic review was not undertaken. Instead, existing systematic reviews and individual high-quality studies addressing strategies to manage pelvic organ motion have been discussed. Suggested levels of evidence and grades of recommendation for each strategy have been applied. Results: Various strategies to manage rectal changes have been investigated including diet and laxatives, enemas and rectal emptying tubes and rectal displacement with endorectal balloons (ERBs) and rectal spacers. Bladder-filling protocols and bladder ultrasound have been used to try to standardise bladder volume. Positioning the patient supine, using a full bladder and positioning prone with or without a belly board, has been examined in an attempt to reduce the volume of irradiated small bowel. Some randomised trials have been performed, with evidence to support the use of ERBs, rectal spacers, bladder-filling protocols and the supine over prone position in prostate radiotherapy. However, there was a lack of consistent high-quality evidence that would be applicable to different disease sites within the pelvis. Many studies included small numbers of patients were non-randomised, used less conformal radiotherapy techniques or did not report clinical outcomes such as toxicity. Conclusions: There is uncertainty as to the clinical benefit of many of the commonly adopted interventions to minimise pelvic organ motion. Given this and the limitations in online image guidance compensation, further investigation of adaptive radiotherapy strategies is required.
引用
收藏
页码:182 / 189
页数:8
相关论文
共 50 条
  • [21] Quantification of organ motion during conformal radiotherapy of the prostate by three dimensional image registration
    vanHerk, M
    Bruce, A
    Kroes, APG
    Shouman, T
    Touw, A
    Lebesque, JV
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 1995, 33 (05): : 1311 - 1320
  • [22] Interfractional diaphragm and abdominal organ motion in 189 children during radiotherapy: a multicenter study
    Meijer, K. M.
    Van Dijk, I. W.
    Frank, M.
    Van den Hoek, A. D.
    Balgobind, B. V.
    Janssens, G. O.
    Wendling, M.
    Maduro, J. H.
    Bryce-Atkinson, A.
    Loginova, A.
    Bel, A.
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2022, 114 (05): : 1068 - 1068
  • [23] A Systematic Review of Organ Motion and Image-guided Strategies in External Beam Radiotherapy for Cervical Cancer
    Jadon, R.
    Pembroke, C. A.
    Hanna, C. L.
    Palaniappan, N.
    Evans, M.
    Cleves, A. E.
    Staffurth, J.
    CLINICAL ONCOLOGY, 2014, 26 (04) : 185 - 196
  • [24] Impact of motion management strategies on abdominal organ at risk delineation for magnetic resonance-guided radiotherapy
    Daly, Mairead
    McDaid, Lisa
    Anandadas, Carmel
    Brocklehurst, Andrew
    Choudhury, Ananya
    McWilliam, Alan
    Radhakrishna, Ganesh
    Eccles, Cynthia L.
    PHYSICS & IMAGING IN RADIATION ONCOLOGY, 2024, 32
  • [25] Quantification of vaginal motion associated with daily endorectal balloon placement during whole pelvis radiotherapy for gynecologic cancers
    Taku, Nicolette
    Dise, Joseph
    Kenton, Owen
    Yin, Lingshu
    Teo, Boon-Keng Kevin
    Lin, Lilie L.
    RADIOTHERAPY AND ONCOLOGY, 2016, 120 (03) : 532 - 536
  • [26] Evaluation of organ motion-based robust optimisation for VMAT planning for breast and internal mammary chain radiotherapy
    Dunlop, Alex
    Colgan, Ruth
    Kirby, Anna
    Ranger, Alison
    Blasiak-Wal, Irena
    CLINICAL AND TRANSLATIONAL RADIATION ONCOLOGY, 2019, 16 : 60 - 66
  • [27] An analysis of the time delay and relationship between external sensor signals and internal organ motion for respiratory gated radiotherapy
    Chung, J.
    Lee, J.
    Kim, J.
    Yoon, J.
    Jung, W.
    Suh, T.
    MEDICAL PHYSICS, 2007, 34 (06) : 2386 - 2386
  • [28] INTRODUCING SITETRACK: CONTINUOUS PATIENT MOTION MONITORING DURING STEREOTACTIC RADIOTHERAPY FOR THE HEAD
    Saito, Kenichi
    Fujii, Masami
    Kajiwara, Koji
    Suzuki, Michiyasu
    NEUROSURGERY, 2009, 64 (02) : A110 - A122
  • [29] Intrafraction Organ Motion during Prostate Radiotherapy: Quantitative Correlation of Treatment Time and Margin Size
    Schmitt, D.
    Nill, S.
    Herfarth, K.
    Muenter, M.
    Pfitzenmaier, J.
    Zabel-du Bois, A.
    Roeder, F.
    Huber, P.
    Oelfke, U.
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2010, 78 (03): : S752 - S752
  • [30] Moving targets: detection and tracking of internal organ motion for treatment planning and patient set-up
    Rietzel, E
    Rosenthal, SJ
    Gierga, DP
    Willett, CG
    Chen, GTY
    RADIOTHERAPY AND ONCOLOGY, 2004, 73 : S68 - S72