Breast movement during normal and deep breathing, respiratory training and set up errors: implications for external beam partial breast irradiation

被引:42
作者
Chopra, S.
Dinshaw, K. A.
Kamble, R.
Sarin, R. [1 ]
机构
[1] ACTREC, Tata Mem Ctr, NaviMumbai, Maharashtra, India
[2] Tata Mem Hosp, Bombay 400012, Maharashtra, India
关键词
D O I
10.1259/bjr/98024704
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
This study was designed to evaluate interfraction and intrafraction breast movement and to study the effect of respiratory training on respiratory indices. Five patients were immobilized in supine position in a vacuum bag and three-dimensional set up errors, respiratory movement of the breast during normal and deep breathing, tidal volume and breath hold time were recorded. All patients underwent respiratory training and all the respiratory indices were re-evaluated at the end of training. Cumulative maximum movement error (CMME) was calculated by adding directional maximum set up error and maximum post training movement during normal breathing. The mean set up deviation was 1.3 mm (SD +/- 0.5 mm), 1.3 mm (SD +/- 0.3 mm) and 4.4 mm (SD +/- 2.6 mm) in the mediolateral, superoinferior and anteroposterior dimensions. Pre-training mean of the maximum marker movement during normal breathing was 1.07 mm, 1.94 mm and 1.86 mm in the mediolateral, superoinferior and anteroposterior dimensions. During deep breathing these values were 2 mm, 5.5 mm and 4.8 mm. While respiratory training had negligible effect on breast movement during normal breathing, it resulted in a modest reduction during deep breathing (p=0.2). The mean CMME recorded for these patients was 3.4 mm, 4.5 mm and 7.1 mm in the mediolateral, superoinferior and anteroposterior dimension. Respiratory training also resulted in an increase in breath hold time from a mean of 31 s cm(3) to cm(3) to 44 s (p=0.04) and tidal volume from a mean of 560 1160 (p=0.04). With patients immobilized in the vacuum bag the CMMEs are relatively less. individualized directional margins may aid in reduction of planning target volume (PTV).
引用
收藏
页码:766 / 773
页数:8
相关论文
共 32 条
[1]   Patient position reproducibility in fractionated stereotactically guided conformal radiotherapy using the BrainLab® mask system [J].
Alheit, H ;
Dornfeld, S ;
Dawel, M ;
Alheit, M ;
Henzel, B ;
Steckler, K ;
Blank, H ;
Geyer, P .
STRAHLENTHERAPIE UND ONKOLOGIE, 2001, 177 (05) :264-268
[2]   Accelerated partial breast irradiation using 3D conformal radiation therapy (3D-CRT) [J].
Baglan, KL ;
Sharpe, MB ;
Jaffray, D ;
Frazier, RC ;
Fayad, J ;
Kestin, LL ;
Remouchamps, V ;
Martinez, AA ;
Wong, J ;
Vicini, FA .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2003, 55 (02) :302-311
[3]   Evaluating the influence of setup uncertainties on treatment planning for focal liver tumors [J].
Balter, JM ;
Brock, KK ;
Lam, KL ;
Tatro, D ;
Dawson, LA ;
McShan, D ;
Ten Haken, RK .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2005, 63 (02) :610-614
[4]  
Bohmer D, 1998, STRAHLENTHER ONKOL, V174, P36
[5]   Portal imaging to assess set-up errors, tumor motion and tumor shrinkage during conformal radiotherapy of non-small cell lung cancer [J].
Erridge, SC ;
Seppenwoolde, Y ;
Muller, SH ;
van Herk, M ;
De Jaeger, K ;
Belderbos, JSA ;
Boersma, LJ ;
Lebesque, JV .
RADIOTHERAPY AND ONCOLOGY, 2003, 66 (01) :75-85
[6]   Prone accelerated partial breast irradiation after breast-conserving surgery: Preliminary clinical results and dose-volume histogram analysis [J].
Formenti, SC ;
Truong, MT ;
Goldberg, JD ;
Mukhi, V ;
Rosenstein, B ;
Roses, D ;
Shapiro, R ;
Guth, A ;
Dewyngaert, JK .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2004, 60 (02) :493-504
[7]   T1 stage breast cancer: Adjuvant hypofractionated conformal radiation therapy to tumor bed in selected postmenopausal breast cancer patients - Pilot feasibility study [J].
Formenti, SC ;
Rosenstein, B ;
Skinner, KA ;
Jozsef, G .
RADIOLOGY, 2002, 222 (01) :171-178
[8]   Quantifying the effect of intrafraction motion during breast IMRT planning and dose delivery [J].
George, R ;
Keall, PJ ;
Kini, VR ;
Vedam, SS ;
Siebers, JV ;
Wu, Q ;
Lauterbach, MH ;
Arthur, DW ;
Mohan, R .
MEDICAL PHYSICS, 2003, 30 (04) :552-562
[9]  
GHIZELAN MJ, 2005, INT J RADIAT ONCOL, V62, P406
[10]   Conformal radiotherapy (CRT) planning for lung cancer: Analysis of intrathoracic organ motion during extreme phases of breathing [J].
Giraud, P ;
De Rycke, Y ;
Dubray, B ;
Helfre, S ;
Voican, D ;
Guo, L ;
Rosenwald, JC ;
Keraudy, K ;
Housset, M ;
Touboul, E ;
Cosset, JM .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2001, 51 (04) :1081-1092