Current status of PET/CT for tumour volume definition in radiotherapy treatment planning for non-small cell lung cancer (NSCLC)

被引:144
作者
Greco, Carlo
Rosenzweig, Kenneth
Cascini, Giuseppe Lucio
Tamburrini, Oscar
机构
[1] Mem Sloan Kettering Canc Ctr, Dept Radiat Oncol, New York, NY 10021 USA
[2] Magna Graecia Univ Catanzaro, Div Radiat Oncol, I-88100 Catanzaro, Italy
[3] Magna Graecia Univ Catanzaro, Nucl Med Unit, Dept Radiol, I-88100 Catanzaro, Italy
关键词
PET/CT scanners; functional imaging; non-small cell lung cancer; dose escalation; conformal radiotherapy; treatment planning; inter-observer variability; segmentation;
D O I
10.1016/j.lungcan.2007.03.020
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Target volume delineation of lung cancer is well known to be prone to large inter-observer variability. The advent of PET/CT devices, with co-registered functional and anatomical data, has opened new exciting possibilities for target volume definition in radiation oncology. PET/CT imaging is rapidly being embraced by the radiation oncology community as a tool to improve the accuracy of target volume delineation for treatment optimization in NSCLC. Several studies have dealt with the feasibility of incorporating FDG-PET information into contour delineation with the aim to improve overall accuracy and to reduce inter-observer variation. A significant impact of PET-derived contours on treatment planning has been shown in 30-60% of the plans with respect to the CT-only target volume. The most prominent changes in the gross tumour volume (GTV) have been reported in cases with atelectasis and following the incorporation of PET-positive nodes in otherwise CT-insignificant nodal areas. Although inter-observer variability is still present following target volume delineation with PET/CT, it is greatly reduced compared to conventional CT-only contouring. PET/CT may also provide improved therapeutic ratio compared to conventional CT planning. Increased target coverage and often reduced target volumes may potentially result in PET/CT-based planning to yield better tumour control probability through dose escalation, while still complying with dose/volume constrains for normal tissues. Despite these exciting results, more clinical studies need to be performed to better define the role of combined PET/CT in treatment planning for NSCLC. (C) 2007 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:125 / 134
页数:10
相关论文
共 46 条
[1]   Towards a minimally invasive staging strategy in NSCLC:: analysis of PET positive mediastinal lesions by EUS-FNA [J].
Annema, JT ;
Hoekstra, OS ;
Smit, EF ;
Veseliç, M ;
Versteegh, MIM ;
Rabe, KF .
LUNG CANCER, 2004, 44 (01) :53-60
[2]   The contribution of integrated PET/CT to the evolving definition of treatment volumes in radiation treatment planning in lung cancer [J].
Ashamalla, H ;
Rafla, S ;
Parikh, K ;
Mokhtar, B ;
Goswami, G ;
Kambam, S ;
Abdel-Dayem, H ;
Guirguis, A ;
Ross, P ;
Evola, A .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2005, 63 (04) :1016-1023
[3]   Final results of a Phase I/II dose escalation trial in non-small-cell lung cancer using three-dimensional conformal radiotherapy [J].
Belderbos, Jose S. A. ;
Heemsbergen, Wilma D. ;
De Jaeger, Katrien ;
Baas, Paul ;
Lebesque, Joos V. .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2006, 66 (01) :126-134
[4]  
Biehl KJ, 2006, J NUCL MED, V47, P1808
[5]   Defining a radiotherapy target with positron emission tomography [J].
Black, QC ;
Grills, IS ;
Kestin, LL ;
Wong, CYO ;
Wong, JW ;
Martinez, AA ;
Yan, D .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2004, 60 (04) :1272-1282
[6]   Impact of FDG-PET on radiation therapy volume delineation in non-small-cell lung cancer [J].
Bradley, J ;
Thorstad, WL ;
Mutic, S ;
Miller, TR ;
Dehdashti, F ;
Siegel, BA ;
Bosch, W ;
Bertrand, RJ .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2004, 59 (01) :78-86
[7]   Can pet provide the 3D extent of tumor motion for individualized internal target volumes? A phantom study of the limitations of CY and the promise of PET [J].
Caldwell, CB ;
Mah, K ;
Skinner, M ;
Danjoux, CE .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2003, 55 (05) :1381-1393
[8]   Observer variation in contouring gross tumor volume in patients with poorly defined non-small-cell lung tumors on CT:: The impact of 18FDG-hybrid PET fusion [J].
Caldwell, CB ;
Mah, K ;
Ung, YC ;
Danjoux, CE ;
Balogh, JM ;
Ganguli, SN ;
Ehrlich, LE .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2001, 51 (04) :923-931
[9]   Radiation treatment planning with an integrated positron emission and computer tomography (PET/CT):: A feasibility study [J].
Ciernik, IF ;
Dizendorf, E ;
Baumert, BG ;
Reiner, B ;
Burger, C ;
Davis, JB ;
Lütolf, UM ;
Steinert, HC ;
Von Schulthess, GK .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2003, 57 (03) :853-863
[10]   Tri-dimensional automatic segmentation of PET volumes based on measured source-to-background ratios:: influence of reconstruction algorithms [J].
Daisne, JF ;
Sibomana, M ;
Bol, A ;
Doumont, T ;
Lonneux, M ;
Grégoire, V .
RADIOTHERAPY AND ONCOLOGY, 2003, 69 (03) :247-250