Helical tomotherapy quality assurance

被引:22
作者
Balog, John [1 ]
Soisson, Emilie [2 ]
机构
[1] Mohawk Valley Med Phys, Dept Radiat Oncol, Rome, NY 13440 USA
[2] Univ Wisconsin, Dept Human Oncol, Madison, WI USA
来源
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS | 2008年 / 71卷 / 01期
关键词
D O I
10.1016/j.ijrobp.2007.10.001
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Helical tomotherapy uses a dynamic delivery in which the gantry, treatment couch, and multileaf collimator leaves are all in motion during treatment. This results in highly conformal radiotherapy, but the complexity of the delivery is partially hidden from the end-user because of the extensive integration and automation of the tomotherapy control systems. This presents a challenge to the medical physicist who is expected to be both a system user and an expert, capable of verifying relevant aspects of treatment delivery. A related issue is that a clinical tomotherapy planning system arrives at a customer's site already commissioned by the manufacturer, not by the clinical physicist. The clinical physicist and the manufacturer's representative verify the commissioning at the customer site before acceptance. Theoretically, treatment could begin immediately after acceptance. However, the clinical physicist is responsible for the safe and proper use of the machine. In addition, the therapists and radiation oncologists need to understand the important machine characteristics before treatment can proceed. Typically, treatment begins about 2 weeks after acceptance. This report presents an overview of the tomotherapy system. Helical tomotherapy has unique dosimetry characteristics, and some of those features are emphasized. The integrated treatment planning, delivery, and patient-plan quality assurance process is described. A quality assurance protocol is proposed, with an emphasis on what a clinical medical physicist could and should check. Additionally, aspects of a tomotherapy quality assurance program that could be checked automatically and remotely because of its inherent imaging system and integrated database are discussed. (C) 2008 Elsevier Inc.
引用
收藏
页码:S113 / S117
页数:5
相关论文
共 12 条
[1]   Clinical helical tomotherapy commissioning dosimetry [J].
Balog, J ;
Olivera, G ;
Kapatoes, J .
MEDICAL PHYSICS, 2003, 30 (12) :3097-3106
[2]   Benchmarking beam alignment for a clinical helical tomotherapy device [J].
Balog, J ;
Mackie, TR ;
Pearson, D ;
Hui, S ;
Paliwal, B ;
Jeraj, R .
MEDICAL PHYSICS, 2003, 30 (06) :1118-1127
[3]   Helical tomotherapy dynamic quality assurance [J].
Balog, John ;
Holmes, Tim ;
Vaden, Richard .
MEDICAL PHYSICS, 2006, 33 (10) :3939-3950
[4]   Quality assurance of a helical tomotherapy machine [J].
Fenwick, JD ;
Tomé, WA ;
Jaradat, HA ;
Hui, SK ;
James, JA ;
Balog, JP ;
DeSouza, CN ;
Lucas, DB ;
Olivera, GH ;
Mackie, TR ;
Paliwal, BR .
PHYSICS IN MEDICINE AND BIOLOGY, 2004, 49 (13) :2933-2953
[5]   Radiation characteristics of helical tomotherapy [J].
Jeraj, R ;
Mackie, TR ;
Balog, J ;
Olivera, G ;
Pearson, D ;
Kapatoes, J ;
Ruchala, K ;
Reckwerdt, P .
MEDICAL PHYSICS, 2004, 31 (02) :396-404
[6]   COMPREHENSIVE QA FOR RADIATION ONCOLOGY - REPORT OF AAPM RADIATION-THERAPY COMMITTEE TASK-GROUP-40 [J].
KUTCHER, GJ ;
COIA, L ;
GILLIN, M ;
HANSON, WF ;
LEIBEL, S ;
MORTON, RJ ;
PALTA, JR ;
PURDY, JA ;
REINSTEIN, LE ;
SVENSSON, GK ;
WELLER, M ;
WINGFIELD, L .
MEDICAL PHYSICS, 1994, 21 (04) :581-618
[7]   Tomotherapy [J].
Mackie, TR ;
Balog, J ;
Ruchala, K ;
Shepard, D ;
Aldridge, S ;
Fitchard, E ;
Reckwerdt, P ;
Olivera, G ;
McNutt, T ;
Mehta, M .
SEMINARS IN RADIATION ONCOLOGY, 1999, 9 (01) :108-117
[8]   TOMOTHERAPY - A NEW CONCEPT FOR THE DELIVERY OF DYNAMIC CONFORMAL RADIOTHERAPY [J].
MACKIE, TR ;
HOLMES, T ;
SWERDLOFF, S ;
RECKWERDT, P ;
DEASY, JO ;
YANG, J ;
PALIWAL, B ;
KINSELLA, T .
MEDICAL PHYSICS, 1993, 20 (06) :1709-1719
[9]  
PARHAM A, 2006, MED PHPS, V33, P3680
[10]   Megavoltage CT on a tomotherapy system [J].
Ruchala, KJ ;
Olivera, GH ;
Schloesser, EA ;
Mackie, TR .
PHYSICS IN MEDICINE AND BIOLOGY, 1999, 44 (10) :2597-2621