Performance evaluation of a CyberKnife® G4 image-guided robotic stereotactic radiosurgery system

被引:103
作者
Antypas, Christos [1 ,2 ]
Pantelis, Evaggelos [1 ]
机构
[1] Clin & Diagnost Ctr, Dept Med Phys, Athens 15231, Greece
[2] Univ Athens, Aretaieion Hosp, Dept Radiol, Athens 11528, Greece
关键词
D O I
10.1088/0031-9155/53/17/016
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The aim of the current work was to present the performance evaluation procedures implemented at our department for the commissioning of a G4 CyberKnife system. This system consists of a robotic manipulator, a target-locating system and a lightweight 6-MV linac. Individual quality assurance procedures were performed for each of the CyberKnife subsystems. The system was checked for the mechanical accuracy of its robotic manipulator. The performance of the target-locating system was evaluated in terms of mechanical accuracy of both cameras' alignment and quality assurance tests of the x-ray generators and the flat-panel detectors. The traditional linac 6-MV beam characteristics and beam output parameters were also measured. Results revealed a manipulator mechanical mean accuracy of similar to 0.1 mm, with individual maximum position uncertainties less than 0.25 mm. The target-locating system mechanical accuracy was found within the acceptance limits. For the most clinically used parameters in the CyberKnife practice, e. g. 100-120 kV and 50-200 ms, kV and exposure time accuracy error were measured as less than 2%, while the precision error of the kV was determined as less than 1%. The acquired images of the ETR grid pattern revealed no geometrical distortion while the critical frequency f(50) values for cameras A and B were calculated as 1.5 lp mm(-1) and 1.4 lp mm(-1), respectively. Dose placement measurements were performed in a head and neck phantom. Results revealed sub-millimeter beam delivery precision whereas the total clinical accuracy of the system was measured equal to 0.44 +/- 0.12 mm, 0.29 +/- 0.10 mm and 0.53 +/- 0.16 mm for the skull, fiducial and Xsight spine tracking methods, respectively. The results of this work certify the G4 CyberKnife SRS system capable of delivering high dose distributions with sub-millimeter accuracy and precision to intracranial and extracranial lesions. Moreover, total clinical accuracy of the investigated G4 system was found to be improved for the skull and fiducial tracking methods
引用
收藏
页码:4697 / 4718
页数:22
相关论文
共 45 条
[21]   Stereotactic radiosurgery and stereotactic body radiation therapy: An overview of technical considerations and clinical applications [J].
Kavanagh, BD ;
Timmerman, RD .
HEMATOLOGY-ONCOLOGY CLINICS OF NORTH AMERICA, 2006, 20 (01) :87-+
[22]   Gamma knife radiosurgery for benign cavernous sinus tumors: Quantitative analysis of treatment outcomes [J].
Kuo, JS ;
Chen, JCT ;
Yu, C ;
Zelman, V ;
Giannotta, SL ;
Petrovich, Z ;
MacPherson, D ;
Apuzzo, MLJ .
NEUROSURGERY, 2004, 54 (06) :1385-1393
[23]   The cyberknife stereotactic radiosurgery system: Description, installation, and an initial evaluation of use and functionality [J].
Kuo, JS ;
Yu, C ;
Petrovich, Z ;
Apuzzo, MIJ .
NEUROSURGERY, 2003, 53 (05) :1235-1239
[24]   Intracranial stereotactic positioning systems: report of the American Association of Physicists in Medicine Radiation Therapy Committee Task Group no. 68 [J].
Lightstone, AW ;
Benedict, SH ;
Bova, FJ ;
Solberg, TD ;
Stern, RL .
MEDICAL PHYSICS, 2005, 32 (07) :2380-2398
[25]   The American Society for Therapeutic Radiology and Oncology (ASTRO) evidence-based review of the role of radiosurgery for brain metastases [J].
Mehta, MP ;
Tsao, MN ;
Whelan, TJ ;
Morris, DE ;
Hayman, JA ;
Flickinger, JC ;
Mills, M ;
Rogers, CL ;
Souhami, L .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2005, 63 (01) :37-46
[26]   Technical description, phantom accuracy, and clinical feasibility for fiducial-free frameless real-time image-guided spinal radiosurgery [J].
Muacevic, Alexander ;
Staehler, Michael ;
Drexler, Christian ;
Wowra, Berndt ;
Reiser, Maximilian ;
Tonn, Joerg-Christian .
JOURNAL OF NEUROSURGERY-SPINE, 2006, 5 (04) :303-312
[27]   The accuracy of dose localization for an image-guided frameless radiosurgery system [J].
Murphy, MJ ;
Cox, RS .
MEDICAL PHYSICS, 1996, 23 (12) :2043-2049
[28]   Fiducial-based targeting accuracy for external-beam radiotherapy [J].
Murphy, MJ .
MEDICAL PHYSICS, 2002, 29 (03) :334-344
[29]   AAPM CODE OF PRACTICE FOR RADIOTHERAPY ACCELERATORS - REPORT OF AAPM RADIATION-THERAPY TASK GROUP NO-45 [J].
NATH, R ;
BIGGS, PJ ;
BOVA, FJ ;
LING, CC ;
PURDY, JA ;
VANDEGEIJN, J ;
WEINHOUS, MS .
MEDICAL PHYSICS, 1994, 21 (07) :1093-1121
[30]   The role of Cyberknife radiosurgery/radiotherapy for brain metastases of multiple or large-size tumors [J].
Nishizaki, T. ;
Saito, K. ;
Jimi, Y. ;
Harada, N. ;
Kajiwara, K. ;
Nomura, S. ;
Ishihara, H. ;
Yoshikawa, K. ;
Yoneda, H. ;
Suzuki, M. ;
Gibbs, I. C. .
MINIMALLY INVASIVE NEUROSURGERY, 2006, 49 (04) :203-209