AUTOMATED-DETERMINATION OF PATIENT SETUP ERRORS IN RADIATION-THERAPY USING SPHERICAL RADIO-OPAQUE MARKERS

被引:41
作者
LAM, KL
TENHAKEN, RK
MCSHAN, DL
THORNTON, AF
机构
[1] Department of Radiation Oncology, University of Michigan Medical Center, Ann Arbor
关键词
RADIOTHERAPY LOCALIZATION; IMAGE PROCESSING; PORTAL IMAGE;
D O I
10.1118/1.596968
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
Patient positioning accuracy can be quantified by the three-dimensional (3-D) translations and rotations required to transform the patient back to the desired position. Results of the current study show that the translations and rotations could be obtained from two projection images obtained radiographically on a linear accelerator when spherical radio-opaque markers were implanted inside or affixed to the surface of a skull phantom. In the study, films used to record the images were converted into digital gray scale images using a laser film digitizer. The marker images were located automatically by the computer using image processing techniques. By combining information from both projections, the 3-D locations of the markers were determined to submillimeter precision. Pairs of films were also analyzed for the phantom displaced from its original location by known amounts. The accuracy of the computed translations and rotations required for realignment of the phantom were found to be better than 1 mm and 0.3-degrees, respectively; comparable to the accuracy of the readout system of the equipment used. The general methodology could be coupled with an electronic portal imaging device for use in computer aided or automated correction of patient position in radiotherapy.
引用
收藏
页码:1145 / 1152
页数:8
相关论文
共 16 条
[1]   CORRELATION OF PROJECTION RADIOGRAPHS IN RADIATION-THERAPY USING OPEN CURVE SEGMENTS AND POINTS [J].
BALTER, JM ;
PELIZZARI, CA ;
CHEN, GTY .
MEDICAL PHYSICS, 1992, 19 (02) :329-334
[2]   FAST EVALUATION OF PATIENT SET-UP DURING RADIOTHERAPY BY ALIGNING FEATURES IN PORTAL AND SIMULATOR IMAGES [J].
BIJHOLD, J ;
VANHERK, M ;
VIJLBRIEF, R ;
LEBESQUE, JV .
PHYSICS IN MEDICINE AND BIOLOGY, 1991, 36 (12) :1665-1679
[3]   QUALITY ASSURANCE IN RADIATION-THERAPY - SYSTEMATIC EVALUATION OF ERRORS DURING THE TREATMENT EXECUTION [J].
BLANCO, S ;
LOPEZBOTE, MA ;
DESCO, M .
RADIOTHERAPY AND ONCOLOGY, 1987, 8 (03) :253-261
[4]   IMAGE FEATURE ANALYSIS AND COMPUTER-AIDED DIAGNOSIS IN DIGITAL RADIOGRAPHY .1. AUTOMATED DETECTION OF MICROCALCIFICATIONS IN MAMMOGRAPHY [J].
CHAN, HP ;
DOI, K ;
GALHOTRA, S ;
VYBORNY, CJ ;
MACMAHON, H ;
JOKICH, PM .
MEDICAL PHYSICS, 1987, 14 (04) :538-548
[5]   STUDY OF TREATMENT VARIATION IN THE RADIOTHERAPY OF HEAD AND NECK TUMORS USING A FIBEROPTIC ONLINE RADIOTHERAPY IMAGING-SYSTEM [J].
HALVERSON, KJ ;
LEUNG, TC ;
PELLET, JB ;
GERBER, RL ;
WEINHOUS, MS ;
WONG, JW .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 1991, 21 (05) :1327-1336
[6]   RADIOTHERAPY PLANNING - DIRECT TUMOR LOCATION ON SIMULATION AND PORT FILMS USING CT .1. PRINCIPLES [J].
HAYNOR, DR ;
BORNING, AW ;
GRIFFIN, BA ;
JACKY, JP ;
KALET, IJ ;
SHUMAN, WP .
RADIOLOGY, 1986, 158 (02) :537-540
[7]  
JONES D, 1990, International Journal of Radiation Oncology, Biology, Physics, V19, P134, DOI 10.1016/0360-3016(90)90671-6
[8]   INVESTIGATION OF AN FFT-BASED CORRELATION TECHNIQUE FOR VERIFICATION OF RADIATION TREATMENT SETUP [J].
JONES, SM ;
BOYER, AL .
MEDICAL PHYSICS, 1991, 18 (06) :1116-1125
[9]  
Kruger R A, 1984, BASIC CONCEPTS DIGIT
[10]   IMPROVEMENT OF PRECISION IN SPATIAL LOCALIZATION OF RADIO-OPAQUE MARKERS USING THE 2-FILM TECHNIQUE [J].
LAM, KL ;
TENHAKEN, RK .
MEDICAL PHYSICS, 1991, 18 (06) :1126-1131