Phase contrast portal imaging using synchrotron radiation

被引:1
作者
Umetani, K. [1 ]
Kondoh, T. [2 ]
机构
[1] SPring 8, Japan Synchrotron Radiat Res Inst, Sayo, Hyogo 6795198, Japan
[2] Kobe Univ, Grad Sch Med, Kobe, Hyogo 6500017, Japan
关键词
IN-VIVO; MICROPLANAR BEAMS; HIGH-RESOLUTION; X-RAYS; MICROBEAM; THERAPY; TOMOGRAPHY; FACILITY; CELLS;
D O I
10.1063/1.4885755
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Microbeam radiation therapy is an experimental form of radiation treatment with great potential to improve the treatment of many types of cancer. We applied a synchrotron radiation phase contrast technique to portal imaging to improve targeting accuracy for microbeam radiation therapy in experiments using small animals. An X-ray imaging detector was installed 6.0 m downstream from an object to produce a high-contrast edge enhancement effect in propagation-based phase contrast imaging. Images of a mouse head sample were obtained using therapeutic white synchrotron radiation with a mean beam energy of 130 keV. Compared to conventional portal images, remarkably clear images of bones surrounding the cerebrum were acquired in an air environment for positioning brain lesions with respect to the skull structure without confusion with overlapping surface structures. (C) 2014 AIP Publishing LLC.
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页数:6
相关论文
共 34 条
[1]  
[Anonymous], PROG NUCL SCI TECH
[2]  
[Anonymous], [No title captured], Patent No. [5,771,270, 5771270]
[3]   Electronic portal imaging devices: a review and historical perspective of contemporary technologies and research [J].
Antonuk, LE .
PHYSICS IN MEDICINE AND BIOLOGY, 2002, 47 (06) :R31-R65
[4]   Low-dose phase contrast x-ray medical imaging [J].
Arfelli, F ;
Assante, M ;
Bonvicini, V ;
Bravin, A ;
Cantatore, G ;
Castelli, E ;
Dalla Palma, L ;
Di Michiel, M ;
Longo, R ;
Olivo, A ;
Pani, S ;
Pontoni, D ;
Poropat, P ;
Prest, M ;
Rashevsky, A ;
Tromba, G ;
Vacchi, A ;
Vallazza, E ;
Zanconati, F .
PHYSICS IN MEDICINE AND BIOLOGY, 1998, 43 (10) :2845-2852
[5]   Effects of pulsed, spatially fractionated, microscopic synchrotron X-ray beams on normal and tumoral brain tissue [J].
Braeuer-Krisch, E. ;
Serduc, R. ;
Siegbahn, E. A. ;
Le Duc, G. ;
Prezado, Y. ;
Bravin, A. ;
Blattmann, H. ;
Laissue, J. A. .
MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH, 2010, 704 (1-3) :160-166
[6]   Characterization of a tungsten/gas multislit collimator for microbeam radiation therapy at the European Synchrotron Radiation Facility -: art. no. 064303 [J].
Bräuer-Krisch, E ;
Bravin, A ;
Zhang, L ;
Siegbahn, E ;
Stepanek, J ;
Blattmann, H ;
Slatkin, DN ;
Gebbers, JO ;
Jasmin, M ;
Laissue, JA .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2005, 76 (06)
[7]   In vivo high-resolution synchrotron radiation imaging of collagen-induced arthritis in a rodent model [J].
Choi, Chang-Hyuk ;
Kim, Hong-Tae ;
Choe, Jung-Yoon ;
Kim, Seong-Kyu ;
Choi, Gi-Whan ;
Jheon, SangHoon ;
Kim, Jong-Ki .
JOURNAL OF SYNCHROTRON RADIATION, 2010, 17 :393-399
[8]   Observation of microstructure and damage in materials by phase sensitive radiography and tomography [J].
Cloetens, P ;
PateyronSalome, M ;
Buffiere, JY ;
Peix, G ;
Baruchel, J ;
Peyrin, F ;
Schlenker, M .
JOURNAL OF APPLIED PHYSICS, 1997, 81 (09) :5878-5886
[9]   TUMOR CELL RESPONSE TO SYNCHROTRON MICROBEAM RADIATION THERAPY DIFFERS MARKEDLY FROM CELLS IN NORMAL TISSUES [J].
Crosbie, Jeffrey C. ;
Anderson, Robin L. ;
Rothkamm, Kai ;
Restall, Christina M. ;
Cann, Leonie ;
Ruwanpura, Saleela ;
Meachem, Sarah ;
Yagi, Naoto ;
Svalbe, Imants ;
Lewis, Robert A. ;
Williams, Bryan R. G. ;
Rogers, Peter A. W. .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2010, 77 (03) :886-894
[10]   Interlaced x-ray microplanar beams: A radiosurgery approach with clinical potential [J].
Dilmanian, FA ;
Zhong, Z ;
Bacarian, T ;
Benveniste, H ;
Romanelli, P ;
Wang, RL ;
Welwart, J ;
Yuasa, T ;
Rosen, EM ;
Anschel, DJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (25) :9709-9714