High-contrast Compton camera: Challenges to high-quality and broadband imaging

被引:1
作者
Koshikawa, N. [1 ]
Kikuchi, Y. [1 ]
Wakabayashi, Y. [2 ]
Kobayashi, T. [2 ]
Kataoka, J. [1 ]
机构
[1] Waseda Univ, Grad Sch Adv Sci & Engn, Tokyo, Japan
[2] RIKEN, RIKEN Ctr Adv Photon, Saitama, Japan
关键词
GOLD NANOPARTICLES; PET;
D O I
10.1063/5.0231745
中图分类号
O59 [应用物理学];
学科分类号
摘要
In the field of nuclear medicine, various radiopharmaceuticals require wideband x-ray/gamma-ray imaging devices for clinical and treatment monitoring. Compton cameras, which perform imaging using high-energy gamma rays, have the potential to significantly increase the variety of radioactive nuclides that can be imaged. However, artifacts caused by the so-called "Compton cone" have hindered their clinical use. Therefore, we propose the use of a collimator to improve the contrast of images obtained using Compton cameras. In this study, we developed a high-contrast Compton camera by attaching a tungsten collimator to its front surface. The contrast is improved by applying weighting to the signals based on the distance that the high-energy gamma rays penetrated the collimator walls. As a demonstration, we visualized Au-198 plates that emit 412-keV gamma rays with and without the collimator. In addition, low-energy (<200 keV) x-ray/gamma-ray imaging, which is difficult for conventional Compton cameras, was achieved by performing single-photon emission computed tomography (SPECT) using the collimator and scatterer of the Compton camera. We demonstrated broadband gamma-ray imaging by visualizing a Ba-133 standard source using 81-keV and 356-keV gamma rays based on the principles of SPECT and Compton cameras, respectively.
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页数:6
相关论文
共 18 条
[1]   GEANT4-a simulation toolkit [J].
Agostinelli, S ;
Allison, J ;
Amako, K ;
Apostolakis, J ;
Araujo, H ;
Arce, P ;
Asai, M ;
Axen, D ;
Banerjee, S ;
Barrand, G ;
Behner, F ;
Bellagamba, L ;
Boudreau, J ;
Broglia, L ;
Brunengo, A ;
Burkhardt, H ;
Chauvie, S ;
Chuma, J ;
Chytracek, R ;
Cooperman, G ;
Cosmo, G ;
Degtyarenko, P ;
Dell'Acqua, A ;
Depaola, G ;
Dietrich, D ;
Enami, R ;
Feliciello, A ;
Ferguson, C ;
Fesefeldt, H ;
Folger, G ;
Foppiano, F ;
Forti, A ;
Garelli, S ;
Giani, S ;
Giannitrapani, R ;
Gibin, D ;
Cadenas, JJG ;
González, I ;
Abril, GG ;
Greeniaus, G ;
Greiner, W ;
Grichine, V ;
Grossheim, A ;
Guatelli, S ;
Gumplinger, P ;
Hamatsu, R ;
Hashimoto, K ;
Hasui, H ;
Heikkinen, A ;
Howard, A .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2003, 506 (03) :250-303
[2]   Impact of dopamine transporter SPECT using 123I-ioflupane on diagnosis and management of patients with clinically uncertain Parkinsonian syndromes [J].
Catafau, AM ;
Tolosa, E .
MOVEMENT DISORDERS, 2004, 19 (10) :1175-1182
[3]   Application of gold nanoparticles in biomedical and drug delivery [J].
Daraee, Hadis ;
Eatemadi, Ali ;
Abbasi, Elham ;
Aval, Sedigheh Fekri ;
Kouhi, Mohammad ;
Akbarzadeh, Abolfazl .
ARTIFICIAL CELLS NANOMEDICINE AND BIOTECHNOLOGY, 2016, 44 (01) :410-422
[4]   Particle size-dependent organ distribution of gold nanoparticles after intravenous administration [J].
De Jong, Wim H. ;
Hagens, Werner I. ;
Krystek, Petra ;
Burger, Marina C. ;
Sips, Adrienne J. A. M. ;
Geertsma, Robert E. .
BIOMATERIALS, 2008, 29 (12) :1912-1919
[5]   Recommendations on the use of 18F-FDG PET in oncology [J].
Fletcher, James W. ;
Djulbegovic, Benjamin ;
Soares, Heloisa P. ;
Siegel, Barry A. ;
Lowe, Val J. ;
Lyman, Gary H. ;
Coleman, R. Edward ;
Wahl, Richard ;
Paschold, John Christopher ;
Avrill, Norbert ;
Einhorn, Lawrence H. ;
Suh, W. Warren ;
Samson'O, David ;
Delbekell, Dominique ;
Gorman, Mark ;
Shields, Anthony F. .
JOURNAL OF NUCLEAR MEDICINE, 2008, 49 (03) :480-508
[6]  
Grassi I, 2012, AM J NUCL MED MOLEC, V2, P33
[7]   Astrocyte metabolism in multiple sclerosis investigated by 1-C-11 acetate PET [J].
Kato, Hiroki ;
Okuno, Tatsusada ;
Isohashi, Kayako ;
Koda, Toru ;
Shimizu, Mikito ;
Mochizuki, Hideki ;
Nakatsuji, Yuji ;
Hatazawa, Jun .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2021, 41 (02) :369-379
[8]   First demonstration of multi-color 3-D in vivo imaging using ultra-compact Compton camera [J].
Kishimoto, Aya ;
Kataoka, Jun ;
Taya, Takanori ;
Tagawa, Leo ;
Mochizuki, Saku ;
Ohsuka, Shinji ;
Nagao, Yuto ;
Kurita, Keisuke ;
Yamaguchi, Mitsutaka ;
Kawachi, Naoki ;
Matsunaga, Keiko ;
Ikeda, Hayato ;
Shimosegawa, Eku ;
Hatazawa, Jun .
SCIENTIFIC REPORTS, 2017, 7
[9]   Completion of a new accelerator-driven compact neutron source prototype RANS-II for on-site use [J].
Kobayashi, Tomohiro ;
Ikeda, Shota ;
Otake, Yoshie ;
Ikeda, Yujiro ;
Hayashizaki, Noriyosu .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2021, 994
[10]   Activation imaging: New concept of visualizing drug distribution with wide-band X-ray and gamma-ray imager [J].
Koshikawa, N. ;
Omata, A. ;
Masubuchi, M. ;
Kataoka, J. ;
Kadonaga, Y. ;
Tokoi, K. ;
Nakagawa, S. ;
Imada, A. ;
Toyoshima, A. ;
Matsunaga, K. ;
Kato, H. ;
Wakabayashi, Y. ;
Kobayashi, T. ;
Takamiya, K. ;
Ueda, M. .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2023, 1045