박사

Development of a C-shaped PET system for ion-beam therapy monitoring

김현일 2015년
논문상세정보
' Development of a C-shaped PET system for ion-beam therapy monitoring' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • c-shaped scanner
  • c자 형태 스캐너
  • detect2000
  • heavy-ion beam therapy
  • monte carlo simulation
  • nema standard
  • positron emission tomography
  • 몬테칼로 전산모사
  • 양전자 방출 단층촬영
  • 정량화 평가
  • 중입자 치료
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
347 0

0.0%

' Development of a C-shaped PET system for ion-beam therapy monitoring' 의 참고문헌

  • W. H. Bragg and R. Kleeman, "On the ionization curves of radium,"Philosophical Magazine, 8, pp.726-238, 1904.
  • W. Enghardt, W. D. Fromm, H. Geissel et al., "The spatial distribution ofpositron-emitting nuclei generated by relaticistic light ion beams in organicmatter," Physics in Medicine and Biology, 37, pp.2127-2131, 1992.
  • W. Enghardt, P. Crespo, F. Fisler et al., "Charged hadron tumour therapymonitoring by means of PET," Nuclear Instruments and Methods in PhysicsResearch Section A 525, pp. 284-288, 2004.
  • W. Enghardt, K. Parodi, P. Crespo et al., "Dose quantification from in-beampositron emission tomography," Radiotherapy and Oncology, 73, pp.S96-S98,2004.
  • V. L. Gayshan, A. V. Gektin, A. Boyarintsev et al., "Expanding of FOV ofNaI(Tl) gamma camera detectors-Is it possivle?," Nuclear Instruments andMethods in Physics Research Section A 569, pp. 159-161, 2006.
  • V. A. Babkin, G. C-Danil, V. M. Glovotyuk et al., "SOBP forming for carbontherapy," Central European Journal of Physics, 8, pp.683-688, 2010.
  • U. Amaldi and G. Kraft, "Radiotherapy with beams of carbon ions," Reports onProgress in Physics, 68, pp. 1861-1882, 2005.
  • T. Nishi.032..00000000.o, A. Miyatake, T. Ogino et al., "The development andclinical use of a beam on-line pet system mounted on a rotating gantry port inproton therapy," International Journal of Radiation Oncology Biology Physics, 76,pp. 227-9286, 2010.
  • T. Murakami, H. Tsujii, Y. Furusawa et al., "Medical and other applications ofhigh-energy heavy-ion beams from HIMAC," Journal of Nuclear Materials, 248,pp.360-368, 1997.
  • S. Vandenberghe, M. E. D-Witherspoon, R. M. Lewitt et al., "Fast reconstructionof 3D time-of-flight PET data by axial rebinning and transverse mashing,"Physics in Medicine and Biology, 51, pp.1603-1621, 2006.
  • S. Janek, R. Svenson, C. Jonsson et al., "Development of dose deliveryverification by PET imaging of photonuclear reactions following high energyphoton therapy," Physics in Medicine and Biology, 51, pp. 5769-5783, 2006.
  • S. Jan, G. Santin, D. Strul et al., "GATE: a simulation toolkit for PET andSPECT," Physics in Medicine and Biology, 49, pp.4543-4561, 2004.
  • S. J. An, C-H. Back, K. Lee et al., "A simulation study of a C-shaped in-beamPET system for dose verification in carbon ion therapy," Nuclear Instruments andMethods in Physics Research Section A 698, pp. 37-43, 2013.
  • S. A. Bhide, C. M. Nutting, "Advances in radiotherapy for head and neckcancer," Oral Oncology, 46, pp.439-441, 2010.
  • S-J. Lee, C-H. Baek, Y. H. Chung et al., "A cross-stack quasi-monolithic detectorwith DOI capability for a small animal PET," Jornal of the Korean PhysicalSociety, 54, pp.2429-2434, 2009.
  • R. Baskar, KA. Lee, R. Yeo et al., "Cancer and radiation therapy: currentadvances and future directions," International Journal of Medical Sciences, 9, pp.193-199, 2012.
  • PTCOG: Particle Therapy Co-Operatice Group
  • P. D. Olcott, J. A. Talcott, C. S. Levin et al., "Compact readout electronics forposition sensitive photomultiplier tubes," IEEE Transactions on Nuclear Science,52, pp.21-27, 2005.
  • P. Crespo, G. Shakirin and W. Enghardt, "On the detector arrangement for inbeamPET for hadron therapy monitoring," Physics in Medicine and Biology, 51,pp.2143-2163, 2006.
  • P. Bruyndonckx, C. Lemaitre, D. Schaart et al., "Towards a continuous crystalAPD-based PET detector design," Nuclear Instruments and Methods in PhysicsResearch Section A 571, pp. 182-186, 2007.
  • National Cancer Statistics Korea. (2012). Cancer Incidence in Korea, 2012[Online]. Available: http://www.ncc.re.kr/main.ncc?uri=english/sub04_Statistics.
  • NEMA., Performance Measurements of Positron Emission Tomographs, NEMA Standards Publication NU 2-2007, vol. Rosslyn, VA:NEMA, (2007).
  • MC. Frese, VK. Yu, RD. Stewart et al., "A Mechanism-based approach to predictthe relative biological effectiveness of protons and carbon ions in radiationtherapy," International Journal of Radiation Oncology Biology Physics, 83, pp.442-450, 2012.
  • M. Testa, M. Bajard, M. Chevallier et al., "Real-time monitoring of the Braggpeakposition in ion therapy by means of single photon detection," Radiation andEnvironmental Biophysics, 49, pp. 337-343, 2010.
  • M. Lazzeroni and A. Brahme, "Production of clinically useful positron emitterbeams during carbon ion deceleration," Physics in Medicine and Biology, 56,pp.1585-1600, 2011.
  • M. Haselman, D. Dewitt, W. Mcdougald et al., "FPGA-based front-endelectronics for positron emission tomography," National Institute of Health, 22,pp.93-102, 2009.
  • M. Defrise and X. Liu, "A fast rebinning algorithm for 3D positron emissintomography using John's equation," Inverse Problems, 15, pp.1047-1-65, 1999.
  • L. Lestand, G. Montarou, P. Force et al., "In-beam quality assurance usinginduced ??+ activity in hadrontherapy: a preliminary physical requirements studyusing Geant4," Physics in Medicine and Biology, 57, pp.6497-6518, 2012.
  • K. Parodi, T. Bortfeld and T. Haberer, "Comparison between in-beam and offlinepositron emission tomography imaging of proton and carbon ion therapeuticirradiation at synchrotron- and cyclotron-based facilities, "International Journal ofRadiation Oncology Biology Physics, 71, pp. 945-956, 2008
  • K. Parodi, "PET mpnitoring of hadrontherapy, " Nuclear Medicine Review, 15,C37-C42, 2012.
  • K. Li. M. Safavi-Naeini, D. R. Franklin et al., "A feasibility study of PETiPIX: anultra high resolution small animal PET scanner," Journal of Instrumentation, 8,2013
  • K. Kim, S. Bae, K. Lee et al., "Reconstruction of dose distribution in in-beamPET for carbon therapy, IEEE Nuclear Science Symposium and Medical ImagingConference, Anaheim, USA, 2012.
  • K-W. Jung, Y-O. Won, H-J. Kong et al., "Cancer statistics in Korea:Incidence,Moratality, Survical, and Prevalence in 2012," Cancer Research and Treatment,47, pp. 127-141, 2015.
  • J. Y. Hwang, Y. H. Chung, C-H. Baek et al., "Optimization of a partiallysegmented block detector for MR-compatible small animal PET," NuclearInstruments and Methods in Physics Research Section A 652, pp. 815-818, 2011.
  • J. Uribe, H. Li, T. Xing et al., "Signal characteristics of individual crystals in highresolution BGO detector designs using PMT-quadrant sharing," IEEETransactions on Nuclear Science, 50, pp.355-361, 2003.
  • J. R. Krens, S. F. Kry and N. Sahoo, "Characteristics of optically stimulatedluminescence dosimeteers in the spread-out Bragg peak region of clinical protonbeams," Medical Physics, 39, pp.1854-1863, 2012.
  • I. Pshenichnov, I. Mishustina and W. Greiner, "Distributions of positron-emittingnuclei in proton and carbon ion therapy studied with GEANT4," Physics inMedicine and Biology, 51, pp. 6099-6112, 2006.
  • I. Petrovic, A. Ristic-Fira, L. Koricanac er al., "Comparison of radiobiologicaleffects of carbon ions to protons on a resistant human melanoma cell line,"Cyclotrons and Their Applications, pp.234-236, 2007
  • H. A. Grunder, W. D. Hartsough and E. J. Lofgen, "Accelereation of heavy ionsat the bevatron," Science, 174, pp.1128-1129, 1971.
  • H-I. Kim, S. J. An, Y. H. Chung et al., "Development of all-in-one gammacamera/CCD system for safeguard verification," Jornal of the Korean PhysicalSociety, 65, pp.2013-2016, 2014.
  • G. Sportelli, N. Belcari, N. Camarlinghi et al., "First full-beam PET acquisitionsin proton therapy with a modular dual-head dedicated system," Physics inMedicine and Biology, 59, pp.43-60, 2014.
  • G. Shakirin, H. Braess, F. Fielder et al., "Implementation and workflow for PETmoniroting of therapeutic ion irradiation: a comparison in-beam, in-room, andoff-line techniques," Physics in Medicine and Biology, 56, pp. 1281-1289, 2011.
  • FJ. Berkey, "Managing the adverse effects of radiation therapy," AmericanFamily Physician, 82, pp. 381-388, 2010.
  • F. Sommerer, F. Cerutti, K. Parodi et al., "In-beam PET monitoring of monoenergetic16O and 12C beams: experiments and FRUKA simulations forhomogeneous targets," Physics in Medicine and Biology, 54, pp.3979-3996 ,2009.
  • F. Ponisch, K. Parodi, B. G. Hasch et al, "The modelling of positron emitterproduction and PET imaging during carbon ion therapy," Physics in Medicineand Biology, 49, pp.5217-5232, 2004.
  • F. Fiedler, P. Crespo, K. Parodi et al., "The Feasibility of in-beam PET fortherapeutic beams of 3He," IEEE Transactions on Nuclear Science, 53, pp.2252-2259, 2006 .
  • F. Cayouette, D. Laurendeau and C. Moisan, "DETECT2000: An ImprovedMonte-Carlo Simulator for the Computer Aided Design of Photon SensingDevices," Proceedings of SPIE, 69, pp.4833-4840, 2003.
  • E. Min, H-I. Kim K. Kim et al., "FPGA-based multichannel data acquisitionsystem for prototype in-beam PET," IEEE Nuclear Science Symposium andMedical Imaging Conference, Seoul, Korea, 2013.
  • C. C. Ling, E. Yorke and Z. Fuks, "From IMRT to IGRT: Frontierland ofNeverland?," Radiotherapy and Oncology, 78, pp.119-122, 2006.
  • A. Wright, "Amplifiers for use with photomultiliers-who need them?," NuclearInstruments and Methods in Physics Research Section A, 504, pp. 245-249, 2003.
  • A. Braem, M. Chamizo, E. Chesi et al., "Novel design of a parallax free comptonenhanced PET scanner," Nuclear Instruments and Methods in Physics ResearchSection A 525, pp. 268-274, 2004.