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교수진

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김진성

겸직교수/공학박사

  • 전공분야 : 방사선의학물리, 중입자치료, 인공지능
  • 이메일 : jinsung@yuhs.ac
  • 위치 :
  • 연락처 : 02-2228-8118

연구분야

의학물리 (Medical Physics)
양성자, 중입자치료 (Particle Therapy)
영상유도방사선치료 (Image Guided Radiation Therapy)
의료영상 (Medical Imaging)

소속 및 경력

1999~ 2001 삼성서울병원 치료방사선과,
2001~ 2002 Electronic Radiological Laboratory, Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, 연수
2000~ 2007 한국과학기술원 원자력 및 양자공학과, 조교
2007~ 2009 국립암센터 양성자치료센터 박사후 연구원 & 의학물리아카데미
2009~ 2016 삼성서울병원 방사선종양학과 Ph.D 조교수
2010~ 2016 성균관대학교 의과대학 연구조교수
2016~ 2018 연세대학교 의과대학 방사선종양학교실 조교수
2019~ 현재 연세대학교 의과대학 방사선종양학교실 부교수

학력사항

한국과학기술원 (KAIST) 원자력 및 양자공학과 공학사(2000)
한국과학기술원 (KAIST) 원자력 및 양자공학과 의과학 학제전공 석사(2003)
한국과학기술원 (KAIST) 원자력 및 양자공학과 공학박사(2007)

교육 및 연구경력

차세대한국과학기술한림원 의약학부 간사
한국의학물리학회 정회원 및 이사
대한방사선종양학회 특별회원
미국 의학물리학회(AAPM) 회원
한국원자력학회 정회원
한국물리학회 정회원

기타 학술 경력

[논문]
• Development of a 3D optical scanning-based automatic quality assurance system for proton range compensators
MEDICAL PHYSICS 42/2 :1071-1079,2015
• The first private-hospital based proton therapy center in Korea; status of the Proton Therapy Center at Samsung Medical Center
Radiation Oncology Journal 33/4 :337-343,2015
• Feasibility Study of the Neutron Dose for Real-time Image-guided Proton Therapy: A Monte Carlo Study
JOURNAL OF THE KOREAN PHYSICAL SOCIETY 67/1 :142-146,2015
• The Proton Therapy Nozzles at Samsung Medical Center: A Monte Carlo Simulation Study using TOPAS
JOURNAL OF THE KOREAN PHYSICAL SOCIETY 67/1 :170-174,2015
• Feasibility of using Geant4 Monte Carlo simulation for IMRT dose calculations for the Novalis Tx with a HD-120 multi-leaf collimator
JOURNAL OF THE KOREAN PHYSICAL SOCIETY 66/10 :1489-1494,2015
• A virtual simulator designed for collision prevention in proton therapy
MEDICAL PHYSICS 42/10 :6,021-6,027,2015
• Optimization of proton CT detector system and image reconstruction algorithm for on-line proton therapy
PLOS ONE 11/5 :e0156226-,2016
• Carotid-Sparing TomoHelical 3-Dimensional Conformal Radiotherapy for Early Glottic Cancer
CANCER RESEARCH AND TREATMENT 48/1 :63-70,2016
• Effect of Radiation Therapy Techniques on Outcome in N3-positive IIIB Non-small Cell Lung Cancer Treated with Concurrent Chemoradiotherapy
CANCER RESEARCH AND TREATMENT 48/1 :106-114,2016
• Evaluation of quality of life using a tablet PC-based survey in cancer patients treated with radiotherapy: a multi-institutional prospective randomized
crossover comparison of paper and tablet PC-based questionnaires (KROG 12?01)
SUPPORTIVE CARE IN CANCER 24/10 :4,399-4,406,2016
• Secondary Neutron Dose Measurement for Proton Line Scanning Therapy
PROGRESS in MEDICAL PHYSICS (PMP) 27/3 :162-168,2016
• Secondary cancer-incidence risk estimates for external radiotherapy and high-dose-rate brachytherapy in cervical cancer: phantom study
JOURNAL OF APPLIED CLINICAL MEDICAL PHYSICS 17/5 :124-132,2016
• Half-Fan-Based Intensity-Weighted Region-of- Interest Imaging for Low-Dose Cone-Beam CT in Image-Guided Radiation Therapy
Healthcare Informatics Research 22/4 :316-325,2016
• An efficient iterative CBCT reconstruction approach using gradient projection sparse reconstruction algorithm
ONCOTARGET 7/52 :87,342-87,350,2016
• Commissioning and Validation of a Dedicated Scanning Nozzle at Samsung Proton Therapy Center
PROGRESS in MEDICAL PHYSICS (PMP) 27/4 :267-271,2016
• An Empirical Approach to Dosimetric Effect of Carbon Fiber Couch for Flattening Filter Free Beam of Elekta LINAC
PROGRESS in MEDICAL PHYSICS (PMP) 27/4 :220-223,2016
• Variable step size methods for solving simultaneous algebraic reconstruction technique (SART)-type cbct reconstructions
ONCOTARGET 8/20 :33,827-33,835,2017
• 3D 프린팅 비압박 유방 팬텀 제작을 위한 복셀 기반 수치 모델에 관한 연구
의공학회지 38/3 :116-122,2017
• Generation of polychromatic projection for dedicated breast computed tomography simulation using anthropomorphic numerical phantom
PLOS ONE 12/11 :e0187242-,2017
• Monte Carlo simulation of secondary neutron dose for scanning proton therapy using FLUKA
PLOS ONE 12/10 :-,2017
• MEASUREMENT OF NEUTRON AMBIENT DOSE EQUIVALENT IN PROTON RADIOTHERAPY WITH LINE-SCANNING AND WOBBLING MODE TREATMENT
SYSTEM
RADIATION PROTECTION DOSIMETRY 177/4 :382-388,2017
• Clinical outcomes of multileaf collimator-based CyberKnife for spine stereotactic body radiation therapy
BRITISH JOURNAL OF RADIOLOGY 90/1079 :20170523-,2017
• Optimal dose reduction algorithm using an attenuation-based tube current modulation method for cone-beam CT imaging
PLOS ONE 13/2 :e0192933-,2018
• Acceptance Testing and Commissioning of Robotic Intensity-Modulated Radiation Therapy M6 System Equipped with InCiseTM2 Multileaf Collimator
PROGRESS in MEDICAL PHYSICS (PMP) 29/1 :1-8,2018
• Optimization of treatment planning workflow and tumor coverage during daily adaptive magnetic resonance image guided radiation therapy (MR-
IGRT) of pancreatic cancer
RADIATION ONCOLOGY 13/1 :51-58,2018
• Practical Implementation of Patient-Specific Quality Assurance for Small and Multiple Brain Tumors in CyberKnife with Fixed Collimators
PROGRESS in MEDICAL PHYSICS (PMP) 29/2 :53-58,2018
• Patient-Specific Quality Assurance in a Multileaf Collimator-Based CyberKnife System Using the Planar Ion Chamber Array
PROGRESS in MEDICAL PHYSICS (PMP) 29/2 :60-66,2018
• Impact of the Respiratory Motion and Longitudinal Profile on Helical Tomotherapy
PROGRESS in MEDICAL PHYSICS (PMP) 29/1 :1-7,2018
• Kilovoltage radiotherapy for companion animals: dosimetric comparison of 300 kV, 450 kV, and 6 MV X-ray beams
JOURNAL OF VETERINARY SCIENCE 19/4 :550-556,2018
• Efficient Verification of X-ray Target Replacement for the C-series High Energy Linear Accelerator
PROGRESS in MEDICAL PHYSICS (PMP) 29/3 :92-100,2018
• A Hybrid Approach to Reduce Cone-Beam Artifacts for a Circular Orbit Cone-Beam CT System
IEEE Access 6/ :54,595-54,606,2018
• Clinical Evaluation of Commercial Atlas-Based Auto-Segmentation in the Head and Neck Region
FRONTIERS IN ONCOLOGY 9/239 :1-9,2019
• Combining deep-inspiration breath hold and intensity-modulated radiotherapy for gastric mucosa-associated lymphoid tissue lymphoma: Dosimetric
evaluation using comprehensive plan quality indices
RADIATION ONCOLOGY 14/1 :59-70,2019
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